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Magnesium Drug Interactions, Uses, Effectiveness, Safety & More

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Magnesium Drug Interactions: The Bottom Line

From the HelloPharmacist Editorial Team · Updated July 2026

Based on the available evidence, the risk of a clinically significant Magnesium drug interaction is moderate for many people, mostly because magnesium can change how well certain medications are absorbed. Most of the listed interactions are rated moderate, over a hundred are minor, and only a handful are considered major.

Interactions deserving the most attention

The best-documented concern is levodopa/carbidopa for Parkinson's disease, where human studies show magnesium can sharply cut the amount of medication the body absorbs. Magnesium can also increase absorption of sulfonylureas used for diabetes, raising the chance of low blood sugar. It can bind to quinolone and tetracycline antibiotics in the gut, making them less effective, and it may modestly reduce digoxin levels.

What the rest of the list means

Most of this long list reflects effects on absorption in the digestive tract rather than dangerous reactions, and many of these interactions are commonly managed with simple dose spacing rather than avoiding the combination. Other entries rest on lab or animal research, and some predicted effects, such as increased bleeding with blood thinners, have not held up consistently in human studies.

Check your medications against Magnesium

Based on HelloPharmacist’s Magnesium interaction data and reviewed under our editorial standards.

Interaction report

Drugs that interact with Magnesium

295 medications have a known interaction with Magnesium, graded by severity. Select any drug for the full evidence-based detail.

6 major interactions. These combinations can be clinically significant — best avoided, or used only with close professional supervision. Always check with your pharmacist before combining them with Magnesium.

2,830 drugs
Benserazide, LevodopaMadopar, Prolopa› CarbidopaLodosyn› Carbidopa, LevodopaDhivy, Rytary, Sinemet, Sinemet CR› Carbidopa, Levodopa, EntacaponeStalevo› LevodopaInbrija, Larodopa› Levodopa, CarbidopaDuodopa› Acetaminophen, ChlorzoxazoneAcetazone Forte, Extra Strength Tylenol Aches & Strains, Parafon Forte› Acetaminophen, Chlorzoxazone, CodeineAcetazone Forte C8, Parafon Forte C8› Acetaminophen, Codeine, MethocarbamolAcetaminophen, Codeine, Methocarbamol, Robaxacet 8› Acetaminophen, MethocarbamolRobaxacet› Acetaminophen, OrphenadrineOrfenagesic› AcetohexamideDymelor› AlcuroniumAlcuronium› AlendronateBinosto, Fosamax› Alendronate Sodium› Alendronate Sodium, CholecalciferolFosamax Plus D› Alginic Acid, Aluminum HydroxideRafton› Aluminum HydroxideAlu-Cap, Amphojel, Gaviscon› Aluminum Hydroxide, Aspirin, Codeine Phosphate, Magnesium HydroxideAscriptin Codeine #2› Aluminum Hydroxide, Aspirin, Magnesium HydroxideAscriptin› Aluminum Hydroxide, Magnesium Hydroxide (otc Drug)Maalox, Mucogel› Aluminum Hydroxide, Magnesium Hydroxide, Simethicone (otc Drug)Mylanta› Aluminum, Magnesium (otc Drug)Almagel› AmikacinAmikin, Arikayce› AmilorideAmilamont, Midamor› Amiloride, HydrochlorothiazideAmil-Co, Amilzide, Moduret 25, Moduretic› AmlodipineNorliqva› Amlodipine BenzoateKaterzia› Amlodipine BesilateIstin› Amlodipine BesylateNorvasc›
Read The List Like a Pharmacist

What Severity, Likelihood & Evidence Mean

Severity — How Serious It Can Be

  • Major. Clinically significant; generally best avoided, or used only under direct professional supervision.
  • Moderate. May need monitoring, a dose adjustment, or separating the times you take each one.
  • Minor. Generally not clinically significant, but still worth noting and mentioning to your pharmacist.
  • No known interaction. Checked against our sources with nothing documented — not the same as proven safety.

Likelihood — How Well It’s Documented

  • Likely. Well-controlled human studies have demonstrated the likely existence of this interaction
  • Probable. Interaction has not been documented in well-controlled studies, however, the interaction has been demonstrated in some small human studies or in controlled animal studies in conjunction with multiple case reports.
  • Possible. Interaction has been documented in animal or in lab research, or the interaction has been documented in humans but is limited to case reports or conflicting clinical research exists
  • Unlikely. Interaction has been demonstrated in animal or in lab research but has been shown not to occur in humans.

Where This Data Comes From

  • Interaction records are evidence-graded and sourced from the Natural Medicines database (TRC Healthcare), the same reference used by pharmacists and hospitals.
  • Each drug listed above links to the full report for that exact Magnesium combination — clinical detail, likelihood, evidence level, and citations.
  • Content is reviewed by licensed HelloPharmacist pharmacists — see our data sources and editorial standards.
The big picture

The kinds of drugs Magnesium affects

Every type of medication (drug category) Magnesium is known to interact with. Open any category for the detail — or search your exact drug in the checker above.

All 15 drug categories Magnesium interacts with
Levodopa/carbidopa (sinemet)Aminoglycoside AntibioticsAntacidsBictegravir/emtricitabine/tenofovir Alafenamide (biktarvy)BisphosphonatesCalcium Channel BlockersDigoxinPotassium-sparing DiureticsQuinolone AntibioticsSkeletal Muscle RelaxantsSulfonylureasTetracycline AntibioticsAnticoagulant/antiplatelet DrugsGabapentin (neurontin)Sevelamer (renagel, Renvela)
Levodopa/Carbidopa (Sinemet)

Magnesium can reduce the bioavailability of levodopa/carbidopa.
Clinical research in healthy volunteers shows that taking magnesium oxide 1000 mg with levodopa 100 mg/carbidopa 10 mg reduces the area under the curve (AUC) of levodopa by 35% and of carbidopa by 81%. In vitro and animal research shows that magnesium produces an alkaline environment in the digestive tract, which might lead to degradation and reduced bioavailability of levodopa/carbidopa.

Likelihood Probable Evidence B
Aminoglycoside Antibiotics

Concomitant use of aminoglycoside antibiotics and magnesium can increase the risk for neuromuscular weakness.
Both aminoglycosides and magnesium reduce presynaptic acetylcholine release, which can lead to neuromuscular blockade and possible paralysis. This is most likely to occur with high doses of magnesium given intravenously.

Likelihood Possible Evidence D
Antacids

Use of acid reducers may reduce the laxative effect of magnesium oxide.
A retrospective analysis shows that, in the presence of H2 receptor antagonists (H2RAs) or proton pump inhibitors (PPIs), a higher dose of magnesium oxide is needed for a laxative effect. This may also occur with antacids. Under acidic conditions, magnesium oxide is converted to magnesium chloride and then to magnesium bicarbonate, which has an osmotic laxative effect. By reducing acidity, antacids may reduce the conversion of magnesium oxide to the active bicarbonate salt.

Likelihood Possible Evidence D
Bictegravir/Emtricitabine/Tenofovir Alafenamide (Biktarvy)

Magnesium might decrease levels of bictegravir/emtricitabine/tenofovir alafenamide by reducing its absorption.
Advise patients that bictegravir/emtricitabine/tenofovir alafenamide should be taken at least 2 hours before or 6 hours after magnesium containing products.

Likelihood Probable Evidence D
Bisphosphonates

Magnesium can decrease absorption of bisphosphonates.
Cations, including magnesium, can decrease bisphosphonate absorption. Advise patients to separate doses of magnesium and these drugs by at least 2 hours.

Likelihood Probable Evidence B
Calcium Channel Blockers

Magnesium can have additive effects with calcium channel blockers, although evidence is conflicting.
Magnesium inhibits calcium entry into smooth muscle cells and may therefore have additive effects with calcium channel blockers. Severe hypotension and neuromuscular blockades may occur when nifedipine is used with intravenous magnesium, although some contradictory evidence suggests that concurrent use of magnesium with nifedipine does not increase the risk of neuromuscular weakness. High doses of magnesium could theoretically have additive effects with other calcium channel blockers.

Likelihood Possible Evidence D
Digoxin

Magnesium salts may reduce absorption of digoxin.
Clinical evidence suggests that treatment with oral magnesium hydroxide or magnesium trisilicate reduces absorption of digoxin from the intestines. This may reduce the blood levels of digoxin and decrease its therapeutic effects.

Likelihood Possible Evidence B
Potassium-Sparing Diuretics

Potassium-sparing diuretics decrease excretion of magnesium, possibly increasing magnesium levels.
Potassium-sparing diuretics also have magnesium-sparing properties, which can counteract the magnesium losses associated with loop and thiazide diuretics. Theoretically, increased magnesium levels could result from concomitant use of potassium-sparing diuretics and magnesium supplements.

