Synthesize Grape Bubblegum Ingredients & Drug Interactions
by VPX
What is this page for?
First and foremost: checking Synthesize Grape Bubblegum against your medications. The heart of this page is the interaction checker and the full interaction report — how this product’s ingredients may interact with prescription and over-the-counter medicines you may be taking.
Around that, we add a pharmacist’s high-level view of the product as a whole — what’s inside, the evidence for its stated use, how transparent the label is, and what safety data exists — so you can see the full picture in one place. It’s educational information from our licensed clinical databases and the clinical staff at HelloPharmacist — not medical advice — and we don’t sell or endorse products. Our editorial policy
Synthesize Grape Bubblegum is a dietary supplement by VPX with 37 active ingredients. Its ingredients are commonly taken for replacing fluids and electrolytes, preventing dehydration during exercise or illness, treating low blood sodium (under medical care).Based on those ingredients, 336 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Sodium, L-Citrulline Malate, Casein Protein hydrolysate. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against Synthesize Grape Bubblegum by VPX
Ask about any prescription or over-the-counter medication and we check it for interactions with Synthesize Grape Bubblegum by VPX — and tell you which ingredient is responsible.
AI summaries are generated from our interaction database for education only — always confirm with your pharmacist. How we use AI
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HelloPharmacist Scorecard of Synthesize Grape Bubblegum by VPX
Our pharmacy team’s full take, with four database checks built into the cards below — a summary of what is known, not a grade of the product itself.
What’s inside
Low disclosure
This product contains 36 ingredients with active amino acids and performance-support compounds. The main active ingredients are sodium, calcium, whey protein isolate, creatine in three forms (monohydrate, gluconate, and magnesium chelate), and amino acids including L-leucine, L-isoleucine, L-valine, L-methionine, L-phenylalanine, L-histidine, L-threonine, L-lysine, L-citrulline malate, and whey protein hydrolysate.
You'll also find beta-alanine and its ethyl ester form, casein protein hydrolysate, gamma butyrobetaine HCl, and folate. Inactive ingredients (fillers and flavoring) include malic acid, citric acid, sucralose, and natural and artificial flavors.
Does it work?
Moderate evidence
Evidence for most of this product's ingredients is mixed. Creatine (in all three forms here) is possibly effective for muscle strength, athletic performance, and sarcopenia.
Whey proteins show possible effectiveness for athletic performance but are rated possibly ineffective for osteoporosis. L-phenylalanine is possibly effective for vitiligo but possibly ineffective for ADHD.
L-lysine is possibly effective for cold sores. Beta-alanine is possibly effective for athletic and physical performance.
L-citrulline is possibly effective for athletic performance. Casein peptides are likely effective for atopic dermatitis and food allergies.
For other ingredients—sodium, calcium, L-methionine, L-histidine, L-threonine, L-valine, and the ethyl ester forms—the evidence in our data is insufficient to rate their effectiveness for any condition, or effectiveness ratings are not established.
How safe is it?
Well-documented data
Sodium is generally well tolerated at normal dietary levels, but excess intake is linked to high blood pressure and heart strain; the product's sodium content should be weighed against your overall daily intake. Calcium is generally well tolerated at recommended doses with the most common side effects being belching, constipation, and gas; rare serious effects include kidney stones.
Whey protein is generally well tolerated, though common side effects include acne, bloating, cramps, diarrhea, and nausea—most are dose-related. Creatine is generally well tolerated in healthy adults but commonly causes dehydration, diarrhea, muscle cramps, and water retention; those with kidney issues should be cautious.
Beta-alanine commonly causes harmless tingling and flushing of the skin. L-phenylalanine can trigger anxiety, insomnia, heartburn, and constipation.
L-lysine may cause stomach upset and diarrhea. L-citrulline can cause heartburn and gastrointestinal discomfort.
Pregnancy and breastfeeding safety varies by ingredient: creatine, L-phenylalanine, beta-alanine, and L-citrulline safety data are insufficient or lacking, so they're best avoided; sodium and calcium are likely safe in pregnancy at recommended amounts; L-methionine and L-histidine are likely safe; data for the others is not on file.
Meds to double-check
Major interaction found
Check your medications against this product if you take HIV integrase inhibitors (dolutegravir, elvitegravir), IV ceftriaxone, blood pressure medications, lithium, levodopa for Parkinson disease, MAOIs or other antidepressants, quinolone or tetracycline antibiotics, bisphosphonates, or baclofen. The calcium and whey content pose the biggest timing issues; amino acids like phenylalanine and threonine add further considerations.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with some supporting evidence for its stated purpose. Major medication interactions have been identified, and safety information is well characterized.
This is a multi-ingredient sports supplement meant for athletic performance and muscle support, with some evidence behind creatine, whey, and beta-alanine for that use. Because it contains calcium, whey, and several amino acids with drug interactions—especially with HIV antiretrovirals, antibiotics, blood pressure medications, and Parkinson's drugs—you need to check your medications against the full list before starting.
If you have kidney problems or take lithium, blood pressure meds, or levodopa, talk with your pharmacist or doctor first.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 19 of 36 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Oct 22, 2015.
This Scorecard evaluates available label information, ingredient evidence, and known medication-safety considerations. It does not independently verify product identity, purity, potency, contamination, or manufacturing quality. How these ratings are computed
General information
Key facts about Synthesize Grape Bubblegum, straight from the product label.
| Brand | VPX |
|---|---|
| Barcode (UPC) | 610764860347 |
| Net contents | 1.2 lbs; 532 Gram(s) |
| Market status | On market |
| Date entered into DSLD | Oct 22, 2015 |
| DSLD ID | 51695 |
| Product type | Other Combinations |
| Supplement form | Powder |
| Dietary claims / uses | All Other, Structure/Function |
| Intended target group(s) | Adult (18 - 50 Years), Gluten Free, Sugar Free |
Everything in this section is reproduced from the manufacturer’s own product label — it’s the label speaking, not HelloPharmacist. We show it so you can see exactly what the maker states; we don’t verify or endorse those statements.
Supplement Facts
The label details for Synthesize Grape Bubblegum by VPX, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
Other ingredients: Natural & Artificial flavors, Malic Acid, Sucralean brand Sucralose, Citric Acid Anhydrous
Tap any ingredient to jump to its full detail below.
These statements are the manufacturer’s wording, reproduced from the product label — the label is saying it, not HelloPharmacist. We don’t verify or endorse them.
Formulation
Stimulant Free
Consequently, the goal of sugar-free SYNTHESIZE is to promote massive increases in insulin without the use of high glycemic-index carbohydrates.
General Statements
If you want to speed up lean muscle growth, get this one fact straight: Insulin is the most Anabolic (muscle building) of all hormones.
