Diprivan PROPOFOL 10 mg/mL Injection, Emulsion — NDC 63323-269-67 (Billing 63323-0269-67)
This is a package of Diprivan PROPOFOL 10 mg/mL Injection, Emulsion from Fresenius Kabi USA, LLC, marketed since Nov 2009 and currently FDA-listed.
NDC database record
One package, one record: these facts belong to NDC 63323-269-67 alone.
- Record
- FDA NDC Directory package listing · Human prescription drug
- Code segments
- 63323 labeler · 269 product · 67 package
- Package marketed since
- Nov 17, 2009
- Sample package
- No — commercial package
- Listing certified through
- Dec 31, 2026
- Barcode (UPC)
- 0363323269302, 0363323269357, 0363323269012, 0363323269227
- Medicaid fills, this package
- 7,978 prescriptions in the last four reported quarters
- FDA record last changed
- Oct 8, 2026
Past resolved recalls for this product (2)
Identity & classification
Regulatory identifiers FDA, NLM and CMS codes for this package
Drug-database identifiers Medi-Span GPI and First Databank GCN / HICL / AHFS classification
- GSN (GCN sequence number): 016796
- GCN: 14021
- GPI-14 (Medi-Span): 70400050001640
- HICL (First Databank): 004842
- AHFS class code: 28:04.08.00
- RxCUI (RxNorm): 1808217
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA label on DailyMed · label index refreshed Oct 6, 2026
- RxNorm (NLM RxNav) · catalog refreshed Oct 1, 2026
- Medi-Span GPI (licensed)
- First Databank (licensed) · refreshed Oct 1, 2026
RxNorm drug class
This medicine belongs to the General Anesthetic class.
Where does this data come from?
- RxClass (NLM) · catalog refreshed Oct 1, 2026
Clinical
Propofol is used to begin and maintain general anesthesia (you are unconscious and unaware of what is happening) during surgery in adults and children. It is also used to provide sedation (you are relaxed, sleepy or in some cases asleep) in adults during surgical or other medical procedures. Propofol is also used to provide sedation for adults in intensive care units that are receiving mechanical ventilation (a machine that takes over the work of breathing). Propofol is in a class of medications called anesthetic agents. It works by changing the activity of certain substances in the brain.
Read the full MedlinePlus article ↗- Propofol is given through a vein to put you under general anesthesia or to provide sedation during procedures. It is also used to sedate adults in the ICU who are on a breathing ma...
- Some people feel burning, stinging, or pain at the IV site, and this is one of the more common effects. Your team can reduce it by using a larger vein or giving lidocaine first. An...
- Low blood pressure, a slower heart rate, and a short pause in breathing are the most common. Your team watches for these and treats them. You may also get a rash, itching, or invol...
- Yes. Tell them if you have ever had a severe allergic reaction to eggs, egg products, soybeans, or soy products, because propofol should not be used in that case. Also mention epil...
Patient education
Supplement & herbal interactions
Some supplements/herbs that may interact with Propofol — tap one for details:
Propofol may be associated with lower levels of 1 nutrient — worth a chat with your pharmacist, not a cause for alarm.
Where does this data come from?
- MedlinePlus (NLM) · refreshed Oct 1, 2026
- FDA label on DailyMed · label index refreshed Oct 6, 2026
Ask a licensed pharmacist directly — free, answered by our team.
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 | $2.32 | $2,315.20 / 1000 ml |
| Medicare drug plans payPart D · quarterly | No Part D plan price is available for this NDC in our data. | |
| Medicare Part B allowsASP · J3490 | No ASP payment limit on file for J3490 this quarter. | |
Where does this data come from?
- CMS NADAC weekly file
- CMS ASP pricing files · refreshed Sep 20, 2026
- CMS Medicaid State Drug Utilization Data · through Q1 2026
- CMS Part D plan pricing files · refreshed Sep 24, 2026
- VA National Acquisition Center price file
Billing & reimbursement
Where does this data come from?
- CMS ASP NDC-HCPCS crosswalk · refreshed Sep 22, 2026
- DMEPDAC NDC-HCPCS crosswalk
- openFDA NSDE billing units · refreshed Oct 7, 2026
Packaging — all sizes for this product
| Package NDC | Description | Marketing start | Marketing end | Status |
|---|---|---|---|---|
| 63323-0269-59 63323-269-59 | 20 VIAL in 1 BOX / 50 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-69 63323-269-69 | 10 VIAL in 1 BOX / 100 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-94 63323-269-94 | 10 VIAL in 1 BOX / 20 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-10 63323-269-10 | 10 VIAL in 1 BOX / 10 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-29 63323-269-29 Main listing | 10 VIAL in 1 BOX / 20 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-50 63323-269-50 | 20 VIAL in 1 BOX / 50 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-65 63323-269-65 | 10 VIAL in 1 BOX / 100 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-70 63323-269-70 | 10 VIAL in 1 BOX / 20 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-77 63323-269-77 | 20 VIAL in 1 BOX / 50 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-78 63323-269-78 | 10 VIAL in 1 BOX / 100 mL in 1 VIAL | 2009-11-13 | — | Active |
| 63323-0269-16 63323-269-16 | 10 VIAL in 1 BOX / 10 mL in 1 VIAL | 2009-11-17 | — | Active |
| 63323-0269-37 63323-269-37 | 10 VIAL in 1 BOX / 20 mL in 1 VIAL | 2009-11-17 | — | Active |
| 63323-0269-57 63323-269-57 | 20 VIAL in 1 BOX / 50 mL in 1 VIAL | 2009-11-17 | — | Active |
| 63323-0269-67 You're viewing this | 10 VIAL in 1 BOX / 100 mL in 1 VIAL | 2009-11-17 | — | Active |
This pack accounts for about 2.3% of this product's recent Medicaid fills; the largest share goes to a different pack size. See all packs ↓
Pack size FAQ
What quantity is in this package?
What NDC number is used to bill for this package of Diprivan PROPOFOL 10 mg/mL Injection, Emulsion?
Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| propofol 10 mg/mL 71288-0730-51 | Meitheal | 10 vials | $0.171 | AB | Availability likely | — |
| Propofol 10 mg/mL 00409-6010-25 | Hospira, | 25 vials | $0.171 | AB | Availability likely | — |
| propofol 10 mg/mL 25021-0608-20 | Sagent | 25 vials | $0.171 | AB | Availability likely | — |
| Propofol 10 mg/mL 00409-1511-98 | Hospira, | 25 vials | $0.171 | AB | Availability likely | — |
| Propofol 10 mg/mL 00641-6194-10 | Hikma | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00641-6195-20 | Hikma | 20 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00641-6196-10 | Hikma | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 51662-1293-01 | HF | 20 ml | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00069-0234-20 | Pfizer | 20 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 16714-0690-10 | NorthStar | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 51662-1471-01 | HF | 50 ml | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00069-0209-10 | Pfizer | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 72572-0590-10 | Civica, | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 51662-1470-01 | HF | 100 ml | — | AB | FDA listed | — |
| Diprivan 10 mg/mLthis 63323-0269-67 | Fresenius | 10 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 71288-0729-21 | Meitheal | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00409-4699-24 | Hospira, | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 80830-2364-08 | Amneal | 20 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 80830-2365-07 | Amneal | 10 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 23155-0345-41 | Heritage | 10 vials | — | AB | FDA listed | — |
| Diprivan 10 mg/mL 65219-0800-10 | Fresenius | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 72572-0612-10 | Civica, | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 80830-1188-07 | Amneal | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00069-0248-10 | Pfizer | 10 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 16714-0977-20 | NorthStar | 20 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 72572-0601-20 | Civica, | 20 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 16714-0528-10 | NorthStar | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 83634-0603-20 | Avenacy, | 20 vials | — | AB | FDA listed | — |
| propofol 10 mg/mL 71288-0731-53 | Meitheal | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 83854-0018-10 | Anthea | 10 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00409-0501-98 | Hospira, | 20 vials | — | AB | FDA listed | — |
| Propofol 10 mg/mL 00409-0010-98 | Hospira, | 10 vials | — | AB | FDA listed | — |
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA Orange Book · refreshed Oct 3, 2026
- CMS NADAC weekly file
Availability & generic status
FDA-approved generic versions are listed, and recent pricing/market data suggests they may be available — see Therapeutic equivalents.
Where does this data come from?
- FDA Orange Book · refreshed Oct 3, 2026
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.
🧪 Avoiding an ingredient? See Propofol inactive ingredients by manufacturer: every current product's list side by side, so you can ask your pharmacy for the version that does not list it.
💡 Tap an ingredient (hover on desktop) to see what it is and why it’s used.
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UNII 8NLQ36F6MM
Edetate disodium anhydrous is a chemical compound that binds to metal ions in a medicine. It's used as a stabilizer to prevent unwanted chemical reactions and help keep the drug product effective during storage.
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12 mg / 1 mL
UNII 1Z74184RGV
Egg phospholipids are naturally derived fats from eggs that help mix oil and water-based ingredients together. They work as emulsifiers in medicines, keeping the formula stable and uniform.
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22.5 mg / 1 mL
UNII PDC6A3C0OX
Glycerin is a clear, thick liquid derived from plant oils or fats. It acts as a humectant to retain moisture, a sweetener, and a solvent in medications.
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UNII 55X04QC32I
A strong alkaline chemical used to adjust and maintain the pH balance of liquid medicines. It helps keep the medicine stable and ensures it stays effective during storage.
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100 mg / 1 mL
UNII 241ATL177A
Soybean oil is a natural plant oil derived from soybean seeds. It's used in medicines as a solvent and carrier to help dissolve or suspend active ingredients and improve how the body absorbs them.
5 inactive ingredients 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.- FDA label on DailyMed · label index refreshed Oct 6, 2026
- FDA openFDA NDC Directory · synced Oct 1, 2026
Inactive ingredient FAQ
Are inactive ingredients the same for every manufacturer?
Why might an inactive ingredient be missing?
Can inactive ingredients matter?
Manufacturer & labeler
More NDCs from Fresenius Kabi USA, LLC labeler code 63323
- Methylprednisolone Sodium Succinate 40 mg/mL Injection, Powder, Lyophilized, For Solution NDC 63323-255-03
- Methylprednisolone Sodium Succinate 125 mg/2mL Injection, Powder, Lyophilized, For Solution NDC 63323-258-03
- Polocaine-MPF MEPIVACAINE HYDROCHLORIDE 10 mg/mL Injection, Solution NDC 63323-260-37
- Progesterone 50 mg/mL Injection, Solution NDC 63323-261-10
- Heparin Sodium 5000 [USP'U]/mL Injection, Solution NDC 63323-262-01
- Methylprednisolone Sodium Succinate 1 g/16mL Injection, Powder, Lyophilized, For Solution NDC 63323-265-30
- Fluphenazine Decanoate 25 mg/mL Injection, Solution NDC 63323-272-05
- Sumatriptan Succinate 6 mg/.5mL Injection NDC 63323-273-01
- Heparin Sodium 1000 [USP'U]/mL Injection, Solution NDC 63323-276-02
- Vinblastine Sulfate 1 mg/mL Injection NDC 63323-278-10
- Furosemide 10 mg/mL Injection, Solution NDC 63323-280-02
- Fluphenazine Hydrochloride 2.5 mg/mL Injection, Solution NDC 63323-281-10
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- Drugs@FDA
Full prescribing information FDA SPL
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE DIPRIVAN is an intravenous general anesthetic and sedation drug indicated for: • Induction of General Anesthesia for Patients Greater than or Equal to 3 Years of Age • Maintenance of General Anesthesia for Patients Greater than or Equal to 2 Months of Age • Initiation and Maintenance of Monitored Anesthesia Care (MAC) Sedation in Adult Patients • Sedation for Adult Patients in Combination with Regional Anesthesia • Intensive Care Unit (ICU) Sedation of Intubated, Mechanically Ventilated Adult Patients Limitations of Use DIPRIVAN is not recommended for induction of anesthesia below the age of 3 years or for maintenance of anesthesia below the age of 2 months because its safety and effectiveness have not been established in those populations [see Pediatric Use ( 8.4 )] .
Safety, effectiveness and dosing guidelines for DIPRIVAN have not been established for MAC sedation in the pediatric population; therefore, it is not recommended for this use [see Pediatric Use ( 8.4 )]. DIPRIVAN is not indicated for use in Pediatric ICU sedation since the safety of this regimen has not been established [see Pediatric Use ( 8.4 )]. DIPRIVAN is an intravenous general anesthetic and sedation drug indicated for: • Induction of General Anesthesia for Patients Greater than or Equal to 3 Years of Age • Maintenance of General Anesthesia for Patients Greater than or Equal to 2 Months of Age • Initiation and Maintenance of Monitored Anesthesia Care (MAC) • Sedation in Adult Patients Sedation for Adult Patients in Combination with Regional Anesthesia • Intensive Care Unit (ICU) Sedation of Intubated, Mechanically Ventilated Adult Patients Limitations of Use : DIPRIVAN is not recommended for induction of anesthesia below the age of 3 years or for maintenance of anesthesia below the age of 2 months.
MAC sedation in the pediatric population is not recommended. DIPRIVAN is not indicated for use in Pediatric ICU sedation.
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION See Full Prescribing Information for detailed dosing instructions.
2.1Important Dosage and Administration Information Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration whenever solution and container permit. Shake well before use. Do not use if there is evidence of excessive creaming or aggregation, if large droplets are visible, or if there are other forms of phase separation indicating that the stability of the product has been compromised.