Likelihood Probable Evidence D
Quinolone Antibiotics

Magnesium decreases absorption of quinolones.
Magnesium can form insoluble complexes with quinolones and decrease their absorption. Advise patients to take these drugs at least 2 hours before, or 4 to 6 hours after, magnesium supplements.

Likelihood Probable Evidence D
Skeletal Muscle Relaxants

Parenteral magnesium alters the pharmacokinetics of skeletal muscle relaxants, increasing their effects and accelerating the onset of effect.
Parenteral magnesium shortens the time to onset of skeletal muscle relaxants by about 1 minute and prolongs the duration of action by about 2 minutes. Magnesium potentiates the effects of skeletal muscle relaxants by decreasing calcium-mediated release of acetylcholine from presynaptic nerve terminals, reducing postsynaptic sensitivity to acetylcholine, and having a direct effect on the membrane potential of myocytes. Magnesium also has vasodilatory actions and increases cardiac output, allowing a greater amount of muscle relaxant to reach the motor end plate. A clinical study found that low-dose rocuronium (0.45 mg/kg), when given after administration of magnesium 30 mg/kg over 10 minutes, has an accelerated onset of effect, which matches the onset of effect seen with a full-dose rocuronium regimen (0.6 mg/kg). In another clinical study, onset times for rocuronium doses of 0.3, 0.6, and 1.2 mg/kg were 86, 76, and 50 seconds, respectively, when given alone, but were reduced to 66, 44, and 38 seconds, respectively, when the doses were given after a 15-minute infusion of magnesium sulfate 60 mg/kg. Giving intraoperative intravenous magnesium sulfate, 50 mg/kg loading dose followed by 15 mg/kg/hour, reduces the onset time of rocuronium, enhances its clinical effects, reduces the dose of intraoperative opiates, and prolongs the spontaneous recovery time. It does not affect the activity of subsequently administered neostigmine.

Likelihood Probable Evidence A
Sulfonylureas

Magnesium increases the systemic absorption of sulfonylureas, increasing their effects and side effects.
Clinical research shows that administration of magnesium hydroxide with glyburide increases glyburide absorption, increases maximal insulin response by 35-fold, and increases the risk of hypoglycemia, when compared with glyburide alone. A similar interaction occurs between magnesium hydroxide and glipizide. The mechanism of this effect appears to be related to the elevation of gastrointestinal pH by magnesium-based antacids, increasing solubility and enhancing absorption of sulfonylureas.

Likelihood Probable Evidence B
Tetracycline Antibiotics

Magnesium decreases absorption of tetracyclines.
Magnesium can form insoluble complexes with tetracyclines in the gut and decrease their absorption and antibacterial activity. Advise patients to take these drugs 1 hour before or 2 hours after magnesium supplements.

Likelihood Probable Evidence D
Anticoagulant/Antiplatelet Drugs

Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
In vitro evidence shows that magnesium sulfate inhibits platelet aggregation, even at low concentrations. Some preliminary clinical evidence shows that infusion of magnesium sulfate increases bleeding time by 48% and reduces platelet activity. However, other clinical research shows that magnesium does not affect platelet aggregation, although inhibition of platelet-dependent thrombosis can occur.

Likelihood Unlikely Evidence B
Gabapentin (Neurontin)

Gabapentin absorption can be decreased by magnesium.
Clinical research shows that giving magnesium oxide orally along with gabapentin decreases the maximum plasma concentration of gabapentin by 33%, time to maximum concentration by 36%, and area under the curve by 43%. Advise patients to take gabapentin at least 2 hours before, or 4 to 6 hours after, magnesium supplements.

Likelihood Unlikely Evidence B
Sevelamer (Renagel, Renvela)

Sevelamer may increase serum magnesium levels.
In patients on hemodialysis, sevelamer use was associated with a 0.28 mg/dL increase in serum magnesium. The mechanism of this interaction remains unclear.

Likelihood Possible Evidence B
Monograph

Magnesium: Uses, Safety & Side Effects

The bottom line

Magnesium is an essential mineral your body needs for muscles, nerves, blood pressure, and many other functions, and supplements are useful for preventing or correcting deficiency. Some other uses, like easing constipation or preventing migraines, have reasonable support, while uses for sleep and anxiety are less proven. It is generally safe for most healthy people at recommended amounts, but talk to your pharmacist or doctor before starting, especially if you have kidney problems.

Magnesium
Part used
Mineral (not a plant part)
Common forms
Tablets, capsules, powders, liquids, gummies, and topical Epsom salts; common forms include magnesium citrate, glycinate, oxide, chloride, malate, and aspartate
People commonly use it for
  • Preventing or treating magnesium deficiency
  • Constipation
  • Muscle cramps
  • Sleep support
  • Anxiety and stress
  • Migraine prevention

Popular and traditional uses — not proof it works. See “Uses & effectiveness” below for the evidence.

Safety at a glance
OverallLikely safe

Generally safe for healthy adults when taken at recommended amounts from food and supplements.

PregnancyLikely Safe

When used orally and appropriately. Magnesium is safe for those pregnant and breast-feeding when used in doses below the tolerable upper intake level...

Read the full pregnancy detail
BreastfeedingLikely Safe

When used orally and appropriately. Magnesium is safe for those pregnant and breast-feeding when used in doses below the tolerable upper intake level...

Read the full breastfeeding detail

Pregnancy & breastfeeding ratings are from Natural Medicines (Therapeutic Research Center). Safety guidance is general; always confirm with your pharmacist or doctor for your situation.

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Overview

Magnesium is a mineral your body needs to work properly. It helps your muscles contract and relax, lets your nerves send signals, supports a steady heartbeat, and helps control blood sugar and blood pressure. Your body cannot make magnesium, so you must get it from food or supplements.

Many everyday foods are rich in magnesium, including leafy green vegetables, nuts, seeds, beans, whole grains, and dark chocolate. Most people get some magnesium from their diet, but certain people may fall short.

Magnesium supplements come in many forms, such as magnesium citrate, glycinate, oxide, chloride, malate, and aspartate. Epsom salt (magnesium sulfate) is often dissolved in bath water. People take magnesium to prevent deficiency and for a range of other reasons, from constipation relief to sleep and muscle cramps.

How it works

Magnesium acts as a helper, called a cofactor, in hundreds of chemical reactions in the body. It is involved in making energy, building proteins and DNA, and keeping muscle and nerve cells working normally.

It helps balance other minerals like calcium and potassium, which is part of why it affects muscle relaxation, heart rhythm, and blood pressure. When taken in larger amounts that are not absorbed, magnesium pulls water into the gut, which softens stool and produces a laxative effect.

For uses like sleep and anxiety, the proposed mechanisms involve magnesium's effects on nerve signaling and stress hormones. These ideas come largely from laboratory and early research, and they do not guarantee a noticeable benefit for everyone.

Effectiveness

Does Magnesium work?

Evidence overview · 87 uses evaluated
5 Effective 3 Likely effective 10 Possibly effective 13 Leans ineffective 56 Insufficient evidence
How to read these evidence grades

Natural Medicines’ 7-point scale. We show each rating’s label word-for-word.

1EffectiveStrong, consistent evidence it works.
2Likely EffectiveGood evidence, though not yet conclusive.
3Possibly EffectiveSome evidence suggests a benefit.
4Possibly IneffectiveSome evidence it may not help.
5Likely IneffectiveFairly strong evidence it doesn’t help.
6IneffectiveStrong evidence it doesn’t work.
7Insufficient Reliable Evidence to RateToo little research to say either way.
Effective Bowel preparation
Rating & evidence shown verbatim from Natural Medicines

Various magnesium salts are used for cleansing the bowel prior to procedures such as colonoscopy.

Effective Constipation
Rating & evidence shown verbatim from Natural Medicines

Magnesium salts are effective when used short-term orally to treat constipation and chronic idiopathic constipation (CIC).

Effective Dyspepsia
Rating & evidence shown verbatim from Natural Medicines

Magnesium salts are effective when used orally as antacids.

Effective Hypomagnesemia
Rating & evidence shown verbatim from Natural Medicines

Hypomagnesemia can be effectively treated with oral or parenteral magnesium.

Effective Pre-eclampsia
Rating & evidence shown verbatim from Natural Medicines

Magnesium sulfate is considered the drug of choice for seizure prophylaxis in patients with pre-eclampsia.

Likely Effective Cerebral palsy
Rating & evidence shown verbatim from Natural Medicines

Most evidence shows that antenatal magnesium reduces the risk of cerebral palsy in preterm infants, although there are some inconsistent results.

Likely Effective Seizures
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium sulfate is used for treating seizures of various etiologies.

Likely Effective Torsades de pointes
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium sulfate is the first-line treatment for torsades de pointes after measures to correct precipitating factors have been unsuccessful.

Possibly Effective Arrhythmia
Rating & evidence shown verbatim from Natural Medicines

Magnesium sulfate is effective for the specific type of ventricular tachycardia known as torsades de pointes, and seems to be helpful for treating other types of arrhythmias. Evidence for the role of oral or intravenous magnesium in preventing postoperative arrhythmias is conflicting.

