Ketamine Hydrochloride 100 mg/mL Injection, Solution
🆔 Identity & classification
Where does this data come from?
🏷️ RxNorm drug class
This medicine belongs to the General Anesthetic class.
Where does this data come from?
🏭 Manufacturer & labeler
Where does this data come from?
🩺 Clinical
Ketamine injection is used to provide anesthesia (you are unconscious and unaware of what is happening) during surgery. Ketamine injection is in a class of medications called anesthetic agents. It works by changing the activity in the brain.
Read the full MedlinePlus article ↗- The FDA-approved use of ketamine injection is as a general anesthetic — it's given in hospitals and surgical centers to put people into a deep sedated state for procedures, either...
- What exactly is ketamine used for — I keep hearing about it in the news but my doctor says it's for surgery?
- Ketamine creates what's called a 'dissociative' state — you won't feel pain and you'll be deeply sedated, but it works a little differently from traditional anesthesia. Your protec...
- Will I be completely unconscious, or will I know what's happening?
Patient education
Supplement & herbal interactions
Where does this data come from?
Ask a licensed pharmacist directly — free, answered by our team.
🧪 Inactive Ingredients / Excipients
Inactive ingredients, also called excipients, are components of the drug product other than the active ingredient. They may include fillers, dyes, coatings, preservatives, flavors, or other formulation ingredients.
💡 Tap an ingredient (hover on desktop) to see what it is and why it’s used.
-
UNII PH41D05744
A synthetic antimicrobial chemical compound used as a preservative in medicines and personal care products. It prevents bacterial and fungal growth to keep the product safe during storage and use.
1 inactive ingredient listed in the exact product block matched to this NDC.
Where does this data come from?
ingredient classCode="IACT" elements from the exact product block matched by this NDC. Label-section narrative from DailyMed / the openFDA label index is shown separately when available.Inactive ingredient FAQ
Are inactive ingredients the same for every manufacturer?
Why might an inactive ingredient be missing?
Can inactive ingredients matter?
💲 Pricing
A drug doesn't have one price. Each row is a different public payment system, and none is what you'd pay at the counter — that depends on your insurance. The ⓘ on each row explains what it measures.
| Price system | Per mL | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | Not in the retail survey — common for institutional, discontinued, or low-volume packs. | |
| Medicaid paysCMS SDUD · 12 mo | No recent Medicaid claims on file for this NDC — rare and low-volume NDCs are suppressed in the public data. | |
| Medicare drug plans payPart D · quarterly | No Part D plan price is available for this NDC in our data. | |
Where does this data come from?
🔁 Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Ketamine Hydrochloride 100 mg/mL 00143-9509-10 | Hikma | 10 vials | $1.544 | AP | Availability likely | — |
| Ketamine Hydrochloride 100 mg/mL 00409-0040-10 | Hospira, | 10 vials | $1.544 | AP | Discontinued | — |
| Ketamine Hydrochloride 100 mg/mL 00409-2051-05 | Hospira, | 10 vials | $1.544 | AP | Availability likely | — |
| Ketamine Hydrochloride 100 mg/mL 25021-0684-05 | Sagent | 10 vials | $1.544 | AP | Availability likely | — |
| Ketamine Hydrochloride 100 mg/mL 72572-0321-10 | Civica, | 10 vials | $1.544 | AP | Availability likely | — |
| Ketamine Hydrochloride 100 mg/mL 00404-9881-05 | Henry | 1 vial | — | AP | Discontinued | — |
| Ketalar 100 mg/mL 42023-0115-10 | Par | 10 vials | — | AP | FDA listed | — |
| Ketamine Hydrochloride 100 mg/mL 55150-0440-10 | Eugia | 10 vials | — | AP | FDA listed | — |
| ketamine hydrochloride 100 mg/mL 65219-0186-23 | Fresenius | 10 vials | — | AP | FDA listed | — |
| Ketamine Hydrochloride 100 mg/mLthis 68083-0506-10 | Gland | 10 vials | — | AP | FDA listed | — |
| Ketamine Hydrochloride 100 mg/mL 71872-7258-01 | Medical | 1 vial | — | AP | FDA listed | — |
| Ketamine Hydrochloride 100 mg/mL 71872-7296-01 | Medical | 1 vial | — | AP | FDA listed | — |
| Ketamine Hydrochloride 100 mg/mL 00404-9759-05 | Henry | 1 vial | — | AP | FDA listed | — |
Where does this data come from?