The purpose of this is to keep the body highly sensitive and responsive to insulin, which would result in greater lean muscle growth and destruction of fat tissue. Efficient insulin metabolism also allows you to continually access stored body fat to use as energy. The end result of this is a ripped and muscular physique!
Making Carbohydrates Obsolete!
In fact, these two compounds are far more effective than sugar-laden “N.O.” supplements without the unwanted carb-induced side effects – water retention, bloating, and an increase in body fat.
When post-exercise insulin is increased in the presence of protein hydrolydates and leucine, massive amounts of muscle building amino acids flood the blood, resulting in significant net protein being deposited into muscle.
Muscle energetic compounds
When Stacked with SHOTGUN 5X References: ~ Effects of pre- and post-exercise intake of performance supplements on body composition, circumferences, and muscle strength. Michael J Ormsbee, et. al ~ The impact of a 6-week resistance training program with pre- and post-exercise performance supplementation on cardiovascular risk, blood lipids, and fasting blood glucose. Jeong-Su Kim, et. al
Ignite Muscle Gene Proteins
Backed by 2 University Studies
Natural & Artificial Flavors
Made in USA from Domestic & Imported Ingredients in VPX State of the Art Facilities
New Muscle Now!
Not a significant source of fat, calories from fat, saturated fat, trans fat, cholesterol, carbohydrates, dietary fiber, sugars, vitamin A, vitamin C, iron and potassium.
When combined with resistance exercise and a sensible diet. Use only as a dietary supplement. Do not use for weight reduction.
Brand IP Statement(s)
In assembling the pieces of the scientific puzzle, SYNTHESIZE was formulated to mimic the insulin response generated by high glycemic (high GI) carbs (i.e. sugar) to activate beta-cells and stimulate whole body creatine retention!
You train intensely to get lean, hard, and pumped with crisp, water-free muscle separation, and this is where sugar-free SYNTHESIZE outperforms the competition!
Research has suggested that the cutting-edge compounds in the SHOTGUN 5X / SYNTHESIZE Stack work synergistically. VPX scientists used a carb-free approach to take advantage of the efficient insulin-spiking abilities of protein hydrolysates and the potent muscle building amino acid, L-Leucine.
2014 Vital Pharmaceuticals, Inc. All Rights Reserved.
Formula
One of the solutions was to use bis-Picolinato Oxo-Vanadium (BPOV), which is a potent form of chemically altered Vanadium. Additionally, Beta-Alanine was employed to stimulate research-proven whole-body creatine retention!
Contains: Milk
Suggested/Recommended/Usage/Directions
RECOMMENDED USE: Mix one scoop of SYNTHESIZE with 8 to 10 ounces of water or your favorite beverage. SYNTHESIZE can be used as a standalone product, or stacked together with SHOTGUN 5X prior to any type of athletic event or resistance training. Consume SYNTHESIZE during and after training. Other pre- and post-workout supplements may require several scoops; however, SYNTHESIZE is extremely effective and requires only one scoop. The SHOTGUN 5X / SYNTHESIZE Stack should always be utilized 30 minutes prior to resistance training.
Precautions
CAUTION: As with all dietary supplements, do not use this product if you are pregnant or nursing or have a medical condition.
This product is intended for use by healthy individuals only.
Contains: Milk Allergen Warning: Manufactured in a facility that processes milk, eggs, shellfish, tree nuts, peanuts, wheat and soy.
Do not purchase if safety seal is broken or missing.
FDA Disclaimer Statement
These statements have not been evaluated by the FDA. This product is not intended to diagnose, treat, cure or prevent any disease.
Seals/Symbols
VPX LIVE POWERFULLY
SUCRALEAN ZERO CALORIE SWEETENER
PeptoPro
COP Creatinol-O-Phosphate Patent No. 8,372,821
VITAL PHARMACEUTICALS GMP
GLUTEN FREE GF
{NON} GMO
FDA Statement of Identity
Dietary Supplement
Storage
Store container between 15(0)C to 25(0)C (59(0)F to 77(0)F).
General
V003
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
Synthesize Grape Bubblegum by VPX label
The label scan from the NIH Dietary Supplement Label Database. Tap to enlarge.
Label images are published by the NIH Dietary Supplement Label Database for the version of this product on file. Always read your actual product label.
View the full label (PDF)The Ingredients in Synthesize Grape Bubblegum by VPX
These are the 37 active ingredients this product is made of. Select any to open its full monograph.
Serving size19 Gram(s) Dosage formPowder Servings per container28 Amounts shown are per serving.
Most supplement products combine several ingredients, and a medication can interact with the product through any one of them. Each ingredient below shows whether it has known drug interactions.
Protein
Sodium
Interacts with205 drugs
Sodium is an essential mineral and electrolyte your body needs to balance fluids, support nerves, and help muscles work. Most people in modern diets g...
Sodium monograph & interactionsCalcium
Interacts with168 drugs
Calcium is an essential mineral your body needs for strong bones, nerve signaling, and muscle function, and supplements can help fill gaps when diet f...
Calcium monograph & interactionsFolate
- › Whey Protein Isolate
- › L-Leucine Ethyl Ester Hydrochloride
- › L-Isoleucine Ethyl Ester Hydrochloride
- › L-Valine Ethyl Ester Hydrochloride
- › L-Leucine
- › Creatine Monohydrate
- › L-Isoleucine
- › L-Methionine
- › L-Phenylalanine
- › L-Valine
- › L-Histidine
- › Beta-Alanine
- › L-Threonine
- › L-Lysine
- › L-Citrulline Malate
- › Whey Protein hydrolysate
- › Creatine Gluconate
- › Beta-Alanine Ethyl Ester Hydrochloride
- › Creatine Magnesium Chelate
- › L-2-aminopentanoic Acid
- › Gamma Butyrobetaine HCl
- › Casein Protein hydrolysate
- › Creatine Taurinate
- › COP
- › Di-Na Creatine Phosphate Tetrahydrate
- › MTB Pump
- › Monosodium Phosphate Anhydrous
- › Trisodium Phosphate Dodecahydrate
- › Di-L-Arginine-L-Malate
- › Gamma-Butyrobetaine Ethyl Ester Chloride
- › Bis Piccolinato Oxo Vanadium
Proprietary Branched Chain Ethyl Ester Amino Acid Matrix
Protein Hydrolysate Matrix
MHF-1 (Myogenic Hyperplasia Factors), NO2 , Insulinotrophic and MyoBlast Amplification Matrix
Other (inactive) ingredients: Natural & Artificial flavors, Malic Acid, Sucralean brand Sucralose, Citric Acid Anhydrous. These complete the product’s ingredient list but are not active constituents.
Synthesize Grape Bubblegum by VPX Drug Interactions
HelloPharmacist Interaction Report
VPX Synthesize Grape Bubblegum contains multiple ingredients with documented drug interactions.