Slight creaming, which should disappear after shaking, may be visible upon prolonged standing. Do not use if there is evidence of separation of the phases of the emulsion. DIPRIVAN with EDTA inhibits microbial growth for up to 12 hours, as demonstrated by test data for representative USP microorganisms.
Product is packaged under nitrogen. For general anesthesia or monitored anesthesia care (MAC) sedation, DIPRIVAN should be administered only by persons trained in the administration of general anesthesia and not involved in the conduct of the surgical/diagnostic procedure. Sedated patients should be continuously monitored, and equipment for maintaining a patent airway, providing artificial ventilation, administering supplemental oxygen, and instituting cardiovascular resuscitation must be immediately available.
Patients should be continuously monitored for early signs of hypotension, apnea, airway obstruction, and/or oxygen desaturation. These cardiorespiratory effects are more likely to occur following rapid bolus administration, especially in the elderly, debilitated, or ASA-PS III or IV patients. For sedation of intubated, mechanically ventilated adult patients in the Intensive Care Unit, DIPRIVAN should be administered only by persons skilled in the management of critically ill patients and trained in cardiovascular resuscitation and airway management.
Guidelines for Aseptic Technique for General Anesthesia/MAC Sedation DIPRIVAN must be prepared for use just prior to initiation of each individual anesthetic/sedative procedure. The vial rubber stopper should be disinfected using 70% isopropyl alcohol. DIPRIVAN should be drawn into a sterile syringe immediately after a vial is opened.
When withdrawing DIPRIVAN from vials, a sterile vent spike should be used. The syringe should be labelled with appropriate information including the date and time the vial was opened. Administration should commence promptly and be completed within 12 hours after the vial has been opened.
DIPRIVAN must be prepared for single dose only. Any unused DIPRIVAN drug product, reservoirs, dedicated administration tubing and/or solutions containing DIPRIVAN must be discarded at the end of the anesthetic procedure or at 12 hours, whichever occurs sooner. The intravenous line should be flushed every 12 hours and at the end of the anesthetic procedure to remove residual DIPRIVAN. [see Warnings and Precautions ( 5.2 )] .
Guidelines for Aseptic Technique for ICU Sedation DIPRIVAN must be prepared for single dose only. Strict aseptic techniques must be followed. The vial rubber stopper should be disinfected using 70% isopropyl alcohol.
A sterile vent spike and sterile tubing must be used for administration of DIPRIVAN. As with other lipid emulsions, the number of intravenous line manipulations should be minimized. Administration should commence promptly and must be completed within 12 hours after the vial has been spiked.
The tubing and any unused DIPRIVAN drug product must be discarded after 12 hours. If DIPRIVAN is transferred to a syringe prior to administration, it should be drawn into a sterile syringe immediately after a vial is opened. When withdrawing DIPRIVAN from a vial, a sterile vent spike should be used.
The syringe should be labelled with appropriate information including the date and time the vial was opened. Administration should commence promptly and be completed within 12 hours after the vial has been opened.… [Excerpted — this section continues on DailyMed.]
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS DIPRIVAN ® (propofol) injectable emulsion, USP is available in single-dose vials as follows: 200 mg of propofol per 20 mL of an oil-in-water emulsion (10 mg per mL), 20 mL vial 500 mg of propofol per 50 mL of an oil-in-water emulsion (10 mg per mL), 50 mL vial 1,000 mg of propofol per 100 mL of an oil-in-water emulsion (10 mg per mL), 100 mL vial Injectable emulsion: 200 mg per 20 mL (10 mg/mL), 500 mg per 50 mL (10 mg/mL), and 1,000 mg per 100 mL (10 mg/mL) single-dose vials ( 3 )
⛔ Contraindications ▾
4 CONTRAINDICATIONS DIPRIVAN is contraindicated in patients with a known hypersensitivity to propofol or any of DIPRIVAN components. DIPRIVAN is contraindicated in patients with a history of anaphylaxis to eggs, egg products, soybeans or soy products. Known hypersensitivity to propofol, egg or soybean. ( 4 )
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS Hypersensitivity Reactions : Serious and sometimes fatal reactions. ( 5.1 ) Microbial Contamination : Strict aseptic technique must be maintained during handling. DIPRIVAN vials are never to be accessed more than once or used on more than one person.
Administration should commence promptly and be completed within 12 hours after the vial has been opened. Discard unused drug product. Do not use if contamination is suspected.
( 5.2 ) Cardiovascular depression : Cases of bradycardia, asystole, and cardiac arrest have been reported. Pediatric patients are susceptible to this effect, particularly when fentanyl is given concomitantly. ( 5.4 )
5.1Anaphylactic and Anaphylactoid Reactions Use of DIPRIVAN has been associated with both fatal and life threatening anaphylactic and anaphylactoid reactions. Clinical features of anaphylaxis, including angioedema, bronchospasm, erythema, and hypotension, occur rarely following DIPRIVAN administration.
5.2Risks of Microbial Contamination Strict aseptic technique must always be maintained during handling. DIPRIVAN is a single-dose parenteral product (single patient infusion vial) which contains 0.005% disodium edetate (EDTA) to inhibit the rate of growth of microorganisms, for up to 12 hours, in the event of accidental extrinsic contamination. However, DIPRIVAN can still support the growth of microorganisms, as it is not an antimicrobially preserved product under USP standards.
Do not use if contamination is suspected. Discard unused drug product as directed within the required time limits. There have been reports in which failure to use aseptic technique when handling DIPRIVAN was associated with microbial contamination of the product and with fever, infection/sepsis, other life-threatening illness, and/or death.
DIPRIVAN vials are never to be accessed more than once or used on more than one person. There have been reports, in the literature and other public sources, of the transmission of bloodborne pathogens (such as Hepatitis B, Hepatitis C, and HIV) from unsafe injection practices, and of the use of propofol vials intended for single use on multiple persons.
5.3Risks of Pediatric 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 believed to correlate with exposures in the third trimester of gestation through the first several months of life, but may extend out to approximately three years of age in humans [see Animal Toxicology and/or Pharmacology ( 13.2 )].
Some published studies in children suggest that similar deficits may occur after repeated or prolonged exposures to anesthetic agents early in life and may result in adverse cognitive or behavioral effects. These studies have substantial limitations, and it is not clear if the observed effects are due to the anesthetic/sedation drug administration or other factors such as the surgery or underlying illness. Anesthetic and sedation drugs are a necessary part of the care of children needing surgery, other procedures, or tests that cannot be delayed, and no specific medications have been shown to be safer than any other.
Decisions regarding the timing of any elective procedures requiring anesthesia should take into consideration the benefits of the procedure weighed against the potential risks.
5.4Risks of Bradycardia, Asystole, and Cardiac Arrest DIPRIVAN has no vagolytic activity. Reports of bradycardia, asystole, and rarely, cardiac arrest have been associated with DIPRIVAN. Pediatric patients are susceptible to this effect, particularly when fentanyl is given concomitantly. The intravenous administration of anticholinergic a… [Excerpted — this section continues on DailyMed.]