⏳ Availability & generic status
This product is an FDA-approved generic. Other versions of the same drug are listed under Therapeutic equivalents, least expensive first.
Where does this data come from?
🔬 Reported adverse events (FAERS)
Top reported reactions
Age at onset
Reporter sex
Serious outcomes
Where does this data come from?
📦 Packaging — all sizes for this product
| Package NDC | Description | Marketing start | Status |
|---|---|---|---|
| 68083-0506-10 You're viewing this | 10 VIAL in 1 CARTON (68083-506-10) / 5 mL in 1 VIAL | 2023-01-24 | Active |
🧭 About this NDC listing & data coverage
What data is (and isn’t) available for this NDC — tap to expand
| NDC identity (package / product / labeler codes) | ✓ Available |
| Labeler | ✓ Available |
| Product & package description | ✓ Available |
| Marketing category & status | ✓ Available |
| Active ingredient / dosage form / route | ✓ Available |
| FDA label (SPL via DailyMed) | ✓ Available |
| Package photos | ✓ Available |
| Inactive ingredients (structured) | ✓ Available |
| NADAC pharmacy acquisition price (CMS) | — Not published for this NDC CMS publishes NADAC only for NDCs reported in its retail-pharmacy survey. |
| Orange Book / therapeutic-equivalence data | ✓ Available |
| HCPCS J-code billing crosswalk | — Not published for this NDC Most self-administered / retail products have no J-code — that is normal. |
| Medicaid utilization (CMS SDUD) | — Not published for this NDC CMS reports utilization only for NDCs with Medicaid claims above its privacy threshold. |
Questions about this listing
Why is there no price listed?
Is the NDC printed on the package the same as the 11-digit billing NDC?
What do the three segments of this NDC mean?
Is this package still being marketed?
Who lists this product with the FDA?
Do I need a prescription for this product?
Where does this data come from?
📄 Full prescribing information FDA SPL
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE Ketamine hydrochloride injection is indicated: • as the sole anesthetic agent for diagnostic and surgical procedures that do not require skeletal muscle relaxation. • for the induction of anesthesia prior to the administration of other general anesthetic agents. • as a supplement to other anesthetic agents. Ketamine hydrochloride injection is a general anesthetic indicated: • as the sole anesthetic agent for diagnostic and surgical procedures that do not require skeletal muscle relaxation ( 1 ) • for the induction of anesthesia prior to the administration of other general anesthetic agents ( 1 ) • as a supplement to other anesthetic agents ( 1 ).
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION See Full Prescribing Information for important dosage and administration instructions. ( 2 ) Induction of anesthesia: -- Intravenous route: Initially, 1 to 4.5 mg/kg administered slowly (over a period of 60 seconds). Alternatively, administer a dose of 1 to 2 mg/kg at a rate of 0.5 mg/kg/min.
( 2.2 ) -- Intramuscular route: Initially, 6.5 to 13 mg/kg. ( 2.2 ) Maintenance of anesthesia: Increments of one-half to the full induction dose may be repeated as needed ( 2.2 ). Adjust the dose according to the patient's anesthetic needs and whether an additional anesthetic agent is employed.
( 2.2 ) Supplement to other anesthetic agents: The regimen of a reduced dose of ketamine hydrochloride injection supplemented with diazepam can be used to produce balanced anesthesia by combination with other agents. ( 2.2 )
2.1Important Dosage and Administration Information Ketamine hydrochloride injection should be administered by or under the direction of physicians experienced in the administration of general anesthetics, maintenance of a patent airway, and oxygenation and ventilation. Continuously monitor vital signs in patients receiving ketamine hydrochloride injection. Emergency airway equipment must be immediately available.
Ke tamine hydrochloride injection is a clear, colorless sterile solution. Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration, whenever solution and container permit. Discard if product is discolored or contains particulate matter.
Do not administer the 100 mg/mL concentration of ketamine hydrochloride injection intravenously without proper dilution [see Dosage and Administration ( 2.3 )]. Must be used immediately after dilution. While some degree of airway protection may be afforded due to active laryngeal-pharyngeal reflexes, vomiting and aspiration may occur with ketamine hydrochloride injection.