The most serious is calcium, which has Major-severity interactions with three HIV integrase inhibitors: dolutegravir, elvitegravir, and ceftriaxone. Calcium reduces blood levels of dolutegravir by nearly 40% and elvitegravir through a binding process called chelation; the timing fix is critical (take the antiretroviral either 2 hours before or 6 hours after calcium for dolutegravir, or 2 hours before or after for elvitegravir).
Ceftriaxone and intravenous calcium can form dangerous precipitates in the lungs and kidneys—avoid any IV calcium within 48 hours of IV ceftriaxone.
Read the full breakdown — every affected drug type, severity by severity
Sodium carries Moderate interactions with blood pressure drugs, lithium, corticosteroids, and several others. High sodium intake can blunt blood pressure medication effectiveness or raise lithium levels dangerously; low sodium intake can do the opposite.
Whey proteins (including the hydrolysate form in this product) have Major interactions with levodopa for Parkinson disease—protein can worsen tremor and rigidity—and Moderate interactions with quinolone and tetracycline antibiotics and bisphosphonates through mineral binding. L-phenylalanine has a Major interaction with levodopa and Moderate interactions with certain antidepressants (MAOIs) and baclofen.
L-threonine theoretically reduces NMDA antagonist effects (a Major severity concern). L-citrulline and casein peptides both interact Moderately with blood pressure medications.
Altogether, these interactions span 333 individual medications. We could not check L-leucine ethyl ester hydrochloride, L-isoleucine ethyl ester hydrochloride, L-valine ethyl ester hydrochloride, L-leucine, L-valine, L-2-aminopentanoic acid, and gamma butyrobetaine HCl—no monograph data is on file for these.
Before you start, run your exact medications through the checker below.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against Synthesize Grape Bubblegum?
Ask about interactions with your drugs in plain English — “Can I take it with lisinopril?” — and we find you the answer in seconds, ingredient by ingredient.
Go to the checkerIngredients driving the most interactions
Individual Drug Interactions
The ingredients in Synthesize Grape Bubblegum interact with 336 drugs. Click any drug to see the details.
9 of the 37 ingredients in Synthesize Grape Bubblegum interact with drugs. Each result below shows which ingredient is responsible. Sodium L-Citrulline Malate Casein Protein hydrolysate Calcium Trisodium Phosphate Dodecahydrate Whey Protein Isolate L-Phenylalanine L-Threonine L-Lysine
Benserazide, LevodopaMadopar, Prolopa
How Benserazide, Levodopa interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
L-phenylalanineLevodopa Major
Interaction Summary
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Read the full L-phenylalanine + Benserazide, Levodopa interactionWhey Protein HydrolysateLevodopa Major
Interaction Summary
Theoretically, whey protein might decrease levodopa absorption.
Read the full Whey Protein Hydrolysate + Benserazide, Levodopa interactionCarbidopa, LevodopaDhivy, Rytary, Sinemet, Sinemet CR
How Carbidopa, Levodopa interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
L-phenylalanineLevodopa Major
Interaction Summary
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Read the full L-phenylalanine + Carbidopa, Levodopa interactionWhey Protein HydrolysateLevodopa Major
Interaction Summary
Theoretically, whey protein might decrease levodopa absorption.
Read the full Whey Protein Hydrolysate + Carbidopa, Levodopa interactionCarbidopa, Levodopa, EntacaponeStalevo
How Carbidopa, Levodopa, Entacapone interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
L-phenylalanineLevodopa Major
Interaction Summary
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Read the full L-phenylalanine + Carbidopa, Levodopa, Entacapone interactionWhey Protein HydrolysateLevodopa Major
Interaction Summary
Theoretically, whey protein might decrease levodopa absorption.
Read the full Whey Protein Hydrolysate + Carbidopa, Levodopa, Entacapone interactionCeftriaxoneRocephin
How Ceftriaxone interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumCeftriaxone (rocephin) Major
Interaction Summary
Co-administration of intravenous calcium and ceftriaxone can result in precipitation of a ceftriaxone-calcium salt in the lungs and kidneys.
Read the full Calcium + Ceftriaxone interactionCobicistat, Elvitegravir, Emtricitabine, Tenofovir Alafenamide FumarateGenvoya
How Cobicistat, Elvitegravir, Emtricitabine, Tenofovir Alafenamide Fumarate interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumElvitegravir (vitekta), Bictegravir/emtricitabine/tenofovir Alafenamide (biktarvy) Major
Interaction Summary
Calcium seems to reduce levels of elvitegravir.
Read the full Calcium + Cobicistat, Elvitegravir, Emtricitabine, Tenofovir Alafenamide Fumarate interactionDolutegravirTivicay
How Dolutegravir interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumDolutegravir (tivicay) Major
Interaction Summary
Calcium seems to reduce levels of dolutegravir.
Read the full Calcium + Dolutegravir interactionDolutegravir, Emtricitabine, Tenofovir AlafenamideDolutegravir, Emtricitabine, Tenofovir Alafenamide
How Dolutegravir, Emtricitabine, Tenofovir Alafenamide interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumDolutegravir (tivicay), Bictegravir/emtricitabine/tenofovir Alafenamide (biktarvy) Major
Interaction Summary
Calcium seems to reduce levels of dolutegravir.
Read the full Calcium + Dolutegravir, Emtricitabine, Tenofovir Alafenamide interactionDolutegravir, RilpivirineJuluca
How Dolutegravir, Rilpivirine interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumDolutegravir (tivicay) Major
Interaction Summary
Calcium seems to reduce levels of dolutegravir.
Read the full Calcium + Dolutegravir, Rilpivirine interactionElvitegravirVitekta
How Elvitegravir interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumElvitegravir (vitekta) Major
Interaction Summary
Calcium seems to reduce levels of elvitegravir.
Read the full Calcium + Elvitegravir interactionElvitegravir, Cobicistat, Emtricitabine, Tenofovir Disoproxil FumarateStribild
How Elvitegravir, Cobicistat, Emtricitabine, Tenofovir Disoproxil Fumarate interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumElvitegravir (vitekta), Bictegravir/emtricitabine/tenofovir Alafenamide (biktarvy) Major
Interaction Summary
Calcium seems to reduce levels of elvitegravir.
Read the full Calcium + Elvitegravir, Cobicistat, Emtricitabine, Tenofovir Disoproxil Fumarate interactionLevodopaInbrija, Larodopa
How Levodopa interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
L-phenylalanineLevodopa Major
Interaction Summary
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Read the full L-phenylalanine + Levodopa interactionWhey Protein HydrolysateLevodopa Major
Interaction Summary
Theoretically, whey protein might decrease levodopa absorption.
Read the full Whey Protein Hydrolysate + Levodopa interactionLevodopa, CarbidopaDuodopa
How Levodopa, Carbidopa interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
L-phenylalanineLevodopa Major
Interaction Summary
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Read the full L-phenylalanine + Levodopa, Carbidopa interactionWhey Protein HydrolysateLevodopa Major
Interaction Summary
Theoretically, whey protein might decrease levodopa absorption.