Possibly Effective Asthma
Rating & evidence shown verbatim from Natural Medicines

Parenteral magnesium sulfate can help to reverse severe acute asthma attacks and reduce the need for hospital admission. It is unclear if nebulized magnesium is beneficial for acute asthma attacks. However, oral magnesium does not seem to be beneficial.

Possibly Effective Colorectal cancer
Rating & evidence shown verbatim from Natural Medicines

Increasing dietary magnesium intake seems to lower the risk of colon cancer but not rectal cancer.

Possibly Effective Diabetes
Rating & evidence shown verbatim from Natural Medicines

Low dietary magnesium may increase the risk of developing type 2 diabetes, but evidence on the use of supplements for treating type 2 diabetes is conflicting.

Possibly Effective Hypercholesterolemia
Rating & evidence shown verbatim from Natural Medicines

Magnesium may help improve lipid levels by a small amount in people with this condition.

Possibly Effective Metabolic syndrome
Rating & evidence shown verbatim from Natural Medicines

Low dietary and serum levels of magnesium seem to be associated with the development of metabolic syndrome.

Possibly Effective Osteoporosis
Rating & evidence shown verbatim from Natural Medicines

Increased dietary and supplemental magnesium intake seems to increase bone mineral density and decrease bone loss in postmenopausal patients.

Possibly Effective Postoperative pain
Rating & evidence shown verbatim from Natural Medicines

Injectable magnesium has been used with promising results for reducing pain and the need for other analgesics postoperatively. However, it is unclear if oral magnesium is beneficial for postoperative pain.

Possibly Effective Premenstrual syndrome (PMS)
Rating & evidence shown verbatim from Natural Medicines

Taking magnesium orally seems to relieve symptoms of PMS.

Possibly Effective Vasospastic angina
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium seems to prevent coronary spasm in patients with this condition.

Possibly Ineffective Altitude sickness
Rating & evidence shown verbatim from Natural Medicines

Taking magnesium citrate orally does not seem to reduce acute altitude sickness risk.

Possibly Ineffective Athletic performance
Rating & evidence shown verbatim from Natural Medicines

Taking magnesium orally does not seem to improve energy or endurance during athletic activity.

Possibly Ineffective Bronchiolitis
Rating & evidence shown verbatim from Natural Medicines

Intravenous or nebulized magnesium is not beneficial in infants with this condition.

Possibly Ineffective Chemotherapy-induced peripheral neuropathy
Rating & evidence shown verbatim from Natural Medicines

Research on the effects of intravenous infusions of magnesium and calcium for preventing oxaliplatin neurotoxicity are inconsistent, but higher quality studies seem to show no benefit.

Possibly Ineffective Complex regional pain syndrome
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium is not beneficial in complex regional pain syndrome type 1.

Possibly Ineffective Emergence delirium
Rating & evidence shown verbatim from Natural Medicines

The majority of small clinical studies in adults and children undergoing various surgeries suggest that intravenous (IV) magnesium doesn't reduce the risk of emergence delirium. However, most clinical studies in adults suggest that IV magnesium reduces emergence agitation.

Possibly Ineffective Menopausal symptoms
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium oxide does not seem to be beneficial for menopausal hot flashes.

Possibly Ineffective Muscle cramps
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium does not seem to improve muscle cramp frequency or intensity.

Possibly Ineffective Polycystic ovary syndrome (PCOS)
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium does not seem beneficial for improving metabolic indices in patients with PCOS.

Possibly Ineffective Sickle cell disease
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium does not add any benefit to standard therapy for sickle cell disease in children.

Possibly Ineffective Stillbirth
Rating & evidence shown verbatim from Natural Medicines

Magnesium administered during pregnancy does not reduce stillbirth risk.

Possibly Ineffective Tetanus
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium sulfate does not seem to improve outcomes in patients with this condition.

Possibly Ineffective Traumatic brain injury (TBI)
Rating & evidence shown verbatim from Natural Medicines

Magnesium does not improve clinical outcomes in patients with moderate to severe TBI. Its effect in patients with concussions is unclear.

Also studied for 56 conditions — evidence insufficient to rate
Insufficient Reliable Evidence To Rate Alcohol use disorder
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium does not seem to help reduce symptoms of alcohol withdrawal but may reduce the duration of alcoholic delirium.

Insufficient Reliable Evidence To Rate Allergic rhinitis (hay fever)
Rating & evidence shown verbatim from Natural Medicines

Although there has been interest in using oral magnesium for allergic rhinitis, there is insufficient reliable information about the clinical effects of magnesium for this purpose.

Insufficient Reliable Evidence To Rate Attention deficit-hyperactivity disorder (ADHD)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial in children with ADHD.

Insufficient Reliable Evidence To Rate Back pain
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral or intravenous magnesium is beneficial for acute or chronic back pain in adults.

Insufficient Reliable Evidence To Rate Bariatric surgery complications
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium supplementation improves metabolic parameters after bariatric surgery.

Insufficient Reliable Evidence To Rate Bipolar disorder
Rating & evidence shown verbatim from Natural Medicines

Taking magnesium orally might improve manic symptoms in some people with bipolar disorder; however, it is unclear how it compares to current standard of care.

Insufficient Reliable Evidence To Rate Cancer-related neuropathic pain
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous magnesium is beneficial for this condition.

Insufficient Reliable Evidence To Rate Cardiac arrest
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium does not seem to be helpful in cardiac arrest; however, the risk of sudden cardiac death seems to be inversely correlated to higher plasma magnesium levels or dietary intake. It is unclear if magnesium supplementation is associated with similar risk reduction.

Insufficient Reliable Evidence To Rate Chemotherapy-induced leukopenia
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial in pediatric patients at risk for cisplatin-induced febrile neutropenia.

Insufficient Reliable Evidence To Rate Chemotherapy-induced nephrotoxicity
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous magnesium is beneficial for chemotherapy-induced nephrotoxicity.

Insufficient Reliable Evidence To Rate Chronic fatigue syndrome (CFS)
Rating & evidence shown verbatim from Natural Medicines

Limited evidence suggests that magnesium may help improve CFS symptoms, but this is controversial.

Insufficient Reliable Evidence To Rate Chronic obstructive pulmonary disease (COPD)
Rating & evidence shown verbatim from Natural Medicines

Intravenous, but not nebulized, magnesium may be helpful in acute exacerbations of COPD.

Insufficient Reliable Evidence To Rate Cluster headache
Rating & evidence shown verbatim from Natural Medicines

It is unclear if a single intravenous dose of magnesium sulfate is beneficial for cluster headaches.

Insufficient Reliable Evidence To Rate Cognitive impairment
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for cognitive impairment.

Insufficient Reliable Evidence To Rate Coronary heart disease (CHD)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if magnesium supplementation is beneficial for CHD.

Insufficient Reliable Evidence To Rate Coronavirus disease 2019 (COVID-19)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for COVID-19.

Insufficient Reliable Evidence To Rate Depression
Rating & evidence shown verbatim from Natural Medicines

It is unclear if magnesium is beneficial for the treatment or prevention of depression in adults.

Insufficient Reliable Evidence To Rate Diabetic foot ulcers
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium has only been evaluated in combination with other ingredients; its effect when used alone is unclear.

Insufficient Reliable Evidence To Rate Exercise-induced muscle soreness
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral or topical magnesium reduces muscle soreness in adults.

Insufficient Reliable Evidence To Rate Fetal and premature infant mortality
Rating & evidence shown verbatim from Natural Medicines

It is unclear if antenatal intravenous (IV) magnesium sulfate administration reduces the risk of fetal and premature infant mortality.

Insufficient Reliable Evidence To Rate Fibromyalgia
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for this condition.

Insufficient Reliable Evidence To Rate Fractures
Rating & evidence shown verbatim from Natural Medicines

Population research suggests that higher intakes of magnesium may reduce fracture risk.

Insufficient Reliable Evidence To Rate Gastric cancer
Rating & evidence shown verbatim from Natural Medicines

Population research suggests that higher intakes of magnesium may reduce gastric cancer risk.

Insufficient Reliable Evidence To Rate Hearing loss
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium may prevent and improve hearing loss due to environmental factors or loud noises.

Insufficient Reliable Evidence To Rate Hypertension
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium supplementation may modestly reduce blood pressure, although these changes are not likely to be considered clinically significant.

Insufficient Reliable Evidence To Rate Hypokalemia
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous or oral magnesium is beneficial for hypokalemia in patients with normal magnesium levels.

Insufficient Reliable Evidence To Rate Impaired glucose tolerance (prediabetes)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for prediabetes.

Insufficient Reliable Evidence To Rate Intraventricular hemorrhage
Rating & evidence shown verbatim from Natural Medicines

It is unclear if antenatal intravenous (IV) magnesium sulfate can reduce the risk for intraventricular hemorrhage in neonates.