Ketamine hydrochloride injection is not recommended for use in patients who have not followed nil per os guidelines. Due to the potential for salivation during ketamine hydrochloride injection administration, administer an antisialagogue prior to induction of anesthesia.
2.2Recommended Dosage and Administration The ketamine hydrochloride injection dosage must be individualized and titrated to the desired clinical effect. If a longer duration of effect is desired, additional increments can be administered intravenously or intramuscularly to maintain anesthesia. However, a higher total dose will result in a longer time to complete recovery.
Induction of Anesthesia Intravenous Route: The initial dose of ketamine hydrochloride injection administered intravenously may range from 1 mg/kg to 4.5 mg/kg. The average amount required to produce 5 to 10 minutes of surgical anesthesia within 30 seconds following injection is 2 mg/kg. Administer ketamine hydrochloride injection slowly (i.e., over a period of 60 seconds).
Rapid administration may result in respiratory depression and enhanced vasopressor response. The induction dose may be administered as an intravenous infusion at a rate of 0.5 mg/kg/min. Intramuscular Route: The initial dose of ketamine hydrochloride injection administered intramuscularly may range from 6.5 to 13 mg/kg.
A dose of 9 to 13 mg/kg usually produces surgical anesthesia within 3 to 4 minutes following injection, with the anesthetic effect usually lasting 12 to 25 minutes. Administer a benzodiazepine, if clinically indicated, for the prevention of neuropsychological manifestations during emergence from anesthesia. Maintenance of Anesthesia Adjust the maintenance dose according to the patient's anesthetic needs and whether an additional anesthetic agent is administered.
Repeat increments of one-half to the full induction dose as needed for maintenance of anesthesia. Purposeless and tonic-clonic movements of extremities may occur during the course of ketamine anesthesia. These movements do not imply a light plane and a…
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS Ketamine hydrochloride injection, USP is a clear, colorless, sterile solution available in multiple-dose vials containing either 10 mg ketamine base (equivalent to 11.53 mg ketamine hydrochloride), 50 mg ketamine base (equivalent to 57.67 mg ketamine hydrochloride) or 100 mg ketamine base (equivalent to 115.33 mg ketamine hydrochloride). 200 mg/20 mL (10 mg/mL) 500 mg/10 mL (50 mg/mL) 500 mg/5 mL (100 mg/mL) Injection: 200 mg/20 mL (10 mg/mL), 500 mg/10 mL (50 mg/mL), and 500 mg/5 mL (100 mg/mL) multiple-dose vials ( 3 ).
⛔ Contraindications ▾
4 CONTRAINDICATIONS Ketamine hydrochloride injection is contraindicated in patients for whom a significant elevation of blood pressure would constitute a serious hazard [ see Warnings and Precautions ( 5.1 ) ]. Ketamine hydrochloride injection is contraindicated in patients with known hypersensitivity to ketamine or to any excipient [ see Adverse Reactions ( 6 ) ]. In patients for whom a significant elevation of blood pressure would be a serious hazard ( 4 ).
Known hypersensitivity to ketamine or to any excipient ( 4 ).
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS Hemodynamic Instability: Monitor vital signs and cardiac function during ketamine hydrochloride injection administration. ( 5.1 ) Emergence Reactions: Postoperative confusional states may occur during the recovery period. Reduce by minimizing verbal, tactile, and visual stimulation of the patient.
( 5.2 ) Risk of Respiratory Depression: May occur with overdosage or too rapid a rate of administration. Maintain adequate oxygenation and ventilation. ( 5.3 ) Risks of Ketamine Hydrochloride Injection alone for Procedures of the Pharynx, Larynx, or Bronchial Tree: Pharyngeal and laryngeal reflexes are not suppressed with ketamine hydrochloride injection when it is used alone.
Avoid use as a sole anesthetic agent in surgery or diagnostic procedures of the pharynx, larynx, or bronchial tree. Muscle relaxants may be required. ( 5.4 ) Pediatric Neurotoxicity: Long-term cognitive deficits may occur when used for longer than 3 hours in children ≤3 years ( 5.5 )
5.1Hemodynamic Instability Transient increases in blood pressure, heart rate, and cardiac index are frequently observed following administration of ketamine hydrochloride injection. Decreases in blood pressure and heart rate, arrhythmias, and cardiac decompensation have also been observed. Monitor vital signs and cardiac function during ketamine hydrochloride injection administration.