Read the full Whey Protein Hydrolysate + Levodopa, Carbidopa interactionMemantineEbixa
How Memantine interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
L-threonineNmda Antagonists Major
Interaction Summary
Theoretically, threonine might decrease the effects of NMDA antagonists.
Read the full L-threonine + Memantine interactionMemantine HydrochlorideNamenda
How Memantine Hydrochloride interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
L-threonineNmda Antagonists Major
Interaction Summary
Theoretically, threonine might decrease the effects of NMDA antagonists.
Read the full L-threonine + Memantine Hydrochloride interactionMemantine, DonepezilNamzaric
How Memantine, Donepezil interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
L-threonineNmda Antagonists Major
Interaction Summary
Theoretically, threonine might decrease the effects of NMDA antagonists.
Read the full L-threonine + Memantine, Donepezil interactionAcebutololRhotral, Sectral
How Acebutolol interacts with Synthesize Grape Bubblegum — through 3 ingredients. Tap an ingredient for the detail:
L-citrulline MalateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use of L-citrulline with antihypertensive drugs might have additive effects and increase the chance of hypotension.
Read the full L-citrulline Malate + Acebutolol interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Acebutolol interactionCasein Protein HydrolysateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, combining these casein peptides with antihypertensive drugs might increase the risk of hypotension.
Read the full Casein Protein Hydrolysate + Acebutolol interactionAcetazolamideAk-Zol, Diamox
How Acetazolamide interacts with Synthesize Grape Bubblegum — through 3 ingredients. Tap an ingredient for the detail:
Casein Protein HydrolysateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, combining these casein peptides with antihypertensive drugs might increase the risk of hypotension.
Read the full Casein Protein Hydrolysate + Acetazolamide interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Acetazolamide interactionL-citrulline MalateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use of L-citrulline with antihypertensive drugs might have additive effects and increase the chance of hypotension.
Read the full L-citrulline Malate + Acetazolamide interactionAlendronateBinosto, Fosamax
How Alendronate interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
Whey Protein HydrolysateBisphosphonates Moderate
Interaction Summary
Theoretically, whey protein might reduce the absorption of bisphosphonates.
Read the full Whey Protein Hydrolysate + Alendronate interactionCalciumBisphosphonates Moderate
Interaction Summary
Calcium reduces the absorption of bisphosphonates.
Read the full Calcium + Alendronate interactionAlendronate Sodium
How Alendronate Sodium interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
CalciumBisphosphonates Moderate
Interaction Summary
Calcium reduces the absorption of bisphosphonates.
Read the full Calcium + Alendronate Sodium interactionWhey Protein HydrolysateBisphosphonates Moderate
Interaction Summary
Theoretically, whey protein might reduce the absorption of bisphosphonates.
Read the full Whey Protein Hydrolysate + Alendronate Sodium interactionAlendronate Sodium, CholecalciferolFosamax Plus D
How Alendronate Sodium, Cholecalciferol interacts with Synthesize Grape Bubblegum — through 2 ingredients. Tap an ingredient for the detail:
Whey Protein HydrolysateBisphosphonates Moderate
Interaction Summary
Theoretically, whey protein might reduce the absorption of bisphosphonates.
Read the full Whey Protein Hydrolysate + Alendronate Sodium, Cholecalciferol interactionCalciumBisphosphonates Moderate
Interaction Summary
Calcium reduces the absorption of bisphosphonates.
Read the full Calcium + Alendronate Sodium, Cholecalciferol interactionAlginic Acid, Aluminum HydroxideRafton
How Alginic Acid, Aluminum Hydroxide interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Alginic Acid, Aluminum Hydroxide interactionAliskirenTekturna
How Aliskiren interacts with Synthesize Grape Bubblegum — through 3 ingredients. Tap an ingredient for the detail:
Casein Protein HydrolysateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, combining these casein peptides with antihypertensive drugs might increase the risk of hypotension.
Read the full Casein Protein Hydrolysate + Aliskiren interactionL-citrulline MalateAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use of L-citrulline with antihypertensive drugs might have additive effects and increase the chance of hypotension.
Read the full L-citrulline Malate + Aliskiren interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Aliskiren interactionAluminum Acetate, Benzethonium ChlorideBuro-Sol Otic Solution
How Aluminum Acetate, Benzethonium Chloride interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Acetate, Benzethonium Chloride interactionAluminum ChlorideAluminum Chloride, Anhydrol Forte, Driclor, Drysol
How Aluminum Chloride interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Chloride interactionAluminum HydroxideAlu-Cap, Amphojel, Gaviscon
How Aluminum Hydroxide interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Hydroxide interactionAluminum Hydroxide, Aspirin, Codeine Phosphate, Magnesium HydroxideAscriptin Codeine #2
How Aluminum Hydroxide, Aspirin, Codeine Phosphate, Magnesium Hydroxide interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Hydroxide, Aspirin, Codeine Phosphate, Magnesium Hydroxide interactionAluminum Hydroxide, Aspirin, Magnesium HydroxideAscriptin
How Aluminum Hydroxide, Aspirin, Magnesium Hydroxide interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Hydroxide, Aspirin, Magnesium Hydroxide interactionAluminum Hydroxide, Magnesium Hydroxide (otc Drug)Maalox, Mucogel
How Aluminum Hydroxide, Magnesium Hydroxide (otc Drug) interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Hydroxide, Magnesium Hydroxide (otc Drug) interactionAluminum Hydroxide, Magnesium Hydroxide, Simethicone (otc Drug)Mylanta
How Aluminum Hydroxide, Magnesium Hydroxide, Simethicone (otc Drug) interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum Hydroxide, Magnesium Hydroxide, Simethicone (otc Drug) interactionAluminum, CalciumDomeboro
How Aluminum, Calcium interacts with Synthesize Grape Bubblegum — through 1 ingredient. Tap an ingredient for the detail:
CalciumAluminum Moderate
Interaction Summary
Calcium citrate might increase aluminum absorption and toxicity.
Read the full Calcium + Aluminum, Calcium interactionEach ingredient & the kinds of drugs it affects
For each ingredient in Synthesize Grape Bubblegum with known interactions, here are the types of medications they can affect. Open any type for the detail — or search your exact drug in the checker above.
Sodium
Antihypertensive Drugs
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
High intake of dietary sodium can increase systolic and diastolic blood pressure. Also, high intake of sodium may necessitate increased use of antihypertensive medications to achieve blood pressure control in some patients, such as those with chronic kidney disease.
Corticosteroids
Concomitant use of mineralocorticoids and some glucocorticoids with sodium supplements might increase the risk of hypernatremia.