Insufficient Reliable Evidence To Rate Kidney stones (nephrolithiasis)
Rating & evidence shown verbatim from Natural Medicines

Taking magnesium orally may prevent the recurrence of kidney stones, although evidence is conflicting.

Insufficient Reliable Evidence To Rate Liver cancer
Rating & evidence shown verbatim from Natural Medicines

Increased dietary magnesium intake is linked with a lower risk of liver cancer.

Insufficient Reliable Evidence To Rate Lung cancer
Rating & evidence shown verbatim from Natural Medicines

Supplemental or dietary magnesium intake does not seem to reduce the risk of lung cancer.

Insufficient Reliable Evidence To Rate Metabolic dysfunction-associated steatotic liver disease (MASLD)
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium hydroxide has only been evaluated in combination with other ingredients for MASLD, previously called nonalcoholic fatty liver disease (NAFLD). The effect of magnesium when used alone for MASLD is unclear.

Insufficient Reliable Evidence To Rate Miscarriage
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium has only been evaluated in combination with other ingredients; its effect when used alone is unclear.

Insufficient Reliable Evidence To Rate Myocardial infarction (MI)
Rating & evidence shown verbatim from Natural Medicines

Research on the effects of intravenous or oral magnesium after myocardial infarction are conflicting.

Insufficient Reliable Evidence To Rate Neonatal encephalopathy
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium may improve short-term outcomes in neonates with encephalopathy.

Insufficient Reliable Evidence To Rate Obesity
Rating & evidence shown verbatim from Natural Medicines

Evidence on the use of magnesium for weight loss in obese patients is conflicting; any benefit is likely small at best.

Insufficient Reliable Evidence To Rate Osteoarthritis
Rating & evidence shown verbatim from Natural Medicines

Population research has not found a link between magnesium intake and osteoarthritis risk.

Insufficient Reliable Evidence To Rate Overall mortality
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral or IV magnesium reduces the risk of overall mortality.

Insufficient Reliable Evidence To Rate Parturition
Rating & evidence shown verbatim from Natural Medicines

It is unclear if topical magnesium is beneficial for labor duration.

Insufficient Reliable Evidence To Rate Perioperative anxiety
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for perioperative anxiety.

Insufficient Reliable Evidence To Rate Physical performance
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium may modestly improve physical performance in otherwise healthy, elderly females.

Insufficient Reliable Evidence To Rate Postoperative nausea and vomiting (PONV)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous (IV) magnesium is beneficial for PONV due to mixed results from clinical research.

Insufficient Reliable Evidence To Rate Postoperative recovery
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous (IV) magnesium is beneficial for postoperative recovery.

Insufficient Reliable Evidence To Rate Postoperative sleep disturbance
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for postoperative sleep disturbances.

Insufficient Reliable Evidence To Rate Postoperative sore throat
Rating & evidence shown verbatim from Natural Medicines

It is unclear if topical magnesium sulfate is beneficial for preventing or treating sore throat pain after endotracheal intubation.

Insufficient Reliable Evidence To Rate Pre-procedural sedation
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous magnesium is beneficial when administered in addition to other medications used for sedation during surgery.

Insufficient Reliable Evidence To Rate Pregnancy-related leg cramps
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium reduces leg cramps during pregnancy; evidence is conflicting.

Insufficient Reliable Evidence To Rate Preterm labor
Rating & evidence shown verbatim from Natural Medicines

The use of magnesium sulfate to inhibit uterine contractions in preterm labor (tocolysis) is controversial. However, its use for the purpose of fetal neuroprotection for up to 48 hours is supported by the American College of Obstetricians and Gynecologists (ACOG) and the Society for Maternal-Fetal Medicine.

Insufficient Reliable Evidence To Rate Restless legs syndrome (RLS)
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for RLS.

Insufficient Reliable Evidence To Rate Sarcopenia
Rating & evidence shown verbatim from Natural Medicines

It is unclear if oral magnesium is beneficial for the prevention or treatment of sarcopenia.

Insufficient Reliable Evidence To Rate Sepsis
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous magnesium is beneficial for sepsis.

Insufficient Reliable Evidence To Rate Sleep deprivation
Rating & evidence shown verbatim from Natural Medicines

Oral magnesium has only been evaluated in combination with other ingredients; its effect when used alone is unclear.

Insufficient Reliable Evidence To Rate Stroke
Rating & evidence shown verbatim from Natural Medicines

Increased dietary magnesium may decrease stroke risk, and using a magnesium-containing salt substitute may improve neurological performance post-stroke. However, intravenous magnesium has not demonstrated benefit.

Insufficient Reliable Evidence To Rate Subarachnoid hemorrhage
Rating & evidence shown verbatim from Natural Medicines

Intravenous magnesium sulfate may reduce the risk of adverse outcomes in people with subarachnoid hemorrhage, but evidence is conflicting.

Insufficient Reliable Evidence To Rate Thrombocytopenia
Rating & evidence shown verbatim from Natural Medicines

It is unclear if intravenous magnesium sulfate is beneficial in patients with thrombotic thrombocytopenic purpura (TTP).

Insufficient Reliable Evidence To Rate Urinary incontinence
Rating & evidence shown verbatim from Natural Medicines

Although there has been interest in using oral magnesium for urinary incontinence, there is insufficient reliable information about the clinical effects of magnesium for this purpose.

Source & disclaimer. Effectiveness ratings and evidence summaries are provided by Natural Medicines (Therapeutic Research Center) and shown as licensed. Where Natural Medicines hasn’t rated a use, HelloPharmacist’s pharmacists may add their own reviewed rating and evidence (each such entry is labeled). This is educational information, not medical advice — talk with your pharmacist or doctor before starting, stopping, or changing a supplement.

Safety & precautions

For most healthy people, magnesium from food and supplements at recommended levels is safe. The biggest safety concern is in people with kidney disease, because damaged kidneys cannot remove extra magnesium, which can build up to dangerous levels. If you have kidney problems, do not take magnesium supplements unless your doctor tells you to.

People with heart conduction problems or certain bowel conditions should also be cautious. Very high doses can cause serious problems, including a dangerous drop in blood pressure, confusion, slowed breathing, and irregular heartbeat.

During pregnancy and breastfeeding, magnesium is an important nutrient and is often part of prenatal nutrition, but supplements beyond what is in food should be used only with your doctor's guidance. Always tell your pharmacist or doctor about any supplements you take.

Side effects

The most common side effects are digestive, including diarrhea, nausea, stomach cramping, and bloating. These are more likely with forms such as magnesium oxide and citrate, and at higher doses.

Taking magnesium with food and choosing gentler forms (such as glycinate) may reduce stomach upset. Lowering the dose or splitting it through the day can also help.

Rare but serious side effects happen mostly with very high doses or in people with poor kidney function. These can include very low blood pressure, muscle weakness, drowsiness, slowed breathing, and heart rhythm problems. Seek medical care right away if these occur.

Magnesium: Reported Adverse Effects

Documented safety reports on Magnesium from the evidence-graded Natural Medicines (TRC Healthcare) database, shown word-for-word from the licensed record.

Magnesium is generally well tolerated. Some clinical research shows no differences in adverse effects between placebo and magnesium groups.

Most Common Adverse Effects:

Orally: Diarrhea, gastrointestinal irritation, nausea, and vomiting.

Intravenously: Bradycardia, dizziness, flushing sensation, hypotension, and localized pain and irritation. In pregnancy, may cause blurry vision, dizziness, lethargy, nausea, nystagmus, and perception of warmth.

Serious Adverse Effects (Rare):

All ROAs: With toxic doses, loss of reflexes and respiratory depression can occur. High doses in pregnancy can increase risk of neonatal mortality and neurological defects.

Reports by condition
Anorexia Gastrointestinal

Orally, magnesium can cause gastrointestinal irritation, nausea, vomiting, and diarrhea. In rare cases, taking magnesium orally might cause a bezoar, an indigestible mass of material which gets lodged in the gastrointestinal tract. In a case report, a 75-year-old female with advanced rectal cancer taking magnesium 1500 mg daily presented with nausea and anorexia from magnesium oxide bezoars in her stomach. Magnesium can cause nausea, vomiting, or dry mouth when administered intravenously or by nebulization. Antenatal magnesium sulfate may also cause nausea and vomiting. Two case reports suggest that giving magnesium 50 grams orally for bowel preparation for colonoscopy in patients with colorectal cancer may lead to intestinal perforation and possibly death.

Delayed meconium passage and obstruction have been reported rarely in neonates after intravenous magnesium sulfate was given to the mother during pregnancy. In a retrospective study of 200 neonates born prematurely before 32 weeks of gestation, administration of prenatal IV magnesium sulfate, as a 4-gram loading dose and then 1-2 grams hourly, was not associated with the rate of meconium bowel obstruction when compared with neonates whose mothers had not received magnesium sulfate.