Ketamine hydrochloride injection is contraindicated in patients for whom a significant elevation of blood pressure would constitute a serious hazard [ see Contraindications ( 4 ) ].
5.2Emergence Reactions Emergence delirium (postoperative confusional states or agitation) has occurred in approximately 12% of patients during the recovery period, and the duration is generally a few hours. The neuropsychological manifestations vary in severity between pleasant dream-like states, vivid imagery, hallucinations, and emergence delirium. In some cases, these states have been accompanied by confusion, excitement, and irrational behavior, which have been recalled as unpleasant experiences.
No residual psychological effects are known to have resulted from use of ketamine hydrochloride injection during induction and maintenance of anesthesia. Intramuscular administration results in a lower incidence of emergence reactions. The incidence of psychological manifestations during emergence, particularly dream-like observations and emergence delirium, may be reduced by using lower recommended dosages of ketamine hydrochloride injection in conjunction with an intravenous benzodiazepine during induction and maintenance of anesthesia [ see Dosage and Administration ( 2.3 ) ].
Also, these reactions may be reduced if verbal, tactile, and visual stimulation of the patient is minimized during the recovery period. This does not preclude the monitoring of vital signs.
5.3Respiratory Depression Respiratory depression may occur with overdosage or a rapid rate of administration of ketamine hydrochloride injection. Maintain adequate oxygenation and ventilation.
5.4Risks of Ketamine Hydrochloride Injection Alone for Procedures of the Pharynx, Larynx, or Bronchial Tree Ketamine hydrochloride injection does not suppress pharyngeal and laryngeal reflexes. Avoid ketamine hydrochloride injection administration as a sole anesthetic agent during procedures of the pharynx, larynx, or bronchial tree, including mechanical stimulation of the pharynx. Muscle relaxants may be required for successful completion of procedures of the pharynx, larynx, or bronchial tree.
5.5Pediatric Neurotoxicity Published animal studies demonstrate that the administration of anesthetic and sedation drugs that block NMDA receptors and/or potentiate GABA activity increase neuronal apoptosis in the developing brain and result in long-term cognitive deficits when used for longer than 3 hours. The clinical significance of these findings is not clear. However, based on the available data, the window of vulnerability to these changes is beli…
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS The following clinically significant adverse reactions are described elsewhere in the labeling: Hemodynamic Instability [see Warnings and Precautions ( 5.1 )] Emergence Reactions [see Warnings and Precautions ( 5.2 )] Respiratory Depression [see Warnings and Precautions ( 5.3 )] Pediatric Neurotoxicity [see Warnings and Precautions ( 5.5 )] Drug-Induced Liver Injury [see Warnings and Precautions ( 5.6 )] The following adverse reactions associated with the use of ketamine hydrochloride injection were identified in clinical studies or postmarketing reports.
Because some of these reactions were reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Cardiovascular disorders: Elevated blood pressure, heart rate, and cardiac index; decreases in blood pressure and heart rate; arrhythmias; cardiac decompensation (in patients with suspected catecholamine depletion). Eye disorders: Diplopia, nystagmus, elevation in intraocular pressure.
Gastrointestinal disorders: Anorexia, nausea, vomiting; hepatobiliary dysfunction, biliary duct dilatation, biliary duct stricture and/or stenosis with or without evidence of biliary obstruction; secondary sclerosing cholangitis [see Warnings and Precautions ( 5.6 )]. Administration site disorders: Local pain and exanthema at the injection site. Immune system disorders: Anaphylaxis.
Neurologic disorders: Emergence reactions (post-operative delirium), [see Warnings and Precautions ( 5.2 )] . During administration, enhanced muscle tone and spasms (resembling a partial motor or generalized motor seizure). Psychiatric disorders: Adverse psychiatric events have occurred and/or persisted days to weeks after ketamine exposure.
Renal and urinary disorders: In individuals with a history of long-term ketamine use or abuse, urinary tract complications related to cystitis, reduced bladder capacity, ureteral stenosis (strictures), ureteral obstruction, and hydronephrosis have been reported [see Warnings and Precautions ( 5.7 )] . Cystitis (including cystitis non-infective, cystitis interstitial, cystitis ulcerative, cystitis erosive and cystitis hemorrhagic) and reduced bladder capacity may present with genitourinary pain, dysuria, increased urinary frequency, urgency, urge incontinence, and hematuria.