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS The following serious or otherwise important adverse reactions are discussed elsewhere in the labeling: • Hypersensitivity reaction [see Warnings and Precautions ( 5.1 )] • Hypotension and/or bradycardia [see Warnings and Precautions ( 5.4 )] • Propofol Infusion Syndrome [see Warnings and Precautions ( 5.9 )] In the description below, rates of the more common events represent US/Canadian clinical study results. Less frequent events are also derived from publications and marketing experience in over 8 million patients; there are insufficient data to support an accurate estimate of their incidence rates.
These studies were conducted using a variety of premedicants, varying lengths of surgical/diagnostic procedures, and various other anesthetic/sedative agents. Most adverse events were mild and transient. Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice.
Anesthesia and MAC Sedation in Adults The following estimates of adverse events for DIPRIVAN include data from clinical trials in general anesthesia/MAC sedation (N=2889 adult patients). The adverse events listed below as probably causally related are those events in which the actual incidence rate in patients treated with DIPRIVAN was greater than the comparator incidence rate in these trials. Therefore, incidence rates for anesthesia and MAC sedation in adults generally represent estimates of the percentage of clinical trial patients which appeared to have probable causal relationship.
The adverse experience profile from reports of 150 patients in the MAC sedation clinical trials is similar to the profile established with DIPRIVAN during anesthesia (see Table 3 below). During MAC sedation clinical trials, significant respiratory events included cough, upper airway obstruction, apnea, hypoventilation, and dyspnea. Anesthesia in Pediatric Patients Generally, the adverse experience profile from reports of 506 DIPRIVAN pediatric patients from 6 days through 16 years of age in the US/Canadian anesthesia clinical trials is similar to the profile established with DIPRIVAN during anesthesia in adults.
Although not reported as an adverse event in clinical trials, apnea is frequently observed in pediatric patients. ICU Sedation in Adults The following estimates of adverse events include data from clinical trials in ICU sedation (N=159 adult patients). Probably related incidence rates for ICU sedation were determined by individual case report form review.
Probable causality was based upon an apparent dose response relationship and/or positive responses to rechallenge. In many instances the presence of concomitant disease and concomitant therapy made the causal relationship unknown. Therefore, incidence rates for ICU sedation generally represent estimates of the percentage of clinical trial patients which appeared to have a probable causal relationship.
Table 2. Treatment Emergent Adverse Events Observed from Clinical Trials Anesthesia/MAC Sedation ICU Sedation Body as a Whole: Anaphylaxis/Anaphylactoid reaction perinatal disorder, tachycardia, bigeminy, bradycardia, premature ventricular contractions, hemorrhage, ECG abnormal arrhythmia atrial, fever, extremities pain, anticholinergic syndrome, asthenia, awareness, chest pain, extremities pain, fever, increased drug effect, neck rigidity/stiffness, trunk pain Fever, sepsis, trunk pain, whole body weakness Cardiovascular: Premature atrial contractions Syncope, hypotension [see also Clinical Pharmacology ( 12 )], t achycardia Nodal, arrhythmia Bradycardia, arrhythmia, atrial fibrillation, atrioventricular heart block, bigeminy, bleeding, bundle branch block, cardiac arrest, ECG abnormal, edema, extrasystole, heart block, hypertension, myocardial infarction, myocardial ischemia, premat… [Excerpted — this section continues on DailyMed.]
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Opioids and Sedatives The induction dose requirements of DIPRIVAN may be reduced in patients with intramuscular or intravenous premedication, particularly with opioids (e.g., morphine, meperidine, and fentanyl, etc.) and combinations of opioids and sedatives (e.g., benzodiazepines, barbiturates, chloral hydrate, droperidol, etc.). These agents may increase the anesthetic or sedative effects of DIPRIVAN and may also result in more pronounced decreases in systolic, diastolic, and mean arterial pressures and cardiac output.
In pediatric patients, administration of fentanyl concomitantly with DIPRIVAN may result in serious bradycardia. Analgesic Agents During maintenance of anesthesia or sedation, the rate of DIPRIVAN administration should be adjusted according to the desired level of anesthesia or sedation and may be reduced in the presence of supplemental analgesic agents (e.g., nitrous oxide or opioids). The concurrent administration of potent inhalational agents (e.g., isoflurane, sevoflurane, desflurane, enflurane, and halothane) during maintenance with DIPRIVAN are routinely used.
These inhalational agents can also be expected to increase the anesthetic or sedative and cardiorespiratory effects of DIPRIVAN. Valproate The concomitant use of valproate and propofol may lead to increased blood levels of propofol. Reduce the dose of propofol when co-administering with valproate.
Monitor patients closely for signs of increased sedation or cardiorespiratory depression. Common Neuromuscular Blocking Agents DIPRIVAN does not cause a clinically significant change in onset, intensity or duration of action of the commonly used neuromuscular blocking agents (e.g., succinylcholine and nondepolarizing muscle relaxants). Common Drugs Used as Premedication or Drugs Used During Anesthesia or Sedation No significant adverse interactions with commonly used premedications or drugs used during anesthesia or sedation (including a range of muscle relaxants, inhalational agents, analgesic agents, and local anesthetic agents) have been observed in adults.
Opioids, Sedatives or Other Analgesic Agents : May increase the anesthetic/sedative and cardiorespiratory effects. ( 7 ) Valproate : May lead to increased blood levels of propofol. ( 7 )
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS
8.1Pregnancy Risk Summary Data from randomized controlled trials, cohort studies and case series over several decades with propofol use in pregnant women have not identified a drug-associated risk of major birth defects, miscarriage, or adverse maternal or fetal outcomes. Most of the reported exposures to propofol describe propofol exposure at the time of cesarean delivery. There are reports of neonatal depression in infants exposed to propofol during delivery (see Clinical Considerations ).
In animal reproduction studies, decreased pup survival concurrent with increased maternal mortality was observed with intravenous administration of propofol to pregnant rats either prior to mating and during early gestation or during late gestation and early lactation at exposures less than the human induction dose of 2.5 mg/kg. In pregnant rats administered 15 mg/kg/day intravenous propofol (equivalent to the human induction dose) from two weeks prior to mating to early in gestation (Gestation Day 7), offspring that were allowed to mate had increased postimplantation losses.
The pharmacological activity (anesthesia) of the drug on the mother is probably responsible for the adverse effects seen in the offspring. 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 [see Data , Warnings and Precautions ( 5.3 ), Use in Specific Populations ( 8.4 )]).
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 2–4% and 15–20%, respectively. Clinical Considerations Fetal/neonatal Adverse Reactions DIPRIVAN crosses the placenta and may be associated with neonatal depression. Monitor neonates for hypotonia and sedation following maternal exposure to propofol.