  1. Dahle LO, Berg G, Hammar M, et al. The effect of oral magnesium substitution on pregnancy-induced leg cramps. Am J Obstet Gynecol 1995;173:175-80.
  2. Peikert A, Wilimzig C, Kohne-Volland R. Prophylaxis of migraine with oral magnesium: results from a prospective, multi-center, placebo-controlled and double-blind randomized study. Cephalalgia 1996;16:257-63.
  3. Pfaffenrath V, Wessely P, Meyer C, et al. Magnesium in the prophylaxis of migraine--a double-blind placebo-controlled study. Cephalalgia 1996;16:436-40..
  4. Wang F, Van Den Eeden SK, Ackerson LM, et al. Oral magnesium oxide prophylaxis of frequent migrainous headache in children: a randomized, double-blind, placebo-controlled trial. Headache 2003;43:601-10..
  5. Kass L, Weekes J, Carpenter L. Effect of magnesium supplementation on blood pressure: a meta-analysis. Eur J Clin Nutr 2012;66:411-8.
  6. Han, S., Crowther, C. A., and Moore, V. Magnesium maintenance therapy for preventing preterm birth after threatened preterm labour. Cochrane.Database.Syst.Rev. 2010;(7):CD000940.
  7. Gordon, M., Naidoo, K., Akobeng, A. K., and Thomas, A. G. Osmotic and stimulant laxatives for the management of childhood constipation. Cochrane.Database.Syst.Rev. 2012;7:CD009118.
  8. Park H, Qin R, Smith TJ, et al. North Central Cancer Treatment Group N10C2 (Alliance): a double-blind placebo-controlled study of magnesium supplements to reduce menopausal hot flashes. Menopause. 2015;22(6):627-32.
  9. Iwamuro M, Saito S, Yoshioka M, et al. A Magnesium Oxide Bezoar. Intern Med. 2018;57(21):3087-3091.
  10. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  11. Duley, L., Gulmezoglu, A. M., Henderson-Smart, D. J., and Chou, D. Magnesium sulphate and other anticonvulsants for women with pre-eclampsia. Cochrane.Database.Syst.Rev. 2010;(11):CD000025.
  12. Magee, L., Sawchuck, D., Synnes, A., and von, Dadelszen P. SOGC Clinical Practice Guideline. Magnesium sulphate for fetal neuroprotection. J Obstet.Gynaecol.Can. 2011;33(5):516-529.
  13. Schuh S, Sweeney J, Rumantir M, et al. Effect of nebulized magnesium vs placebo added to albuterol on hospitalization among children with refractory acute asthma treated in the emergency department: a randomized clinical trial. JAMA. 2020;324(20):2038-20
  14. Darmawan D, Rengganis I, Rumende CM, et al. Effectiveness and Safety of Nebulized Magnesium as Last Line Treatment in Adults with Acute Asthma Attack: A Systematic Review and Meta-Analysis. Acta Med Indones 2024;56(1):3-12.
  15. Shepherd ES, Goldsmith S, Doyle LW, et al. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane Database Syst Rev 2024;5(5):CD004661.
  16. Doyle, L. W., Crowther, C. A., Middleton, P., Marret, S., and Rouse, D. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane.Database.Syst.Rev. 2009;(1):CD004661.
  17. Ji D. Oral magnesium sulfate causes perforation during bowel preparation for fiberoptic colonoscopy in patients with colorectal cancer. J Emerg Med 2012;43(4):716-7.
  18. Gochi Valdovinos A, Arriaga-Redondo M, Dejuan Bitriá E, Pérez Rodríguez I, Márquez Isidro E, Blanco Bravo D. Prenatal therapy with magnesium sulphate and intestinal obstruction due to meconium in preterm newborns. An Pediatr (Engl Ed). 2022 Feb;96(2):138-
Bone loss Musculoskeletal

Intravenously, magnesium may cause decreased skeletal muscle tone, muscle weakness, or hypocalcemic tetany.

Although magnesium is important for normal bone structure and maintenance, there is concern that very high doses of magnesium may be detrimental. In a case series of 9 patients receiving long-term tocolysis for 11-97 days, resulting in cumulative magnesium sulfate doses of 168-3756 grams, a lower bone mass was noted in 4 cases receiving doses above 1000 grams. There was one case of pregnancy- and lactation-associated osteoporosis and one fracture. The validity and clinical significance of this data is unclear.

  1. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  2. Duley, L., Gulmezoglu, A. M., Henderson-Smart, D. J., and Chou, D. Magnesium sulphate and other anticonvulsants for women with pre-eclampsia. Cochrane.Database.Syst.Rev. 2010;(11):CD000025.
  3. Wong, G. K., Boet, R., Poon, W. S., Chan, M. T., Gin, T., Ng, S. C., and Zee, B. C. Intravenous magnesium sulphate for aneurysmal subarachnoid hemorrhage: an updated systemic review and meta-analysis. Crit Care 2011;15(1):R52.
  4. Covington TR, et al. Handbook of Nonprescription Drugs. 11th ed. Washington, DC: American Pharmaceutical Association, 1996.
  5. Iio K, Kondo E, Shibata E, et al. Long-term tocolysis with magnesium sulfate as a risk factor for low bone mass: a case series. J Med Cases. 2022 Feb;13(2):47-50.
Congestive heart failure (CHF) Cardiovascular

Intravenously, magnesium can cause bradycardia, tachycardia, and hypotension. Inhaled magnesium administered by nebulizer may also cause hypotension. Magnesium sulfate may cause rapid heartbeat when administered antenatally.

In one case report, a 99-year-old male who took oral magnesium oxide 3000 mg daily for chronic constipation was hospitalized with hypermagnesemia, hypotension, bradycardia, heart failure, cardiomegaly, second-degree sinoatrial block, and complete bundle branch block. The patient recovered after discontinuing the magnesium oxide.

  1. Davey MJ, Teubner D. A randomized controlled trial of magnesium sulfate, in addition to usual care, for rate control in atrial fibrillation. Ann Emerg Med 2005;45:347-53..
  2. Horner, S. M. Efficacy of intravenous magnesium in acute myocardial infarction in reducing arrhythmias and mortality. Meta-analysis of magnesium in acute myocardial infarction. Circulation 1992;86(3):774-779.
  3. Henyan, N. N., Gillespie, E. L., White, C. M., Kluger, J., and Coleman, C. I. Impact of intravenous magnesium on post-cardiothoracic surgery atrial fibrillation and length of hospital stay: a meta-analysis. Ann.Thorac.Surg. 2005;80(6):2402-2406.
  4. Li, J., Zhang, Q., Zhang, M., and Egger, M. Intravenous magnesium for acute myocardial infarction. Cochrane.Database.Syst.Rev. 2007;(2):CD002755.
  5. Duley, L., Gulmezoglu, A. M., Henderson-Smart, D. J., and Chou, D. Magnesium sulphate and other anticonvulsants for women with pre-eclampsia. Cochrane.Database.Syst.Rev. 2010;(11):CD000025.
  6. Wong, G. K., Boet, R., Poon, W. S., Chan, M. T., Gin, T., Ng, S. C., and Zee, B. C. Intravenous magnesium sulphate for aneurysmal subarachnoid hemorrhage: an updated systemic review and meta-analysis. Crit Care 2011;15(1):R52.
  7. Magee, L., Sawchuck, D., Synnes, A., and von, Dadelszen P. SOGC Clinical Practice Guideline. Magnesium sulphate for fetal neuroprotection. J Obstet.Gynaecol.Can. 2011;33(5):516-529.
  8. Doyle, L. W. Antenatal magnesium sulfate and neuroprotection. Curr Opin Pediatr 2012;24(2):154-159.
  9. Wu, X., Wang, C., Zhu, J., Zhang, C., Zhang, Y., and Gao, Y. Meta-analysis of randomized controlled trials on magnesium in addition to beta-blocker for prevention of postoperative atrial arrhythmias after coronary artery bypass grafting. BMC.Cardiovasc.D
  10. Shepherd ES, Goldsmith S, Doyle LW, et al. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane Database Syst Rev 2024;5(5):CD004661.
  11. Darmawan D, Rengganis I, Rumende CM, et al. Effectiveness and Safety of Nebulized Magnesium as Last Line Treatment in Adults with Acute Asthma Attack: A Systematic Review and Meta-Analysis. Acta Med Indones 2024;56(1):3-12.
  12. Doyle, L. W., Crowther, C. A., Middleton, P., Marret, S., and Rouse, D. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane.Database.Syst.Rev. 2009;(1):CD004661.
  13. Eiraku K, Uozumi Y, Hieda M, Maruyama T, Nomura H. A senile case of heart failure associated with hypermagnesemia induced by magnesium-containing laxative agent. Geriatr Gerontol Int. 2022;22(10):897-899.
Depression Pulmonary/Respiratory

Intravenously, magnesium may cause respiratory depression and tachypnea when used in toxic doses.