Ureteral stenosis (strictures), ureteral obstruction, and hydronephrosis may present with flank and/or pelvic pain, recurrent urinary tract infections, hematuria, nausea and vomiting, and acute kidney injury. Respiratory disorders: Respiratory depression and apnea following rapid intravenous administration of high doses of ketamine hydrochloride injection; laryngospasm, and airway obstruction. Skin and subcutaneous tissue disorders: Transient erythema and/or morbilliform rash The most common adverse reactions are emergence reactions and elevated blood pressure and pulse ( 6 ) To report SUSPECTED ADVERSE REACTIONS, contact Gland Pharma Limited at 866-770-7144 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch.
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Theophylline or Aminophylline: Do not co-administer with ketamine hydrochloride injection as concomitant use may lower the seizure threshold ( 7.1 ). Sympathomimetics and Vasopressin: Closely monitor vital signs when coadministered with ketamine hydrochloride injection. Consider dose adjustment individualized to the patient’s clinical situation ( 7.2 ).
Benzodiazepines, Opioid Analgesics, or other CNS Depressants : Concomitant use may result in profound sedation, respiratory depression, coma, or death. Concomitant use of opioid analgesics may prolong recovery time. ( 7.3 )
7.1Theophylline or Aminophylline Concomitant administration of ketamine hydrochloride injection and theophylline or aminophylline may lower the seizure threshold. Consider using an alternative to ketamine hydrochloride injection in patients receiving theophylline or aminophylline.
7.2Sympathomimetics and Vasopressin Sympathomimetics and vasopressin may enhance the sympathomimetic effects of ketamine. Closely monitor vital signs when ketamine hydrochloride injection and sympathomimetics or vasopressin are co-administered and consider dose adjustment individualized to the patient’s clinical situation.
7.3Benzodiazepines, Opioid Analgesics, Or Other CNS Depressants Concomitant use of ketamine with opioid analgesics, benzodiazepines, or other central nervous system (CNS) depressants, including alcohol, may result in profound sedation, respiratory depression, coma, and death [ see Warnings and Precautions ( 5.9 ) ]. Opioid analgesics administered concomitantly with ketamine hydrochloride injection may prolong time to complete recovery from anesthesia.
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS
8.1Pregnancy Risk Summary Available data on the use of ketamine in pregnant women mostly describe its use at the time of cesarean section and have not identified a drug-associated risk of adverse maternal or fetal outcomes. The data are limited by retrospective collection, small sample sizes, and a lack of long-term follow-up. There are no available data on ketamine use during other stages of pregnancy to allow for an evaluation of drug-associated risk of major birth defects or miscarriage.
In animal reproduction studies in rats developmental delays (hypoplasia of skeletal tissues) were noted at 0.3 times the human intramuscular dose of 10 mg/kg. In rabbits, developmental delays and increased fetal resorptions were noted at 0.6 times the human dose. Published studies in pregnant primates demonstrate that the administration of anesthetic and sedation drugs that block NMDA receptors and/or potentiate GABA activity during the period of peak brain development increases neuronal apoptosis in the developing brain of the offspring when used for longer than 3 hours.
There are no data on pregnancy exposures in primates corresponding to periods prior to the third trimester in humans. The clinical significance of these nonclinical findings is not known, and the benefits of appropriate anesthesia in pregnant women who require procedures should be balanced with the potential risks suggested by the nonclinical data. The estimated background risk of major birth defects and miscarriage for the indicated population is unknown.
All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2 to 4% and 15 to 20%, respectively. Data Animal Data Pregnant rats were treated intramuscularly with 20 mg/kg ketamine (0.3 times the human dose of 10 mg/kg IM based on body surface area) on either Gestation Days 6 to 10 or Gestation Days 11 to 15.
Ketamine treatment produced an increased incidence of hypoplastic skull, phalanges, and sternebrae in the pups. Pregnant rabbits were treated intramuscularly with 20 mg/kg ketamine (0.6 times the human dose of 10 mg/kg IM based on body surface area) on either Gestation Days 6 to 10 or Gestation Days 11 to 15. An increase in resorptions and skeletal hypoplasia of the fetuses were noted.