Data Animal Data Pregnant rats were administered propofol intravenously at 0, 5, 10, and 15 mg/kg/day (0.3, 0.65, and 1 times the human induction dose of 2.5 mg/kg based on body surface area) during organogenesis (Gestational Days 6–15). Propofol did not cause adverse effects to the fetus at exposures up to 1 times the human induction dose despite evidence of maternal toxicity (decreased weight gain in all groups). Pregnant rabbits were administered propofol intravenously at 0, 5, 10, and 15 mg/kg/day (0.65, 1.3, 2 times the human induction dose of 2.5 mg/kg based on body surface area comparison) during organogenesis (Gestation Days 6–18).
Propofol treatment decreased total numbers of corpora lutea in all treatment groups but did not cause fetal malformations at any dose despite maternal toxicity (one maternal death from anesthesia-related respiratory depression in the high dose group). Pregnant rats were administered propofol intravenously at 0, 10, and 15 mg/kg/day (0.65 and 1 times the human induction dose of 2.5 mg/kg based on body surface area) from late gestation through lactation (Gestation Day 16 to Lactation Day 22). Decreased pup survival was noted at all doses in the presence of maternal toxicity (deaths from anesthesia- induced respiratory depression).
This study did not evaluate neurobehavioral function including learning and memory in the pups. Pregnant rats were administe… [Excerpted — this section continues on DailyMed.]
🤰 Pregnancy ▾
8.1Pregnancy Risk Summary Data from randomized controlled trials, cohort studies and case series over several decades with propofol use in pregnant women have not identified a drug-associated risk of major birth defects, miscarriage, or adverse maternal or fetal outcomes. Most of the reported exposures to propofol describe propofol exposure at the time of cesarean delivery. There are reports of neonatal depression in infants exposed to propofol during delivery (see Clinical Considerations ).
In animal reproduction studies, decreased pup survival concurrent with increased maternal mortality was observed with intravenous administration of propofol to pregnant rats either prior to mating and during early gestation or during late gestation and early lactation at exposures less than the human induction dose of 2.5 mg/kg. In pregnant rats administered 15 mg/kg/day intravenous propofol (equivalent to the human induction dose) from two weeks prior to mating to early in gestation (Gestation Day 7), offspring that were allowed to mate had increased postimplantation losses.
The pharmacological activity (anesthesia) of the drug on the mother is probably responsible for the adverse effects seen in the offspring. 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 [see Data , Warnings and Precautions ( 5.3 ), Use in Specific Populations ( 8.4 )]).
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 2–4% and 15–20%, respectively. Clinical Considerations Fetal/neonatal Adverse Reactions DIPRIVAN crosses the placenta and may be associated with neonatal depression. Monitor neonates for hypotonia and sedation following maternal exposure to propofol.
Data Animal Data Pregnant rats were administered propofol intravenously at 0, 5, 10, and 15 mg/kg/day (0.3, 0.65, and 1 times the human induction dose of 2.5 mg/kg based on body surface area) during organogenesis (Gestational Days 6–15). Propofol did not cause adverse effects to the fetus at exposures up to 1 times the human induction dose despite evidence of maternal toxicity (decreased weight gain in all groups). Pregnant rabbits were administered propofol intravenously at 0, 5, 10, and 15 mg/kg/day (0.65, 1.3, 2 times the human induction dose of 2.5 mg/kg based on body surface area comparison) during organogenesis (Gestation Days 6–18).
Propofol treatment decreased total numbers of corpora lutea in all treatment groups but did not cause fetal malformations at any dose despite maternal toxicity (one maternal death from anesthesia-related respiratory depression in the high dose group). Pregnant rats were administered propofol intravenously at 0, 10, and 15 mg/kg/day (0.65 and 1 times the human induction dose of 2.5 mg/kg based on body surface area) from late gestation through lactation (Gestation Day 16 to Lactation Day 22). Decreased pup survival was noted at all doses in the presence of maternal toxicity (deaths from anesthesia- induced respiratory depression).
This study did not evaluate neurobehavioral function including learning and memory in the pups. Pregnant rats were administered propofol intravenously at… [Excerpted — this section continues on DailyMed.]
🆘 Overdosage ▾
10 OVERDOSAGE
10.1Symptoms Overdosage is likely to cause cardiorespiratory depression.
10.2Treatment If overdosage occurs, DIPRIVAN administration should be discontinued immediately. Respiratory depression should be treated by artificial ventilation with oxygen. Cardiovascular depression may require repositioning of the patient by raising the patient's legs, increasing the flow rate of intravenous fluids, and administering pressor agents and/or anticholinergic agents.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY DIPRIVAN is an intravenous general anesthetic and sedation drug for use in the induction and maintenance of anesthesia or sedation. Intravenous injection of a therapeutic dose of propofol induces anesthesia, with minimal excitation, usually within 40 seconds from the start of injection (the time for one arm-brain circulation). As with other rapidly acting intravenous anesthetic agents, the half-time of the blood-brain equilibration is approximately 1 to 3 minutes, accounting for the rate of induction of anesthesia.
12.1Mechanism of Action The mechanism of action, like all general anesthetics, is poorly understood. However, propofol is thought to produce its sedative/anesthetic effects by the positive modulation of the inhibitory function of the neurotransmitter GABA through the ligand-gated GABA A receptors.
12.2Pharmacodynamics Pharmacodynamic properties of propofol are dependent upon the therapeutic blood propofol concentrations. Steady-state propofol blood concentrations are generally proportional to infusion rates. Undesirable side effects, such as cardiorespiratory depression, are likely to occur at higher blood concentrations which result from bolus dosing or rapid increases in infusion rates.
An adequate interval (3 to 5 minutes) must be allowed between dose adjustments in order to assess clinical effects. The hemodynamic effects of DIPRIVAN during induction of anesthesia vary. If spontaneous ventilation is maintained, the major cardiovascular effect is arterial hypotension (sometimes greater than a 30% decrease) with little or no change in heart rate and no appreciable decrease in cardiac output.
If ventilation is assisted or controlled (positive pressure ventilation), there is an increase in the incidence and the degree of depression of cardiac output. Addition of an opioid, used as a premedicant, further decreases cardiac output and respiratory drive. If anesthesia is continued by infusion of DIPRIVAN, the stimulation of endotracheal intubation and surgery may return arterial pressure towards normal.
However, cardiac output may remain depressed. Comparative clinical studies have shown that the hemodynamic effects of DIPRIVAN during induction of anesthesia are generally more pronounced than with other intravenous induction agents. Induction of anesthesia with DIPRIVAN is frequently associated with apnea in both adults and pediatric patients.
In adult patients who received DIPRIVAN (2 mg/kg to 2.5 mg/kg), apnea lasted less than 30 seconds in 7% of patients, 30 seconds to 60 seconds in 24% of patients, and more than 60 seconds in 12% of patients. In pediatric patients from birth through 16 years of age assessable for apnea who received bolus doses of DIPRIVAN (1 mg/kg to 3.6 mg/kg), apnea lasted less than 30 seconds in 12% of patients, 30 seconds to 60 seconds in 10% of patients, and more than 60 seconds in 5% of patients. During maintenance of general anesthesia, DIPRIVAN causes a decrease in spontaneous minute ventilation usually associated with an increase in carbon dioxide tension which may be marked depending upon the rate of administration and concurrent use of other medications (e.g., opioids, sedatives, etc.).