Mineralocorticoids and some glucocorticoids (corticosteroids) cause sodium retention. This effect is dose-related and depends on mineralocorticoid potency. It is most common with hydrocortisone, cortisone, and fludrocortisone, followed by prednisone and prednisolone.
Didanosine (Videx)
Concomitant use of didanosine with additional sodium from dietary or supplemental sources may increase the risk of hypernatremia.
Didanosine formulations contain a significant amount of sodium.
Lithium
Altering dietary intake of sodium might alter the levels and clinical effects of lithium.
High sodium intake can reduce plasma concentrations of lithium by increasing lithium excretion. Reducing sodium intake can significantly increase plasma concentrations of lithium and cause lithium toxicity in patients being treated with lithium carbonate. Stabilizing sodium intake is shown to reduce the percentage of patients with lithium level fluctuations above 0.8 mEq/L. Patients taking lithium should avoid significant alterations in their dietary intake of sodium.
Sodium Phosphates
Theoretically, concomitant use of sodium phosphate with sodium supplements might increase the risk of hypernatremia.
Use of high doses (> 45 mL in 24 hours) of sodium phosphate, such as those used for bowel cleansing before surgery, can lead to serious electrolyte disturbances, including hypernatremia. The risk of hypernatremia is highest in the elderly and people with other risk factors for electrolyte disturbances.
Sodium-Containing Drugs
Concomitant use of sodium-containing drugs with additional sodium from dietary or supplemental sources may increase the risk of hypernatremia and long-term sodium-related complications.
The Chronic Disease Risk Reduction (CDRR) intake level of 2.3 grams of sodium daily indicates the intake at which it is believed that chronic disease risk increases for the apparently healthy population. Some medications contain high quantities of sodium. When used in conjunction with sodium supplements or high-sodium diets, the CDRR may be exceeded. Additionally, concomitant use may increase the risk for hypernatremia; this risk is highest in the elderly and people with other risk factors for electrolyte disturbances.
Tolvaptan (Samsca)
Theoretically, concomitant use of tolvaptan with sodium might increase the risk of hypernatremia.
Tolvaptan is a vasopressin receptor 2 antagonist that is used to increase sodium levels in patients with hyponatremia. Patients taking tolvaptan should use caution with the use of sodium salts such as sodium chloride.
L-Citrulline Malate
Antihypertensive Drugs
Theoretically, concomitant use of L-citrulline with antihypertensive drugs might have additive effects and increase the chance of hypotension.
L-citrulline is converted to L-arginine, which can increase nitric oxide and cause vasodilation. However, a meta-analysis of 5 small clinical studies suggests that taking L-citrulline 3-6 grams daily for 1-8 weeks does not lower blood pressure when compared with control.
Phosphodiesterase-5 Inhibitors
Theoretically, concurrent use of phosphodiesterase-5 (PDE-5) inhibitors and L-citrulline might result in additive vasodilation.
L-citrulline is converted to L-arginine, which can increase nitric oxide and cause vasodilation. Theoretically, taking L-arginine with PDE-5 inhibitors might have additive vasodilatory and hypotensive effects. However, in studies evaluating the combined use of L-arginine and sildenafil for erectile dysfunction, hypotension was not reported.
Casein Protein hydrolysate
Antihypertensive Drugs
Theoretically, combining these casein peptides with antihypertensive drugs might increase the risk of hypotension.
Clinical research shows that some casein peptides, including the lactotripeptides isoleucine-proline-proline (IPP) and valine-proline-proline (VPP), can modestly reduce blood pressure in patients with hypertension.
Calcium
Ceftriaxone (Rocephin)
Co-administration of intravenous calcium and ceftriaxone can result in precipitation of a ceftriaxone-calcium salt in the lungs and kidneys.
Avoid administering intravenous calcium in any form, such as parenteral nutrition or Lactated Ringers, within 48 hours of intravenous ceftriaxone. Case reports in neonates show that administering intravenous ceftriaxone and calcium can result in precipitation of a ceftriaxone-calcium salt in the lungs and kidneys. In several cases, neonates have died as a result of this interaction. So far there are no reports in adults; however, there is still concern that this interaction might occur in adults.
Dolutegravir (Tivicay)
Calcium seems to reduce levels of dolutegravir.
Advise patients to take dolutegravir either 2 hours before or 6 hours after taking calcium supplements. Pharmacokinetic research suggests that taking calcium carbonate 1200 mg concomitantly with dolutegravir 50 mg reduces plasma levels of dolutegravir by almost 40%. Calcium appears to decrease levels of dolutegravir through chelation.
Elvitegravir (Vitekta)
Calcium seems to reduce levels of elvitegravir.
Advise patients to take elvitegravir either 2 hours before or 2 hours after taking calcium supplements. Pharmacokinetic research suggests that taking calcium along with elvitegravir can reduce blood levels of elvitegravir through chelation.
Aluminum
Calcium citrate might increase aluminum absorption and toxicity. Other types of calcium do not increase aluminum absorption.
Calcium citrate can increase the absorption of aluminum when taken with aluminum hydroxide. The increase in aluminum levels may become toxic, particularly in individuals with kidney disease. However, the effect of calcium citrate on aluminum absorption is due to the citrate anion rather than calcium cation. Calcium acetate does not appear to increase aluminum absorption.
Bictegravir/Emtricitabine/Tenofovir Alafenamide (Biktarvy)
Calcium might decrease levels of bictegravir/emtricitabine/tenofovir alafenamide by reducing its absorption when taken in a fasting state.
Advise patients that bictegravir/emtricitabine/tenofovir alafenamide and calcium can be taken together if taken with food. However, if taken on an empty stomach, bictegravir/emtricitabine/tenofovir alafenamide should not be taken with, or 2 hours after, calcium containing products.
Bisphosphonates
Calcium reduces the absorption of bisphosphonates.
Advise patients to take bisphosphonates at least 30 minutes before calcium, but preferably at a different time of day. Calcium supplements decrease absorption of bisphosphonates.
Calcipotriene (Dovonex)
Taking calcipotriene with calcium might increase the risk for hypercalcemia.
Calcipotriene is a vitamin D analog used topically for psoriasis. It can be absorbed in sufficient amounts to cause systemic effects, including hypercalcemia. Theoretically, combining calcipotriene with calcium supplements might increase the risk of hypercalcemia.
Digoxin (Lanoxin)
Using intravenous calcium with digoxin might increase the risk of fatal cardiac arrhythmias.
Hypercalcemia increases the risk of fatal cardiac arrhythmias with digoxin. However, one retrospective analysis of clinical data suggests that intravenous calcium does not increase the risk of dysrhythmias or mortality in patients receiving digoxin.
Diltiazem (Cardizem, Others)
Theoretically, calcium may reduce the therapeutic effects of diltiazem.