Additional pregnant rabbits were treated intramuscularly with a single dose 60 mg/kg (1.9 times the human dose of 10 mg/kg IM based on body surface area) on Gestation Day 6 only. Skeletal hypoplasia was reported in the fetuses. In a study where pregnant rats were treated intramuscularly with 20 mg/kg ketamine (0.3 times the human dose of 10 mg/kg IM based on body surface area) from Gestation Day 18 to 21.
There was a slight increase in incidence of delayed parturition by one day in treated dams of this group. No adverse effects on the litters or pups were noted; however, learning and memory assessments were not completed. Three (3) pregnant beagle dogs were treated intramuscularly with 25 mg/kg ketamine (1.3 times the human dose of 10 mg/kg IM based on body surface area) twice weekly for the three weeks of the first, second, and third trimesters of pregnancy, respectively, without the development of adverse effects in the pups.
In a published study in primates, administration of an anesthetic dose of ketamine for 24 hours on Gestation Day 122 increased neuronal apoptosis in the developing brain of the fetus. In other published studies, administration of either isoflurane or propofol for 5 hours on Gestation Day 120 resulted in increased neuronal and oligodendrocyte apoptosis in the developing brain of the offspring. With respect to brain development, this time period corresponds to the third trimester of gestation in the human.
The clinical significance of these findings is not clear; however, studies in juvenile animals suggest neuroapop…
🤰 Pregnancy ▾
8.1Pregnancy Risk Summary Available data on the use of ketamine in pregnant women mostly describe its use at the time of cesarean section and have not identified a drug-associated risk of adverse maternal or fetal outcomes. The data are limited by retrospective collection, small sample sizes, and a lack of long-term follow-up. There are no available data on ketamine use during other stages of pregnancy to allow for an evaluation of drug-associated risk of major birth defects or miscarriage.
In animal reproduction studies in rats developmental delays (hypoplasia of skeletal tissues) were noted at 0.3 times the human intramuscular dose of 10 mg/kg. In rabbits, developmental delays and increased fetal resorptions were noted at 0.6 times the human dose. Published studies in pregnant primates demonstrate that the administration of anesthetic and sedation drugs that block NMDA receptors and/or potentiate GABA activity during the period of peak brain development increases neuronal apoptosis in the developing brain of the offspring when used for longer than 3 hours.
There are no data on pregnancy exposures in primates corresponding to periods prior to the third trimester in humans. The clinical significance of these nonclinical findings is not known, and the benefits of appropriate anesthesia in pregnant women who require procedures should be balanced with the potential risks suggested by the nonclinical data. The estimated background risk of major birth defects and miscarriage for the indicated population is unknown.
All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2 to 4% and 15 to 20%, respectively. Data Animal Data Pregnant rats were treated intramuscularly with 20 mg/kg ketamine (0.3 times the human dose of 10 mg/kg IM based on body surface area) on either Gestation Days 6 to 10 or Gestation Days 11 to 15.
Ketamine treatment produced an increased incidence of hypoplastic skull, phalanges, and sternebrae in the pups. Pregnant rabbits were treated intramuscularly with 20 mg/kg ketamine (0.6 times the human dose of 10 mg/kg IM based on body surface area) on either Gestation Days 6 to 10 or Gestation Days 11 to 15. An increase in resorptions and skeletal hypoplasia of the fetuses were noted.
Additional pregnant rabbits were treated intramuscularly with a single dose 60 mg/kg (1.9 times the human dose of 10 mg/kg IM based on body surface area) on Gestation Day 6 only. Skeletal hypoplasia was reported in the fetuses. In a study where pregnant rats were treated intramuscularly with 20 mg/kg ketamine (0.3 times the human dose of 10 mg/kg IM based on body surface area) from Gestation Day 18 to 21.
There was a slight increase in incidence of delayed parturition by one day in treated dams of this group. No adverse effects on the litters or pups were noted; however, learning and memory assessments were not completed. Three (3) pregnant beagle dogs were treated intramuscularly with 25 mg/kg ketamine (1.3 times the human dose of 10 mg/kg IM based on body surface area) twice weekly for the three weeks of the first, second, and third trimesters of pregnancy, respectively, without the development of adverse effects in the pups.