  1. Jeyabalan A, Caritis SN. Pharmacologic inhibition of preterm labor. Clin Obstet Gynecol 2002;45:99-113.
  2. Dodd, J. M., Crowther, C. A., and Middleton, P. Oral betamimetics for maintenance therapy after threatened preterm labour. Cochrane.Database.Syst.Rev. 2012;12:CD003927.
  3. Duley L and Gulmezoglu AM. Magnesium sulphate versus lytic cocktail for eclampsia. Cochrane Database of Systematic Reviews 2000;(3)
Eclampsia Genitourinary

Intravenously, magnesium sulfate may cause renal toxicity or acute urinary retention, although these events are rare. A case of slowed cervical dilation at delivery has been reported for a patient administered intravenous magnesium sulfate for eclampsia. Intravenous magnesium might also cause solute diuresis. In a case report, a pregnant patient experienced polyuria and diuresis after having received intravenous magnesium sulfate in Ringer's lactate solution for preterm uterine contractions.

  1. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  2. McDonald, S. D., Lutsiv, O., Dzaja, N., and Duley, L. A systematic review of maternal and infant outcomes following magnesium sulfate for pre-eclampsia/eclampsia in real-world use. Int J Gynaecol.Obstet. 2012;118(2):90-96.
  3. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  4. Brown RS. Magnesium Sulfate: Another Cause of a Solute Diuresis. Am J Kidney Dis. 2017;69(4):550-551.
Epilepsy Neurologic/CNS

Intravenously, magnesium may cause slurred speech, dizziness, drowsiness, confusion, or headaches. With toxic doses, loss of reflexes, neurological defects, drowsiness, confusion, and coma can occur.

A case report describes cerebral cortical and subcortical edema consistent with posterior reversible encephalopathy syndrome (PRES), eclampsia, somnolence, seizures, absent deep tendon reflexes, hard to control hypertension, acute renal failure and hypermagnesemia (serum level 11.5 mg/dL), after treatment with intravenous magnesium sulfate for preeclampsia in a 24-year-old primigravida at 39 weeks gestation with a previously uncomplicated pregnancy. The symptoms resolved after 4 days of symptomatic treatment in an intensive care unit, and emergency cesarian delivery of a healthy infant.

  1. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  2. Duley, L., Gulmezoglu, A. M., Henderson-Smart, D. J., and Chou, D. Magnesium sulphate and other anticonvulsants for women with pre-eclampsia. Cochrane.Database.Syst.Rev. 2010;(11):CD000025.
  3. Shepherd ES, Goldsmith S, Doyle LW, et al. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane Database Syst Rev 2024;5(5):CD004661.
  4. Birrer RB, Shallash AJ, Totten V. Hypermagnesemia-induced fatality following epsom salt gargles. J Emerg Med 2002;22:185-8.
  5. Jeyabalan A, Caritis SN. Pharmacologic inhibition of preterm labor. Clin Obstet Gynecol 2002;45:99-113.
  6. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8..
  7. Lee AT, Cordova JC, Jamplis RP, Pomicter GR. Posterior Reversible Encephalopathy Syndrome and Eclampsia in the Setting of Magnesium Toxicity: A Case Report. A A Pract 2023;17(11):e01726.
Myasthenia gravis Dermatologic

Intravenously, magnesium may cause flushing, sweating, and problems at the injection site (including burning pain). In a case study, two patients who received intravenous magnesium sulfate for suppression of preterm labor developed a rapid and sudden onset of an urticarial eruption (a skin eruption of itching welts). The eruption cleared when magnesium sulfate was discontinued. Orally, magnesium oxide may cause allergic skin rash, but this is rare. In one case report, a patient developed a rash after taking 600 mg magnesium oxide (Maglax).

  1. Duley, L., Gulmezoglu, A. M., Henderson-Smart, D. J., and Chou, D. Magnesium sulphate and other anticonvulsants for women with pre-eclampsia. Cochrane.Database.Syst.Rev. 2010;(11):CD000025.
  2. Magee, L., Sawchuck, D., Synnes, A., and von, Dadelszen P. SOGC Clinical Practice Guideline. Magnesium sulphate for fetal neuroprotection. J Obstet.Gynaecol.Can. 2011;33(5):516-529.
  3. Enayati A, Gin JH, Sajeev JK, et al. Efficacy of intravenous magnesium for the management of non-post operative atrial fibrillation with rapid ventricular response: A systematic review and meta-analysis. J Cardiovasc Electrophysiol 2023;34(5):1286-1295.
  4. Shepherd ES, Goldsmith S, Doyle LW, et al. Magnesium sulphate for women at risk of preterm birth for neuroprotection of the fetus. Cochrane Database Syst Rev 2024;5(5):CD004661.
  5. Thorp, J. M., Jr., Katz, V. L., Campbell, D., and Cefalo, R. C. Hypersensitivity to magnesium sulfate. Am.J.Obstet.Gynecol. 1989;161(4):889-890.
  6. Sakanoue M, Sanada J, Kanekura T. Skin eruption elicited by magnesium oxide (Maglax). J Dermatol. 2016;43(2):221-2.
Pre-eclampsia Hematologic

Intravenously, magnesium may cause increased blood loss at delivery when administered for eclampsia or pre-eclampsia. However, research on the effect of intravenous magnesium on postpartum hemorrhage is mixed. Some research shows that it does not affect risk of postpartum hemorrhage, while other research shows that intrapartum magnesium administration is associated with increased odds of postpartum hemorrhage, increased odds of uterine atony (a condition that increases the risk for postpartum hemorrhage) and increased need for red blood cell transfusions.

  1. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  2. Magee, L., Sawchuck, D., Synnes, A., and von, Dadelszen P. SOGC Clinical Practice Guideline. Magnesium sulphate for fetal neuroprotection. J Obstet.Gynaecol.Can. 2011;33(5):516-529.
  3. Miller ES, Sakowicz A, Leger E. Lange E, Yee LM. The association between receipt of intrapartum magnesium and postpartum hemorrhage. Am J Obstet Gynecol 2018;218(1 Suppl):S165.
Pre-eclampsia Psychiatric
DISCLAIMER: This tool is intended for informational purposes only, and should not be interpreted as specific medical advice. Patients should consult with a qualified healthcare provider before making decisions about therapies and/or health conditions.

Adverse-effects data: Natural Medicines, Therapeutic Research Center

Dosing

There is no single "best" dose for everyone, and the right amount depends on your age, sex, health, and the reason you are taking it. Health authorities set general daily recommended intakes for magnesium that you can meet through food and supplements combined.

For supplements, the best approach is to follow the directions on the product label and to check with your pharmacist or doctor about a sensible amount. Different forms contain different amounts of actual (elemental) magnesium, which can be confusing.

Do not assume more is better. There is an upper limit for magnesium taken as a supplement, and going above it raises the risk of side effects. If you are using magnesium for a specific condition like constipation or migraine, ask a health professional for guidance.

Pregnancy & Breastfeeding

Magnesium & Pregnancy

Likely Safe

When used orally and appropriately. Magnesium is safe for those pregnant and breast-feeding when used in doses below the tolerable upper intake level (UL) of 350 mg daily.

  1. Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. Washington, DC: National Academy Press, 1999. Available at: http://books.nap.edu/books/0309063507/html/index.html.
Possibly Safe

When prescription magnesium sulfate is given intramuscularly and intravenously prior to delivery for up to 5 days. However, due to potential adverse effects associated with intravenous and intramuscular magnesium, use during pregnancy is limited to patients with specific conditions such as severe pre-eclampsia or eclampsia. There is some evidence that intravenous magnesium can increase fetal mortality and adversely affect neurological and skeletal development. However, a more recent analysis of clinical research shows that increased risk of fetal mortality seems to occur only in the studies where antenatal magnesium is used for tocolysis and not for fetal neuroprotection or pre-eclampsia/eclampsia. Furthermore, antenatal magnesium does not seem to be associated with increased risk of necrotizing enterocolitis in preterm infants. There is also concern that magnesium increases the risk of maternal adverse events. A meta-analysis of clinical research shows that magnesium sulfate might increase the risk of maternal adverse events, especially in Hispanic mothers compared to other racial and ethnic groups.