During monitored anesthesia care (MAC) sedation, attention must be given to the cardiorespiratory effects of DIPRIVAN. Hypotension, oxyhemoglobin desaturation, apnea, and airway obstruction can occur, especially following a rapid bolus of DIPRIVAN. During initiation of MAC sedation, slow infusion or slow injection techniques are preferable over rapid bolus administration.
During maintenance of MAC sedation, a variable rate infusion is preferable over intermittent bolus administration in order to minimize undesirable cardiorespiratory effects. In the elderly, debilitated, or ASA-PS III or IV patients, rapid (single or repeated) bolus dose administration should not be used for MAC sedation [see Warnings and Precautions ( 5.12 )] . Clinical and preclinical studies suggest that DIPRI… [Excerpted — this section continues on DailyMed.]
🧬 Mechanism of Action ▾
12.1Mechanism of Action The mechanism of action, like all general anesthetics, is poorly understood. However, propofol is thought to produce its sedative/anesthetic effects by the positive modulation of the inhibitory function of the neurotransmitter GABA through the ligand-gated GABA A receptors.
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING DIPRIVAN (propofol) injectable emulsion, USP is available as follows: Product Code Each Unit of Sale Strength PRX260929 NDC 63323-269-43 20 mL ready-to-use single-dose vial for single patient use only. NDC 63323-269-94 Packages of ten. 200 mg per 20 mL (10 mg per mL) PRX260950 NDC 63323-269-45 50 mL ready-to-use single-dose vial for single patient use only.
NDC 63323-269-59 Packages of twenty. 500 mg per 50 mL (10 mg per mL) PRX260965 NDC 63323-269-41 100 mL ready-to-use single-dose vial for single patient use only. NDC 63323-269-69 Packages of ten.
1,000 mg per 100 mL vial (10 mg per mL) Store between 4°C to 25°C (40°F to 77°F). Do not freeze. Shake well before use.
📋 Description ▾
11 DESCRIPTION DIPRIVAN ® (propofol) injectable emulsion, USP is an anesthetic available as a sterile, nonpyrogenic white or almost white homogeneous emulsion for intravenous administration. The structural formula is: Chemical name: 2,6 diisopropylphenol Molecular formula: C 12 H 18 O Molecular weight: 178.27 Propofol is slightly soluble in water. The pKa is 11.
The octanol/water partition coefficient for propofol is 6761:1 at a pH of 6 to 8.5. Each mL of DIPRIVAN ® (Propofol) injectable emulsion, USP contains 10 mg of propofol, 100 mg of soybean oil (100 mg/mL), 22.5 mg of glycerol (22.5 mg/mL), 12 mg of purified egg phospholipids (12 mg/mL), 0.055 mg of disodium edetate anhydrous (equivalent to 0.055 mg of disodium edetate) (0.05 mg/mL) as microbial inhibitor, and sodium hydroxide to adjust pH, in water for injection. DIPRIVAN is isotonic and has a pH of 7 to 8.5. dipri-struc-01.jpg
💬 Information for Patients ▾
17 PATIENT COUNSELING INFORMATION
17.1Impaired Mental Alertness Advise patients that performance of activities requiring mental alertness, such as operating a motor vehicle or hazardous machinery or signing legal documents may be impaired for some time after general anesthesia or sedation.
17.2Effect of Anesthetic and Sedation Drugs on Early Brain Development 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.
🧬 Pharmacokinetics ▾
12.3Pharmacokinetics The pharmacokinetics of propofol are well described by a three- compartment linear model with compartments representing the plasma, rapidly equilibrating tissues, and slowly equilibrating tissues. Following an intravenous bolus dose, there is rapid equilibration between the plasma and the brain, accounting for the rapid onset of anesthesia. Plasma levels initially decline rapidly as a result of both distribution and metabolic clearance.
Distribution accounts for about half of this decline following a bolus of propofol. However, distribution is not constant over time, but decreases as body tissues equilibrate with plasma and become saturated. The rate at which equilibration occurs is a function of the rate and duration of the infusion.
When equilibration occurs there is no longer a net transfer of propofol between tissues and plasma. Discontinuation of the recommended doses of DIPRIVAN after the maintenance of anesthesia for approximately one hour, or for sedation in the ICU for one day, results in a prompt decrease in blood propofol concentrations and rapid awakening. Longer infusions (10 days of ICU sedation) result in accumulation of significant tissue stores of propofol, such that the reduction in circulating propofol is slowed and the time to awakening is increased.
By daily titration of DIPRIVAN dosage to achieve only the minimum effective therapeutic concentration, rapid awakening within 10 to 15 minutes can occur even after long-term administration. If, however, higher than necessary infusion levels have been maintained for a long time, propofol redistribution from fat and muscle to the plasma can be significant and slow recovery. The figure below illustrates the fall of plasma propofol levels following infusions of various durations to provide ICU sedation.
The large contribution of distribution (about 50%) to the fall of propofol plasma levels following brief infusions means that after very long infusions a reduction in the infusion rate is appropriate by as much as half the initial infusion rate in order to maintain a constant plasma level. Therefore, failure to reduce the infusion rate in patients receiving DIPRIVAN for extended periods may result in excessively high blood concentrations of the drug. Thus, titration to clinical response and daily evaluation of sedation levels are important during use of DIPRIVAN infusion for ICU sedation.
Adults Propofol clearance ranges from 23 mL/kg/min to 50 mL/kg/min (1.6 L/min to
3.4L/min in 70 kg adults). It is chiefly eliminated by hepatic conjugation to inactive metabolites which are excreted by the kidney. A glucuronide conjugate accounts for about 50% of the administered dose.
Propofol has a steady-state volume of distribution (10-day infusion) approaching 60 L/kg in healthy adults. A difference in pharmacokinetics due to gender has not been observed. The terminal half-life of propofol after a 10-day infusion is 1 day to 3 days.
Geriatrics With increasing patient age, the dose of propofol needed to achieve a defined anesthetic end point (dose-requirement) decreases. This does not appear to be an age-related change in pharmacodynamics or brain sensitivity, as measured by EEG burst suppression. With increasing patient age, pharmacokinetic changes are such that, for a given intravenous bolus dose, higher peak plasma concentrations occur, which can explain the decreased dose requirement.
These higher peak plasma concentrations in the elderly can predispose patients to cardiorespiratory effects including hypotension, apnea, airway obstruction, and/or arterial oxygen desaturation. The higher plasma levels reflect an age-related decrease in volume of distribution and intercompartmental clearance. Lower doses are therefore recommended for initiation and maintenance of sedation and anesthesia in elderly patients [see Dosage and Administration ( 2 )] .