Hypercalcemia can reduce the effectiveness of verapamil in atrial fibrillation. Theoretically, calcium might increase this risk of hypercalcemia and reduce the effectiveness of diltiazem.
Levothyroxine (Synthroid, Others)
Calcium seems to reduce the absorption and effectiveness of levothyroxine.
Advise patients to take levothyroxine and calcium supplements at least 4 hours apart. Calcium reduces levothyroxine absorption, probably by forming insoluble complexes. Calcium carbonate supplements reduce effectiveness of levothyroxine in patients with hypothyroidism.
Lithium
Theoretically, concomitant use of calcium and lithium may increase this risk of hypercalcemia.
Clinical research suggests that long-term use of lithium may cause hypercalcemia in 10% to 60% of patients. Theoretically, concomitant use of lithium and calcium supplements may further increase this risk.
Quinolone Antibiotics
Calcium seems to reduce the absorption of quinolone antibiotics.
Advise patients to take oral quinolones at least 2 hours before or 4-6 hours after calcium supplements or calcium-fortified foods. Taking calcium at the same time as oral quinolones can reduce quinolone absorption. Calcium binds to quinolones in the gut.
Raltegravir (Isentress)
Calcium may reduce levels of raltegravir.
Pharmacokinetic research shows that taking a single dose of calcium carbonate 3000 mg along with raltegravir 400 mg twice daily modestly decreases the mean area under the curve of raltegravir, but the decrease does not necessitate a dose adjustment of raltegravir. However, a case of elevated HIV-1 RNA levels and documented resistance to raltegravir has been reported for a patient taking calcium carbonate 1 gram three times daily plus vitamin D3 (cholecalciferol) 400 IU three times daily in combination with raltegravir 400 mg twice daily for 11 months. It is thought that calcium reduced raltegravir levels by chelation, leading to treatment failure.
Sotalol (Betapace)
Calcium seems to reduce the absorption of sotalol.
Advise patients to separate doses by at least 2 hours before or 4-6 hours after calcium. Calcium appears to reduce the absorption of sotalol, probably by forming insoluble complexes.
Tetracycline Antibiotics
Calcium seems to reduce the absorption of tetracycline antibiotics.
Advise patients to take oral tetracyclines at least 2 hours before, or 4-6 hours after calcium supplements. Taking calcium at the same time as oral tetracyclines can reduce tetracycline absorption. Calcium binds to tetracyclines in the gut.
Thiazide Diuretics
Taking calcium along with thiazides might increase the risk of hypercalcemia and renal failure.
Thiazides reduce calcium excretion by the kidneys. Using thiazides along with moderately large amounts of calcium carbonate increases the risk of milk-alkali syndrome (hypercalcemia, metabolic alkalosis, renal failure). Patients may need to have their serum calcium levels and/or parathyroid function monitored regularly.
Verapamil (Calan, Others)
Theoretically, calcium may reduce the therapeutic effects of verapamil.
Hypercalcemia can reduce the effectiveness of verapamil in atrial fibrillation. Theoretically, use of calcium supplements may increase this risk of hypercalcemia and reduce the effectiveness of verapamil.
Calcium Channel Blockers
Intravenous calcium may decrease the effects of calcium channel blockers; oral calcium is unlikely to have this effect.
Intravenous calcium is used to decrease the effects of calcium channel blockers in the management of overdose. Intravenous calcium gluconate has been used before intravenous verapamil (Isoptin) to prevent or reduce the hypotensive effects without affecting the antiarrhythmic effects. But there is no evidence that dietary or supplemental calcium when taken orally interacts with calcium channel blockers.
Trisodium Phosphate Dodecahydrate
Ace Inhibitors (Aceis)
Using ACEIs with high doses of potassium increases the risk of hyperkalemia.
ACEIs block the actions of the renin-angiotensin-aldosterone system and reduce potassium excretion. Concomitant use of these drugs with potassium supplements increases the risk of hyperkalemia. However, concomitant use of these drugs with moderate dietary potassium intake (about 3775-5200 mg daily) does not increase serum potassium levels.
Angiotensin Receptor Blockers (Arbs)
Using ARBs with high doses of potassium increases the risk of hyperkalemia.
ARBs block the actions of the renin-angiotensin-aldosterone system and reduce potassium excretion. Concomitant use of these drugs with potassium supplements increases the risk of hyperkalemia. However, concomitant use of these drugs with moderate dietary potassium intake (about 3775-5200 mg daily) does not increase serum potassium levels.
Potassium-Sparing Diuretics
Concomitant use increases the risk of hyperkalemia.
Using potassium-sparing diuretics with potassium supplements increases the risk of hyperkalemia.
Whey Protein Isolate
Levodopa
Theoretically, whey protein might decrease levodopa absorption.
Small clinical studies show that concomitant ingestion of protein or high doses of leucine or isoleucine (100 mg/kg) and levodopa can exacerbate tremor, rigidity, and the "on-off" syndrome in patients with Parkinson disease.
Bisphosphonates
Theoretically, whey protein might reduce the absorption of bisphosphonates.
Whey protein contains minerals such as calcium that bind bisphosphonates in the gut. Advise patients to take bisphosphonates at least 30 minutes before whey protein, but preferably at a different time of day.
Quinolone Antibiotics
Theoretically, whey protein might decrease quinolone absorption.
Whey protein contains minerals, such as calcium, that can bind to quinolones in the gut. To avoid this interaction, advise patients to take oral quinolones at least 2 hours before or 4-6 hours after whey protein.
Tetracycline Antibiotics
Theoretically, whey protein might decrease tetracycline absorption.
Whey protein contains minerals, such as calcium, that bind to tetracyclines in the gut. To avoid this interaction, advise patients to take oral tetracyclines at least 2 hours before or 4-6 hours after whey protein.
L-Phenylalanine
Levodopa
Phenylalanine, especially in high doses, can reduce the effectiveness of levodopa.
Phenylalanine competes with levodopa for carrier-mediated transport into the brain. The resulting reduction in levels of levodopa in the brain can exacerbate tremor, rigidity, and the "on-off" phenomenon in patients with Parkinson disease.
Baclofen
Concomitant intake of phenylalanine may reduce the intestinal absorption of baclofen.
Phenylalanine and baclofen share the same intestinal carrier for absorption; phenylalanine competitively inhibits the absorption of baclofen, reducing its plasma levels.
Monoamine Oxidase Inhibitors (Maois)
Theoretically, concomitant use of L-phenylalanine and non-selective MAOIs might increase the risk of hypertensive crisis.
L-phenylalanine is metabolized to tyrosine. Some evidence suggests that L-phenylalanine, given with the non-selective MAOI pargyline, might prevent the elimination of tyramine, increasing the risk of hypertensive crisis. However, this was not reported in a small number of patients when using L-phenylalanine with the partially selective MAO-B inhibitor, selegiline.