  1. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  2. Gibbins KJ, Browning KR, Lopes VV, Anderson BL, Rouse DJ. Evaluation of the clinical use of magnesium sulfate for cerebral palsy prevention. Obstet Gynecol 2013;121(2 Pt 1):235-40.
  3. Drug Safety Communication: FDA Recommends Against Prolonged Use of Magnesium Sulfate to Stop Pre-term Labor Due to Bone Changes in Exposed Babies. U.S. Food and Drug Administration (FDA), May 30, 2013. https://www.fda.gov/downloads/Drugs/DrugSafety/UCM353
  4. Committee Opinion: Magnesium Sulfate Use in Obstetrics. The American College of Obstetricians and Gynecologists Committee on Obstetric Practice Society for Maternal-Fetal Medicine, Number 652, January 2016. https://www.acog.org/Clinical-Guidance-and-Publi
  5. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8..
  6. Crowther CA, Hiller JE, Doyle LW. Magnesium sulphate for preventing preterm birth in threatened preterm labour. Cochrane Database Syst Rev 2002;4:CD001060. .
  7. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  8. Shepherd E, Salam RA, Manhas D, et al. Antenatal magnesium sulphate and adverse neonatal outcomes: A systematic review and meta-analysis. PLoS Med. 2019;16(12):e1002988.
  9. Hong JY, Hong JY, Choi YS, et al. Antenatal magnesium sulfate treatment and risk of necrotizing enterocolitis in preterm infants born at less than 32 weeks of gestation. Sci Rep. 2020;10(1):12826.
  10. Conde-Agudelo, A., Romero, R., and Kusanovic, J. P. Nifedipine in the management of preterm labor: a systematic review and metaanalysis. Am J Obstet.Gynecol. 2011;204(2):134-20.
  11. Vilchez G, Dai J, Kumar K, Mundy D, Kontopoulos E, Sokol RJ. Racial/ethnic disparities in magnesium sulfate neuroprotection: a subgroup analysis of a multicenter randomized controlled trial. J Matern Fetal Neonatal Med. 2018;31(17):2304-2311.
Possibly Unsafe

When used orally in excessive doses. Tell patients to avoid exceeding the tolerable upper intake level (UL) of 350 mg daily. Taking magnesium orally in higher doses can cause diarrhea. ...when prescription magnesium sulfate is given intramuscularly and intravenously prior to delivery for longer than 5 days. Maternal exposure to magnesium for longer than 5-7 days is associated with an increase in neonatal bone abnormalities such as osteopenia and fractures. The U.S. Food and Drug Administration (FDA) recommends that magnesium injection not be given for longer than 5-7 days.

  1. Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. Washington, DC: National Academy Press, 1999. Available at: http://books.nap.edu/books/0309063507/html/index.html.
  2. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  3. Gibbins KJ, Browning KR, Lopes VV, Anderson BL, Rouse DJ. Evaluation of the clinical use of magnesium sulfate for cerebral palsy prevention. Obstet Gynecol 2013;121(2 Pt 1):235-40.
  4. Drug Safety Communication: FDA Recommends Against Prolonged Use of Magnesium Sulfate to Stop Pre-term Labor Due to Bone Changes in Exposed Babies. U.S. Food and Drug Administration (FDA), May 30, 2013. https://www.fda.gov/downloads/Drugs/DrugSafety/UCM353
  5. Committee Opinion: Magnesium Sulfate Use in Obstetrics. The American College of Obstetricians and Gynecologists Committee on Obstetric Practice Society for Maternal-Fetal Medicine, Number 652, January 2016. https://www.acog.org/Clinical-Guidance-and-Publi
  6. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8..
  7. Crowther CA, Hiller JE, Doyle LW. Magnesium sulphate for preventing preterm birth in threatened preterm labour. Cochrane Database Syst Rev 2002;4:CD001060. .
  8. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.

Magnesium & Breastfeeding

Likely Safe

When used orally and appropriately. Magnesium is safe for those pregnant and breast-feeding when used in doses below the tolerable upper intake level (UL) of 350 mg daily.

  1. Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. Washington, DC: National Academy Press, 1999. Available at: http://books.nap.edu/books/0309063507/html/index.html.
Possibly Safe

When prescription magnesium sulfate is given intramuscularly and intravenously prior to delivery for up to 5 days. However, due to potential adverse effects associated with intravenous and intramuscular magnesium, use during pregnancy is limited to patients with specific conditions such as severe pre-eclampsia or eclampsia. There is some evidence that intravenous magnesium can increase fetal mortality and adversely affect neurological and skeletal development. However, a more recent analysis of clinical research shows that increased risk of fetal mortality seems to occur only in the studies where antenatal magnesium is used for tocolysis and not for fetal neuroprotection or pre-eclampsia/eclampsia. Furthermore, antenatal magnesium does not seem to be associated with increased risk of necrotizing enterocolitis in preterm infants. There is also concern that magnesium increases the risk of maternal adverse events. A meta-analysis of clinical research shows that magnesium sulfate might increase the risk of maternal adverse events, especially in Hispanic mothers compared to other racial and ethnic groups.

  1. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  2. Gibbins KJ, Browning KR, Lopes VV, Anderson BL, Rouse DJ. Evaluation of the clinical use of magnesium sulfate for cerebral palsy prevention. Obstet Gynecol 2013;121(2 Pt 1):235-40.
  3. Drug Safety Communication: FDA Recommends Against Prolonged Use of Magnesium Sulfate to Stop Pre-term Labor Due to Bone Changes in Exposed Babies. U.S. Food and Drug Administration (FDA), May 30, 2013. https://www.fda.gov/downloads/Drugs/DrugSafety/UCM353
  4. Committee Opinion: Magnesium Sulfate Use in Obstetrics. The American College of Obstetricians and Gynecologists Committee on Obstetric Practice Society for Maternal-Fetal Medicine, Number 652, January 2016. https://www.acog.org/Clinical-Guidance-and-Publi
  5. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8..
  6. Crowther CA, Hiller JE, Doyle LW. Magnesium sulphate for preventing preterm birth in threatened preterm labour. Cochrane Database Syst Rev 2002;4:CD001060. .
  7. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
  8. Shepherd E, Salam RA, Manhas D, et al. Antenatal magnesium sulphate and adverse neonatal outcomes: A systematic review and meta-analysis. PLoS Med. 2019;16(12):e1002988.
  9. Hong JY, Hong JY, Choi YS, et al. Antenatal magnesium sulfate treatment and risk of necrotizing enterocolitis in preterm infants born at less than 32 weeks of gestation. Sci Rep. 2020;10(1):12826.
  10. Conde-Agudelo, A., Romero, R., and Kusanovic, J. P. Nifedipine in the management of preterm labor: a systematic review and metaanalysis. Am J Obstet.Gynecol. 2011;204(2):134-20.
  11. Vilchez G, Dai J, Kumar K, Mundy D, Kontopoulos E, Sokol RJ. Racial/ethnic disparities in magnesium sulfate neuroprotection: a subgroup analysis of a multicenter randomized controlled trial. J Matern Fetal Neonatal Med. 2018;31(17):2304-2311.
Possibly Unsafe

When used orally in excessive doses. Tell patients to avoid exceeding the tolerable upper intake level (UL) of 350 mg daily. Taking magnesium orally in higher doses can cause diarrhea. ...when prescription magnesium sulfate is given intramuscularly and intravenously prior to delivery for longer than 5 days. Maternal exposure to magnesium for longer than 5-7 days is associated with an increase in neonatal bone abnormalities such as osteopenia and fractures. The U.S. Food and Drug Administration (FDA) recommends that magnesium injection not be given for longer than 5-7 days.

  1. Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. Washington, DC: National Academy Press, 1999. Available at: http://books.nap.edu/books/0309063507/html/index.html.
  2. Witlin AG, Sibai BM. Magnesium sulfate therapy in preeclampsia and eclampsia. Obstet Gynecol 1998;92:883-9..
  3. Gibbins KJ, Browning KR, Lopes VV, Anderson BL, Rouse DJ. Evaluation of the clinical use of magnesium sulfate for cerebral palsy prevention. Obstet Gynecol 2013;121(2 Pt 1):235-40.
  4. Drug Safety Communication: FDA Recommends Against Prolonged Use of Magnesium Sulfate to Stop Pre-term Labor Due to Bone Changes in Exposed Babies. U.S. Food and Drug Administration (FDA), May 30, 2013. https://www.fda.gov/downloads/Drugs/DrugSafety/UCM353
  5. Committee Opinion: Magnesium Sulfate Use in Obstetrics. The American College of Obstetricians and Gynecologists Committee on Obstetric Practice Society for Maternal-Fetal Medicine, Number 652, January 2016. https://www.acog.org/Clinical-Guidance-and-Publi
  6. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8..
  7. Crowther CA, Hiller JE, Doyle LW. Magnesium sulphate for preventing preterm birth in threatened preterm labour. Cochrane Database Syst Rev 2002;4:CD001060. .
  8. Azria, E., Tsatsaris, V., Goffinet, F., Kayem, G., Mignon, A., and Cabrol, D. [Magnesium sulfate in obstetrics: current data]. J Gynecol.Obstet.Biol.Reprod.(Paris) 2004;33(6 Pt 1):510-517.
DISCLAIMER: This tool is intended for informational purposes only, and should not be interpreted as specific medical advice. Patients should consult with a qualified healthcare provider before making decisions about therapies and/or health conditions.