In a published study in primates, administration of an anesthetic dose of ketamine for 24 hours on Gestation Day 122 increased neuronal apoptosis in the developing brain of the fetus. In other published studies, administration of either isoflurane or propofol for 5 hours on Gestation Day 120 resulted in increased neuronal and oligodendrocyte apoptosis in the developing brain of the offspring. With respect to brain development, this time period corresponds to the third trimester of gestation in the human.
The clinical significance of these findings is not clear; however, studies in juvenile animals suggest neuroapoptosis correlates with long-ter…
🧒 Pediatric Use ▾
8.4Pediatric Use Safety and effectiveness in pediatric patients below the age of 16 have not been established. Published juvenile animal studies demonstrate that the administration of anesthetic and sedation drugs, such as ketamine hydrochloride injection, that either block NMDA receptors or potentiate the activity of GABA during the period of rapid brain growth or synaptogenesis, results in widespread neuronal and oligodendrocyte cell loss in the developing brain and alterations in synaptic morphology and neurogenesis.
Based on comparisons across species, the window of vulnerability to these changes is believed to correlate with exposures in the third trimester of gestation through the first several months of life but may extend out to approximately 3 years of age in humans. In primates, exposure to 3 hours of ketamine that produced a light surgical plane of anesthesia did not increase neuronal cell loss, however, treatment regimens of 5 hours or longer of isoflurane increased neuronal cell loss. Data from isoflurane-treated rodents and ketamine-treated primates suggest that the neuronal and oligodendrocyte cell losses are associated with prolonged cognitive deficits in learning and memory.
The clinical significance of these nonclinical findings is not known, and healthcare providers should balance the benefits of appropriate anesthesia in neonates and young children who require procedures with the potential risks suggested by the nonclinical data [ see Warnings and Precautions ( 5.5 ), Use in Specific Populations ( 8.1 ), and Nonclinical Toxicology ( 13.2 ) ].
🧓 Geriatric Use ▾
8.5Geriatric Use Clinical studies of ketamine hydrochloride did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. Other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy.
🆘 Overdosage ▾
10 OVERDOSAGE Changes in heart rate and blood pressure, respiratory depression, and apnea may occur with overdosage or by a rapid rate of administration of ketamine hydrochloride injection. Monitor patients for clinically relevant changes in heart rate and blood pressure. Assisted ventilation, including mechanical ventilation, may be required.
In cases of unintentional overdose of ketamine hydrochloride injection (up to ten times the usual dose), patients had a prolonged but complete recovery.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY
12.1Mechanism of Action Ketamine hydrochloride injection, a racemic mixture of ketamine, is a non-selective, non-competitive antagonist of the N-methyl-D-aspartate (NMDA) receptor, an ionotropic glutamate receptor. The major circulating metabolite of ketamine (norketamine) demonstrated activity at the same receptor with less affinity. Norketamine is about 1/3 as active as ketamine in reducing halothane requirements (MAC) of the rat.
12.2Pharmacodynamics Nervous System Ketamine is a rapidly-acting general anesthetic producing a dissociative anesthetic state characterized by profound analgesia, normal pharyngeal-laryngeal reflexes, normal or slightly enhanced skeletal muscle tone, cardiovascular and respiratory stimulation, and occasionally a transient and minimal respiratory depression. The mechanism of action is primarily due to antagonism of N-methyl-D-aspartate (NMDA receptors) in the central nervous system. Ketamine can produce nystagmus with pupillary dilation, salivation, lacrimation, and spontaneous limb movements with increased muscle tone through indirect sympathomimetic activity.
Ketamine produces analgesia. Ketamine-induced emergence delirium can be reduced with benzodiazepines. Cardiovascular System Ketamine increases blood pressure, heart rate, and cardiac output.
Cardiovascular effects of ketamine are indirect and believed to be mediated by inhibition of both central and peripheral catecholamine reuptake. Elevation of blood pressure reaches a maximum within a few minutes of injection and usually returns to preanesthetic values within 15 minutes. In the majority of cases, the systolic and diastolic blood pressure peaks from 10% to 50% above preanesthetic levels shortly after induction of anesthesia, but the elevation can be higher or longer in individual cases.
Respiratory System Ketamine is a potent bronchodilator suitable for anesthetizing patients at high risk for bronchospasm.