L-Threonine
Nmda Antagonists
Theoretically, threonine might decrease the effects of NMDA antagonists.
Threonine increases central nervous system (CNS) glycine levels. Glycine seems to bind a site on NMDA receptors and enhance the activity of the receptors.
L-Lysine
5-Ht4 Agonists
Theoretically, lysine may reduce the effects of 5-HT4 agonists.
Animal research suggests that L-lysine is a partial serotonin receptor 4 (5-HT4) antagonist and inhibits diarrhea induced by the 5-HT4 agonist, 5-hydroxytryptophane.
Brand information
Manufacturer and brand details for Synthesize Grape Bubblegum, from the product label.
Synthesize Grape Bubblegum by VPX: Common Questions
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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The Full Monographs Behind Synthesize Grape Bubblegum’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Sodium
Interacts with 205 drugsSodium is an essential mineral and electrolyte your body needs to balance fluids, support nerves, and help muscles work. Most people in modern diets get more than enough—often too much—from...
Read the full Sodium monograph → Herb & supplement monographCalcium
Interacts with 168 drugsCalcium is an essential mineral your body needs for strong bones, nerve signaling, and muscle function, and supplements can help fill gaps when diet falls short. Most people do best getting...
Read the full Calcium monograph → Herb & supplement monographWhey Protein
Interacts with 53 drugsWhey protein is a high-quality, complete protein made from cow's milk that can help people meet protein needs and support muscle growth when combined with exercise. It is generally safe for...
Read the full Whey Protein monograph → Herb & supplement monographCreatine
Creatine is one of the most studied sports supplements, with solid evidence that it can boost strength and performance during short, high-intensity activities like weightlifting and sprintin...
Read the full Creatine monograph → Herb & supplement monographMethionine
Methionine is an essential amino acid that your body needs for protein building and many basic chemical reactions. Most people get enough from a normal diet, and supplements are generally no...
Read the full Methionine monograph → Herb & supplement monographPhenylalanine
Interacts with 16 drugsPhenylalanine is an essential amino acid the body uses to make brain chemicals like dopamine and norepinephrine. Some people take it for mood, vitiligo, or pain, but the evidence is mostly l...
Read the full Phenylalanine monograph → Herb & supplement monographHistidine
Histidine is an essential amino acid your body needs to build proteins and to make compounds like histamine and carnosine. Most people get enough from a normal diet, and good-quality researc...
Read the full Histidine monograph → Herb & supplement monographBeta-alanine
Beta-alanine is an amino acid taken mostly by athletes to raise muscle carnosine, which may help buffer acid and reduce fatigue during short, high-intensity exercise. The evidence is moderat...
Read the full Beta-alanine monograph → Herb & supplement monographThreonine
Interacts with 3 drugsThreonine is an essential amino acid your body needs but cannot make, so you must get it from food or supplements. Most people get plenty from a normal diet, and high-quality evidence for ta...
Read the full Threonine monograph → Herb & supplement monographLysine
Interacts with 1 drugLysine is an essential amino acid your body cannot make on its own, so it must come from food or supplements. People most often take extra lysine to try to prevent or shorten cold sores, but...
Read the full Lysine monograph → Herb & supplement monographL-citrulline
Interacts with 178 drugsL-citrulline is an amino acid that the body turns into L-arginine to help make nitric oxide, which relaxes blood vessels and may improve blood flow. It is popular for exercise performance an...
Read the full L-citrulline monograph → Herb & supplement monographCasein Peptides
Interacts with 172 drugsCasein peptides are small protein fragments made from milk casein, often studied for mild blood pressure support and relaxation. The evidence is limited and mostly modest, so they should not...
Read the full Casein Peptides monograph → Herb & supplement monographPotassium
Interacts with 62 drugsPotassium is an essential mineral your body needs for nerve signals, muscle function, and a steady heartbeat, and most people get enough from a balanced diet rich in fruits and vegetables. P...
Read the full Potassium monograph →Sources & How We Checked
Synthesize Grape Bubblegum's label data comes from the NIH Dietary Supplement Label Database; the ingredient interaction data is from the Natural Medicines database, reviewed by our pharmacists.
- NIH Dietary Supplement Label Database (DSLD) — The official product label on file for this supplement.
- Natural Medicines (Therapeutic Research Center) — Evidence-graded clinical reference behind the ingredient interaction data.
Content is written and reviewed by licensed HelloPharmacist pharmacists. See our data sources and editorial standards for how this information is built and checked.
The 297 references behind this product’s interaction data
Every citation that drives the interaction findings for this product’s ingredients, from the evidence-graded Natural Medicines (TRC Healthcare) database. Open an ingredient to browse its citations — links open the study on PubMed or the publisher’s site.
Sodium 38 references
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- Frings-Meuthen P, Buehlmeier J, Baecker N, et al. High sodium chloride intake exacerbates immobilization-induced bone resorption and protein losses. J Appl Physiol 2011;111(2):537-542. PubMed
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- Okusa MD, Crystal LJ. Clinical manifestations and management of acute lithium intoxication. Am J Med 1994;97(4):383-9. PubMed
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- D'Elia L, Rossi G, Ippolito R, Cappuccio FP, Strazzullo P. Habitual salt intake and risk of gastric cancer: a meta-analysis of prospective studies. Clin Nutr 2012;31(4):489-98. PubMed
- Goldsmith SR. Hyponatremia in heart failure: time for a trial. J Card Fail 2013;19(6):398-400. PubMed
- Willocks L, Brettle R, Keen J, Valentine C, Pinching AJ. Formulations of didanosine (ddI) and salt overload. Lancet 1992;339(8786):190.