Pediatrics The pharmacokinetics of propofol were studied in children between 3 years and 12 years of age who… [Excerpted — this section continues on DailyMed.]
🧬 Pharmacodynamics ▾
12.2Pharmacodynamics Pharmacodynamic properties of propofol are dependent upon the therapeutic blood propofol concentrations. Steady-state propofol blood concentrations are generally proportional to infusion rates. Undesirable side effects, such as cardiorespiratory depression, are likely to occur at higher blood concentrations which result from bolus dosing or rapid increases in infusion rates.
An adequate interval (3 to 5 minutes) must be allowed between dose adjustments in order to assess clinical effects. The hemodynamic effects of DIPRIVAN during induction of anesthesia vary. If spontaneous ventilation is maintained, the major cardiovascular effect is arterial hypotension (sometimes greater than a 30% decrease) with little or no change in heart rate and no appreciable decrease in cardiac output.
If ventilation is assisted or controlled (positive pressure ventilation), there is an increase in the incidence and the degree of depression of cardiac output. Addition of an opioid, used as a premedicant, further decreases cardiac output and respiratory drive. If anesthesia is continued by infusion of DIPRIVAN, the stimulation of endotracheal intubation and surgery may return arterial pressure towards normal.
However, cardiac output may remain depressed. Comparative clinical studies have shown that the hemodynamic effects of DIPRIVAN during induction of anesthesia are generally more pronounced than with other intravenous induction agents. Induction of anesthesia with DIPRIVAN is frequently associated with apnea in both adults and pediatric patients.
In adult patients who received DIPRIVAN (2 mg/kg to 2.5 mg/kg), apnea lasted less than 30 seconds in 7% of patients, 30 seconds to 60 seconds in 24% of patients, and more than 60 seconds in 12% of patients. In pediatric patients from birth through 16 years of age assessable for apnea who received bolus doses of DIPRIVAN (1 mg/kg to 3.6 mg/kg), apnea lasted less than 30 seconds in 12% of patients, 30 seconds to 60 seconds in 10% of patients, and more than 60 seconds in 5% of patients. During maintenance of general anesthesia, DIPRIVAN causes a decrease in spontaneous minute ventilation usually associated with an increase in carbon dioxide tension which may be marked depending upon the rate of administration and concurrent use of other medications (e.g., opioids, sedatives, etc.).
During monitored anesthesia care (MAC) sedation, attention must be given to the cardiorespiratory effects of DIPRIVAN. Hypotension, oxyhemoglobin desaturation, apnea, and airway obstruction can occur, especially following a rapid bolus of DIPRIVAN. During initiation of MAC sedation, slow infusion or slow injection techniques are preferable over rapid bolus administration.
During maintenance of MAC sedation, a variable rate infusion is preferable over intermittent bolus administration in order to minimize undesirable cardiorespiratory effects. In the elderly, debilitated, or ASA-PS III or IV patients, rapid (single or repeated) bolus dose administration should not be used for MAC sedation [see Warnings and Precautions ( 5.12 )] . Clinical and preclinical studies suggest that DIPRIVAN is rarely associated with elevation of plasma histamine levels.
Preliminary findings in patients with normal intraocular pressure indicate that DIPRIVAN produces a decrease in intraocular pressure which may be associated with a concomitant decrease in systemic vascular resistance. Clinical studies indicate that DIPRIVAN when used in combination with hypocarbia increases cerebrovascular resistance and decreases cerebral blood flow, cerebral metabolic oxygen consumption, and intracranial pressure. DIPRIVAN does not affect cerebrovascular reactivity to changes in arterial carbon dioxide tension [see Clinical Studies ( 14.2 )].
Clinical studies indicate that DIPRIVAN does not suppress the adrenal response to ACTH. Animal studies and limited experience in susceptible patients have not indicated any propensity of DIPRIVAN to induce mali… [Excerpted — this section continues on DailyMed.]
🔬 Clinical Studies ▾
14 CLINICAL STUDIES
14.1Pediatric Anesthesia DIPRIVAN was studied in clinical trials which included cardiac surgical patients. Most patients were 3 years of age or older. The majority of the patients were healthy ASA-PS I or II patients.
The range of doses in these studies are described in Tables 3 and 4 . Table 3. Pediatric Induction of Anesthesia Age Range Induction Dose Median (range) Injection Duration Median (range) ≥ 3 years to 16 years 2.5 mg/kg (1 mg/kg to 3.6 mg/kg) 20 sec (6 sec to 45 sec) Table 4.
Pediatric Maintenance of Anesthesia Age Range Maintenance Dosage (mcg/kg/min) Duration (minutes) 2 months to 2 years 199 (82 to 394) 65 (12 to 282) 2 to 12 years 188 (12 to 1041) 69 (23 to 374) >12 through 16 years 161 (84 to 359) 69 (26 to 251)
14.2Neuroanesthesia DIPRIVAN was studied in patients undergoing craniotomy for supratentorial tumors in two clinical trials. The mean lesion size (anterior/posterior × lateral) was 31 mm × 32 mm in one trial and 55 mm × 42 mm in the other trial respectively. Anesthesia was induced with a median DIPRIVAN dose of 1.4 mg/kg (range: 0.9 mg/kg to 6.9 mg/kg) and maintained with a median maintenance DIPRIVAN dose of 146 mcg/kg/min (range: 68 mcg/kg/min to 425 mcg/kg/min).
The median duration of the DIPRIVAN maintenance infusion was 285 minutes (range: 48 minutes to 622 minutes). DIPRIVAN was administered by infusion in a controlled clinical trial to evaluate its effect on cerebrospinal fluid pressure (CSFP). The mean arterial pressure was maintained relatively constant over 25 minutes with a change from baseline of -4% ± 17% (mean ± SD).
The change in CSFP was -46% ± 14%. As CSFP is an indirect measure of intracranial pressure (ICP), DIPRIVAN, when given by infusion or slow bolus in combination with hypocarbia, is capable of decreasing ICP independent of changes in arterial pressure.
14.3Cardiac Anesthesia DIPRIVAN was evaluated in clinical trials involving patients undergoing coronary artery bypass graft (CABG). In post-CABG (coronary artery bypass graft) patients, the maintenance rate of propofol administration was usually low (median 11 mcg/kg/min) due to the intraoperative administration of high opioid doses. Patients receiving DIPRIVAN required 35% less nitroprusside than midazolam patients.
During initiation of sedation in post-CABG patients, a 15% to 20% decrease in blood pressure was seen in the first 60 minutes. It was not possible to determine cardiovascular effects in patients with severely compromised ventricular function.
14.4Intensive Care Unit (ICU) Sedation in Adult Patients DIPRIVAN was compared to benzodiazepines and opioids in clinical trials involving ICU patients. Of these, 302 received DIPRIVAN and comprise the overall safety database for ICU sedation. Across all clinical studies, the mean infusion maintenance rate for all DIPRIVAN patients was 27 ± 21 mcg/kg/min.