© 2026 Therapeutic Research Center

Pregnancy & lactation ratings: Natural Medicines, Therapeutic Research Center

References & further reading

The 82 references that drive our Magnesium monograph and interaction data, from the evidence-graded Natural Medicines (TRC Healthcare) database. Citations with a link open the study on PubMed or the publisher’s site.

  1. Rodin SM, Johnson BF. Pharmacokinetic interactions with digoxin. Clin Pharmacokinet 1988;15:227-44.
  2. Covington TR, et al. Handbook of Nonprescription Drugs. 11th ed. Washington, DC: American Pharmaceutical Association, 1996.
  3. Dahle LO, Berg G, Hammar M, et al. The effect of oral magnesium substitution on pregnancy-induced leg cramps. Am J Obstet Gynecol 1995;173:175-80. PubMed
  4. Hansten PD, Horn JR. Drug Interactions Analysis and Management. Vancouver, WA: Applied Therapeutics Inc., 1997 and updates.
  5. Peikert A, Wilimzig C, Kohne-Volland R. Prophylaxis of migraine with oral magnesium: results from a prospective, multi-center, placebo-controlled and double-blind randomized study. Cephalalgia 1996;16:257-63. PubMed
  6. Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. Washington, DC: National Academy Press, 1999. Available at: http://books.nap.edu/books/0309063507/html/index.html.
  7. Birrer RB, Shallash AJ, Totten V. Hypermagnesemia-induced fatality following epsom salt gargles. J Emerg Med 2002;22:185-8. PubMed
  8. Ryan MP. Diuretics and potassium/magnesium depletion. Directions for treatment. Am J Med 1987;82:38-47.. PubMed
  9. Hollifield JW. Magnesium depletion, diuretics, and arrhythmias. Am J Med 1987;82:30-7.. PubMed
  10. Heidenreich O. Mode of action of conventional and potassium-sparing diuretics--aspects with relevance to Mg-sparing effects. Magnesium 1984;3:248-56..
  11. Pfaffenrath V, Wessely P, Meyer C, et al. Magnesium in the prophylaxis of migraine--a double-blind placebo-controlled study. Cephalalgia 1996;16:436-40.. PubMed
  12. Wang F, Van Den Eeden SK, Ackerson LM, et al. Oral magnesium oxide prophylaxis of frequent migrainous headache in children: a randomized, double-blind, placebo-controlled trial. Headache 2003;43:601-10.. PubMed
  13. Sompolinsky D, Samra Z. Influence of magnesium and manganese on some biological and physical properties of tetracycline. J Bacteriol 1972;110:468-76.. PubMed
  14. Jeyabalan A, Caritis SN. Pharmacologic inhibition of preterm labor. Clin Obstet Gynecol 2002;45:99-113. PubMed
  15. Mittendorf R, Dambrosia J, Pryde PG, et al. Association between the use of antenatal magnesium sulfate in preterm labor and adverse health outcomes in infants. Am J Obstet Gynecol 2002;186:1111-8.. PubMed
Keep reading

This information is for education only and is not a substitute for professional medical advice. Always check with your pharmacist or doctor before starting, stopping, or combining supplements and medications.

Parts of this content are provided by the Therapeutic Research Center, LLC.

DISCLAIMER: Currently this does not check for drug-drug interactions. This is not an all-inclusive comprehensive list of potential interactions and is for informational purposes only. Not all interactions are known or well-reported in the scientific literature, and new interactions are continually being reported. Input is needed from a qualified healthcare provider including a pharmacist before starting any therapy. Application of clinical judgment is necessary.

© 2021 Therapeutic Research Center, LLC

Product directory

Supplement products with Magnesium

51,878 products in our database contain Magnesium. Open any to see its full ingredient list and every drug interaction we check.

Zen by WellPath Capsule 60 Vegetarian Capsule(s) Off market View ingredients & interactions Zen Therapy by Rainbow Light Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions Zen Therapy by Rainbow Light Tablet Or Pill 30 Tablet(s) Off market View ingredients & interactions Zen TONiQ Stay Balanced Citrus by TrueToniqs Liquid 12 fl. Oz. · 355 mL Off market View ingredients & interactions Zena Stat by AA Anabolic Agents Capsule 90 Super Capsule(s) Off market View ingredients & interactions Zendocrine by doTERRA DigestZen Capsule 60 Vegetable Capsule(s) Off market View ingredients & interactions Zenofem by Ellison-Gray Laboratories Capsule 90 Capsule(s) Off market View ingredients & interactions Zero Carb Fat Incinerating Zerotein Serious Chocolate by VPX Powder 2 lb · 908 g Off market View ingredients & interactions Zero Carb Fat Incinerating Zerotein Serious Chocolate by VPX Powder 4.4 lb · 2 kg Off market View ingredients & interactions Zero Carb Fat Incinerating Zerotein Strawberry by VPX Powder 4.4 lb · 2 kg Off market View ingredients & interactions Zero Carb Fat Incinerating Zerotein Vanilla Dream by VPX Powder 4.4 lb · 2 kg Off market View ingredients & interactions Zero Carb Fat Incinerating Zerotein Vanilla Dream by VPX Powder 2 lb · 908 g Off market View ingredients & interactions Zero Carb SRO Vanilla Dream by VPX Powder 4.4 lb · 2 kg Off market View ingredients & interactions Zinc by Bronson Laboratories Tablet Or Pill 250 Tablet(s) Off market View ingredients & interactions Zinc by Genestra Brands Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions Zinc (Gluconate) 15 mg by Windmill Tablet Or Pill 100 Tablet(s) Off market View ingredients & interactions Zinc (Gluconate) 30 mg by Swanson Premium Brand Tablet Or Pill 250 Tablet(s) Off market View ingredients & interactions Zinc (Gluconate) 50 mg by Windmill Natural Vitamins Tablet Or Pill 100 Tablet(s) Off market View ingredients & interactions Zinc (Gluconate) 50 mg by Windmill Natural Vitamins Tablet Or Pill 100 Tablet(s) Off market View ingredients & interactions Zinc (Sulfate) 50 mg by Windmill Natural Vitamins Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions Zinc (Sulfate) 50 mg by Windmill Natural Vitamins Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions Zinc (Sulfate) 50 mg by Windmill Natural Vitamins Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions Zinc & C Lozenges by Swanson Premium Brand Lozenge 200 Lozenge(s) Off market View ingredients & interactions Zinc 10 mg by Natures Plus Tablet Or Pill 90 Tablet(s) Off market View ingredients & interactions
Drug-induced depletion

Medications associated with Magnesium depletion

222 medications in our licensed clinical database have been associated with lower Magnesium levels. An association is not a guarantee — it is a talking point for your pharmacist.

See all medications that may deplete Magnesium

Pharmacist Counseling Corner

Magnesium: Common Questions

What is Magnesium used for, and does it work?
People use Magnesium for many reasons, but the evidence varies by use. According to the Natural Medicines database, there is at least some clinical evidence supporting Magnesium for Bowel preparation, Constipation, Dyspepsia and Hypomagnesemia. For most other uses it has been studied for, the evidence is currently insufficient to rate. See the graded list on this page, and always confirm with your pharmacist or doctor.
Does Magnesium interact with prescription medications?
Yes. We list 295 medications with a known interaction with Magnesium, including 6 rated major. Use the checker above to see how Magnesium interacts with a specific drug.
How are Magnesium interactions rated?
Each interaction is graded major, moderate, or minor based on how clinically significant it is and the strength of the evidence behind it. Major interactions are the most serious and are best avoided, or used only under close professional supervision.
Is it safe to take Magnesium with my medications?
It depends on the specific medication. Some combinations are fine, while others call for monitoring, timing changes, or should be avoided. Check your exact drug above and confirm with your pharmacist or doctor before starting, stopping, or changing anything.
Where does this Magnesium interaction information come from?
Our interaction data is built on the Natural Medicines database — an evidence-graded reference for vitamins, herbs, and supplements — and is reviewed by licensed HelloPharmacist pharmacists, who may add clinical context.
What is Magnesium used for?
Magnesium is mainly used to prevent or treat low Magnesium levels, and as a laxative for constipation. People also take it for migraine prevention, sleep, muscle cramps, and stress, though the evidence for these is more limited.
Which form of Magnesium is best?
It depends on your goal. Magnesium citrate and oxide are often used for constipation, while gentler forms like Magnesium glycinate may cause less diarrhea when used for general supplementation. Ask your pharmacist which form fits your needs.
Can Magnesium cause diarrhea?
Yes. Diarrhea, bloating, and stomach cramps are the most common side effects, especially at higher doses or with forms like oxide and citrate. Taking it with food, using a lower dose, or trying a different form can help.
Is it safe to take Magnesium every day?
For most healthy people, taking Magnesium daily within recommended amounts is fine. People with kidney disease should avoid Magnesium supplements unless a doctor approves, since extra Magnesium can build up to dangerous levels.

Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy

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