- Chen L, Zhang Z, Chen W, Whelton PK, Appel LJ. Lower Sodium Intake and Risk of Headaches: Results From the Trial of Nonpharmacologic Interventions in the Elderly. Am J Public Health. 2016;106(7):1270-5. PubMed
- Cook NR, Appel LJ, Whelton PK. Lower levels of sodium intake and reduced cardiovascular risk. Circulation. 2014;129(9):981-9. PubMed
- Cook NR, Appel LJ, Whelton PK. Sodium Intake and All-Cause Mortality Over 20 Years in the Trials of Hypertension Prevention. J Am Coll Cardiol. 2016;68(15):1609-1617. PubMed
- Mente A, O'Donnell M, Rangarajan S, et al. Associations of urinary sodium excretion with cardiovascular events in individuals with and without hypertension: a pooled analysis of data from four studies. Lancet. 2016;388(10043):465-75. PubMed
- Moosavian SP, Haghighatdoost F, Surkan PJ, Azadbakht L. Salt and obesity: a systematic review and meta-analysis of observational studies. Int J Food Sci Nutr. 2017;68(3):265-277. PubMed
- O'Donnell M, Mente A, Rangarajan S, et al. Urinary sodium and potassium excretion, mortality, and cardiovascular events. N Engl J Med. 2014;371(7):612-23. DOI
- Poggio R, Gutierrez L, Matta MG, Elorriaga N, Irazola V, Rubinstein A. Daily sodium consumption and CVD mortality in the general population: systematic review and meta-analysis of prospective studies. Public Health Nutr. 2015;18(4):695-704. PubMed
- Stallings VA, Harrison M, Oria M; Committee to Review the Dietary Reference Intakes for Sodium and Potassium, Food and Nutrition Board, Health and Medicine Division, National Academies of Sciences, Engineering, and Medicine. Washington (DC): National Acad
- Mahtani KR, Heneghan C, Onakpoya I, et al. Reduced Salt Intake for Heart Failure: A Systematic Review. JAMA Intern Med. 2018 Dec 1;178(12):1693-1700. PubMed
- Yancy CW. Sodium Restriction in Heart Failure: Too Much Uncertainty-Do the Trials. JAMA Intern Med. 2018 Dec 1;178(12):1700-1701. PubMed
- He FJ, Campbell NRC, Ma Y, MacGregor GA, Cogswell ME, Cook NR. Errors in estimating usual sodium intake by the Kawasaki formula alter its relationship with mortality: implications for public health. Int J Epidemiol. 2018;47(6):1784-1795. PubMed
- Murthy K, Ondrey GJ, Malkani N, et al. THE EFFECTS OF HYPONATREMIA ON BONE DENSITY AND FRACTURES: A SYSTEMATIC REVIEW AND META-ANALYSIS. Endocr Pract. 2019;25(4):366-378. PubMed
- Messerli FH, Hofstetter L, Syrogiannouli L, et al. Sodium intake, life expectancy, and all-cause mortality. Eur Heart J 2021;42(21):2103-2112. PubMed
- Graudal NA, Hubeck-Graudal T, Jurgens G. Effects of low sodium diet versus high sodium diet on blood pressure, renin, aldosterone, catecholamines, cholesterol, and triglyceride. Cochrane Database Syst Rev 2020;12(12):CD004022. PubMed
- Giatti S, Santos RB, Aielo AN, et al. Association of sodium with obstructive sleep apnea. The ELSA-Brasil study. Ann Am Thorac Soc 2021;18(3):502-510. PubMed
- Nan X, Lu H, Wu J, et al. The interactive association between sodium intake, alcohol consumption and hypertension among elderly in northern China: a cross-sectional study. BMC Geriatr 2021;21(1):135. PubMed
- Kyozuka H, Fukusda T, Murata T, et al. Impact of preconception sodium intake on hypertensive disorders of pregnancy: The Japan Environment and Children's study. Pregnancy Hypertens 2021;23:66-72. PubMed
- Zhao L, Ogden CL, Yang Q, et al. Association of usual sodium intake with obesity among US children and adolescents, NHANES 2009-2016. Obesity (Silver Spring) 2021;29(3):587-594. PubMed
- Ma Y, He FJ, Sun Q, et al. 24-Hour urinary sodium and potassium excretion and cardiovascular risk. N Engl J Med 2022;386(3):252-263. PubMed
- Liu J, Yang X, Zhang P, et al. Association of urinary sodium excretion and left ventricular hypertrophy in people with type 2 diabetes mellitus: A cross-sectional study. Front Endocrinol (Lausanne) 2021;12:728493. PubMed
- Filippini T, Malavolti M, Whelton PK, Vinceti M. Sodium intake and risk of hypertension: A systematic review and dose-response meta-analysis of observational cohort studies. Curr Hypertens Rep 2022;24(5):133-144. PubMed
- Wang DD, Li Y, Nguyen XT, et al. Dietary sodium and potassium intake and risk of non-fatal cardiovascular diseases: The million veteran program. Nutrients 2022;14(5):1121. PubMed
- Kwak JH, Park CH, Eun CS, et al. The associations of dietary intake of high sodium and low zinc with gastric cancer mortality: A prospective cohort study in Korea. Nutr Cancer 2022;74(10):3501-3508. PubMed
- George S, Maiti R, Mishra BR, Jena M, Mohapatra D. Effect of regulated add-on sodium chloride intake on stabilization of serum lithium concentration in bipolar disorder: A randomized controlled trial. Bipolar Disord 2023;25(1):66-75. PubMed
- Zhou TL, Schütten MTJ, Kroon AA, et al. Urinary Sodium Excretion and Salt Intake Are Not Associated With Blood Pressure Variability in a White General Population. J Am Heart Assoc 2023;12(1):e026578. PubMed
Calcium 62 references
- Shils M, Olson A, Shike M. Modern Nutrition in Health and Disease. 8th ed. Philadelphia, PA: Lea and Febiger, 1994.
- Hernandez-Avila M, Gonzalez-Cossio T, Hernandez-Avila JE, et al. Dietary calcium supplements to lower blood lead levels in lactating women: a randomized placebo-controlled trial. Epidemiology 2003;14:206-12.. PubMed
- Thys-Jacobs S, Ceccarelli S, Bierman A, et al. Calcium supplementation in premenstrual syndrome: a randomized crossover trial. J Gen Intern Med 1989;4:183-9. PubMed
- Maton PN, Burton ME. Antacids revisited: a review of their clinical pharmacology and recommended therapeutic use. Drugs 1999;57:855-70.
- Clemens JD, Feinstein AR. Calcium carbonate and constipation: a historical review of medical mythopoeia. Gastroenterology 1977;72:957-61. DOI
- Saunders D, Sillery J, Chapman R. Effect of calcium carbonate and aluminum hydroxide on human intestinal function. Dig Dis Sci 1988;33:409-13. PubMed
- Friedman PA, Bushinsky DA. Diuretic effects on calcium metabolism. Semin Nephrol 1999;19:551-6.
- Koo WK, Walters JC, Esterlitz J, et al. Maternal calcium supplementation and fetal bone mineralization. Obstet Gynecol 1999;94:577-82. DOI
- Raman L, Rajalakshmi K, Krishnamachari KAVR, et al. Effect of calcium supplementation to undernourished mothers during pregnancy on the bone density of the neonates. Am J Clin Nutr 1978; 31:466-9. DOI
- Murry JJ, Healy MD. Drug-mineral interactions: a new responsibility for the hospital dietician. J Am Diet Assoc 1991;91:66-73.
- Chan JM, Giovannucci E, Andersson SO, et al. Dairy products, calcium, phosphorous, vitamin D, and risk of prostate cancer. Cancer Causes Control 1998;9:559-66.
- Butner LE, Fulco PP, Feldman G, et al. Calcium carbonate-induced hypothyroidism. Ann Intern Med 2000:132:595. PubMed
- Schneyer CR. Calcium carbonate and reduction of levothyroxine efficacy. JAMA 1998;279:750. PubMed
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