12.3Pharmacokinetics Distribution Following intravenous administration, the ketamine concentration has an initial slope (alpha phase) lasting about 45 minutes with a half-life of 10 to 15 minutes. This first phase corresponds clinically to the anesthetic effect of the drug. Elimination Metabolism Ketamine is metabolized via N-dealkylation to the active metabolite norketamine primarily by CYP2B6 and CYP3A4 and to a lesser extent by other CYP enzymes.
Norketamine undergoes hydroxylation of the cyclohexone ring to form hydroxynorketamine compounds via CYP-dependent pathways, which are conjugated with glucuronic acid and subsequently undergo dehydration of the hydroxylated metabolites to form the cyclohexene derivative dehydroxynorketamine. Excretion Following intravenous administration, the ketamine concentration decreases due to a combination of redistribution from the CNS to slower equilibrating peripheral tissues and hepatic biotransformation to norketamine. The redistribution half-life of ketamine from the CNS to slower equilibrating peripheral tissues (beta phase) is 2.5 hours.
🧬 Mechanism of Action ▾
12.1Mechanism of Action Ketamine hydrochloride injection, a racemic mixture of ketamine, is a non-selective, non-competitive antagonist of the N-methyl-D-aspartate (NMDA) receptor, an ionotropic glutamate receptor. The major circulating metabolite of ketamine (norketamine) demonstrated activity at the same receptor with less affinity. Norketamine is about 1/3 as active as ketamine in reducing halothane requirements (MAC) of the rat.
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING How Supplied Ketamine hydrochloride injection, USP is a clear colorless to very slight yellow color solution supplied as the hydrochloride salt in concentrations equivalent to ketamine base, as follows: Unit of sale S tre n gth NDC 68083-504-10 Unit of 10 200 mg in 20 mL multiple-dose vial (10 mg/mL) 10 mg ketamine base (equivalent to 11.53 mg ketamine hydrochloride) NDC 68083-505-10 Unit of 10 500 mg in 10 mL multiple-dose vial (50 mg/mL) 50 mg ketamine base (equivalent to 57.67 mg ketamine hydrochloride) NDC 68083-506-10 Unit of 10 500 mg in 5 mL multiple-dose vial (100 mg/mL) 100 mg ketamine base (equivalent to 115.33 mg ketamine hydrochloride) Storage and Handling Ketamine hydrochloride injection, USP should be stored at 20°C to 25°C (68°F to 77°F); excursions permitted between 15°C to 30°C (59°F to 86°F) [ see USP Controlled Room Temperature ].
Protect from light.
📋 Description ▾
11 DESCRIPTION Ketamine hydrochloride injection, USP for intravenous or intramuscular use, contains ketamine, a nonbarbiturate general anesthetic. Ketamine hydrochloride, USP is a white or almost white, crystalline powder and has a molecular formula of C 13 H 16 ClNO•HCl and a molecular weight of 274.19. The chemical name for ketamine hydrochloride is 2-(2-chlorophenyl)-2-(methylamino)cyclohexan-1-one hydrochloride.
The chemical structure of ketamine hydrochloride is: It is formulated as a slightly acidic (pH 3.5-5.5) sterile solution for intravenous or intramuscular injection. Each milliliter (mL) of the multiple-dose vials contain either 10 mg ketamine base (equivalent to 11.53 mg ketamine hydrochloride), 50 mg ketamine base (equivalent to 57.67 mg ketamine hydrochloride) or 100 mg ketamine base (equivalent to 115.33 mg ketamine hydrochloride) and not more than 0.10 mg/mL benzethonium chloride added as a preservative in water for injection.
The 10 mg/mL solution has been made isotonic with 6.60 mg sodium chloride. Ketamine-SPL-Structure
💬 Information for Patients ▾
17 PATIENT COUNSELING INFORMATION Studies conducted in young animals and children suggest repeated or prolonged use of general anesthetic or sedation drugs in children younger than 3 years may have negative effects on their developing brains. Discuss with parents and caregivers the benefits, risks, and timing and duration of surgery or procedures requiring anesthetic and sedation drugs [ see Warnings and Precautions ( 5.5 ) ]. Due to the residual anesthetic effects and the potential for drowsiness, advise patients not to drive an automobile, operate hazardous machinery, or engage in hazardous activities within 24 hours of receiving ketamine hydrochloride injection.
Manufactured by: Gland Pharma Limited Pashamylaram, Patancheru, Hyderabad-502 307, India. Revised: 04/2026