The maintenance infusion rates required to maintain adequate sedation ranged from 2.8 mcg/kg/min to 130 mcg/kg/min. The infusion rate was lower in patients over 55 years of age (approximately 20 mcg/kg/min) compared to patients under 55 years of age (approximately 38 mcg/kg/min). Although there are reports of reduced analgesic requirements, most patients received opioids for analgesia during maintenance of ICU sedation.
In these studies, morphine or fentanyl was used as needed for analgesia. Some patients also received benzodiazepines and/or neuromuscular blocking agents. During long-term maintenance of sedation, some ICU patients were awakened once or twice every 24 hours for assessment of neurologic or respiratory function.
In Medical and Postsurgical ICU studies comparing DIPRIVAN to benzodiazepine infusion or bolus, there were no apparent differences in maintenance of adequate sedation, mean arterial pressure, or laboratory findings. Like the comparators, DIPRIVAN reduced blood cortisol during sedation while maintaining responsivity to challenges with adrenocorticotropic hormone (ACTH). Case reports… [Excerpted — this section continues on DailyMed.]
🔒 Drug Abuse and Dependence ▾
9 DRUG ABUSE AND DEPENDENCE
9.2Abuse There are reports of the abuse of propofol for recreational and other improper purposes, which have resulted in fatalities and other injuries. Instances of self-administration of DIPRIVAN by health care professionals have also been reported, which have resulted in fatalities and other injuries. Inventories of DIPRIVAN should be stored and managed to prevent the risk of diversion, including restriction of access and accounting procedures as appropriate to the clinical setting.
🧪 Nonclinical Toxicology ▾
13 NONCLINICAL TOXICOLOGY
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility Carcinogenesis Long-term studies in animals have not been performed to evaluate the carcinogenic potential of propofol. Mutagenesis Propofol was not mutagenic in the in vitro bacterial reverse mutation assay (Ames test) using Salmonella typhimurium strains TA98, TA100, TA1535, TA1537 and TA1538. Propofol was not mutagenic in either the gene mutation/gene conversion test using Saccharomyces cerevisiae , or in vitro cytogenetic studies in Chinese hamsters.
In the in vivo mouse micronucleus assay with Chinese Hamsters propofol administration did not produce chromosome aberrations. Impairment of Fertility Female Wistar rats were administered either 0, 10, or 15 mg/kg/day propofol intravenously from 2 weeks before pregnancy to day 7 of gestation did not show impaired fertility (0.65 and 1 times the human induction dose of 2.5 mg/kg based on body surface area). Male fertility in rats was not affected in a dominant lethal study at intravenous doses up to 15 mg/kg/day for 5 days.
13.2Animal Toxicology and/or Pharmacology Intra-arterial injection in animals did not induce local tissue effects. Intentional injection into subcutaneous or perivascular tissues of animals caused minimal tissue reaction. Published studies in animals demonstrate that the use of anesthetic agents 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 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 an anesthetic regimen that produced a light surgical plane of anesthesia did not increase neuronal cell loss, however, treatment regimens of 5 hours or longer increased neuronal cell loss. Data in rodents and in primates suggest that the neuronal and oligodendrocyte cell losses are associated with subtle but 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 against the potential risks suggested by the nonclinical data [see Warnings and Precautions ( 5.3 ); Pregnancy ( 8.1 ), and Pediatric Use ( 8.4 )] .
📄 Carcinogenesis, Mutagenesis, Impairment of Fertility ▾
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility Carcinogenesis Long-term studies in animals have not been performed to evaluate the carcinogenic potential of propofol. Mutagenesis Propofol was not mutagenic in the in vitro bacterial reverse mutation assay (Ames test) using Salmonella typhimurium strains TA98, TA100, TA1535, TA1537 and TA1538. Propofol was not mutagenic in either the gene mutation/gene conversion test using Saccharomyces cerevisiae , or in vitro cytogenetic studies in Chinese hamsters.
In the in vivo mouse micronucleus assay with Chinese Hamsters propofol administration did not produce chromosome aberrations. Impairment of Fertility Female Wistar rats were administered either 0, 10, or 15 mg/kg/day propofol intravenously from 2 weeks before pregnancy to day 7 of gestation did not show impaired fertility (0.65 and 1 times the human induction dose of 2.5 mg/kg based on body surface area). Male fertility in rats was not affected in a dominant lethal study at intravenous doses up to 15 mg/kg/day for 5 days.
📄 Package Label / Principal Display Panel ▾
PACKAGE LABEL - PRINCIPAL DISPLAY - Diprivan ® 20 mL Vial Label DIPRIVAN ® (Propofol) INJECTABLE EMULSION, USP 200 mg per 20 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION 20 mL Single-Dose Vial SHAKE WELL BEFORE USING dipri-label-01.jpg
PACKAGE LABEL - PRINCIPAL DISPLAY - Diprivan ® 20 mL Vial Carton Panel NDC 63323-269-94 PRX260929 DIPRIVAN (Propofol) INJECTABLE EMULSION, USP 200 mg per 20 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION SHAKE WELL BEFORE USING Ten 20 mL Vials Single-Dose Vials Sterile, nonpyrogenic dipri-label-02.jpg
PACKAGE LABEL – PRINCIPAL DISPLAY – Diprivan ® 50 mL Vial Label NDC 63323-269-45 PRX260950 DIPRIVAN ® (Propofol) INJECTABLE EMULSION, USP 500 mg per 50 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION 50 mL Single-Dose Vial Rx only dipri-label-03.jpg
PACKAGE LABEL – PRINCIPAL DISPLAY – Diprivan ® 50 mL Vial Carton Panel NDC 63323-269-59 PRX260950 DIPRIVAN ® (Propofol) INJECTABLE EMULSION, USP 500 mg per 50 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION SHAKE WELL BEFORE USING Twenty 50 mL Vials Single-Dose Vials Rx only dipri-label-04.jpg
PACKAGE LABEL – PRINCIPAL DISPLAY – Diprivan ® 100 mL Vial Label NDC 63323-269-41 PRX260965 DIPRIVAN ® (Propofol) INJECTABLE EMULSION, USP 1000 mg per 100 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION SHAKE WELL BEFORE USING Rx only 100 mL Single-Dose Vial dipri-label-05.jpg
PACKAGE LABEL – PRINCIPAL DISPLAY – Diprivan ® 100 mL Vial Carton Panel NDC 63323-269-69 PRX260965 DIPRIVAN ® (Propofol) INJECTABLE EMULSION, USP 1000 mg per 100 mL (10 mg per mL) FOR INTRAVENOUS ADMINISTRATION SHAKE WELL BEFORE USING Ten 100 mL Vials Single-Dose Vials dipri-label-06.jpg
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