Product
Supplier
Encyclopedia
Inquiry
Home > Encyclopedia > Saquinavir

Saquinavir

Saquinavir structure

Saquinavir 

structure
  • CAS No:

    127779-20-8

  • Formula:

    C38H50N6O5

  • Chemical Name:

    Saquinavir

  • Synonyms:

    Butanediamide,N1-[(1S,2R)-3-[(3S,4aS,8aS)-3-[[(1,1-dimethylethyl)amino]carbonyl]octahydro-2(1H)-isoquinolinyl]-2-hydroxy-1-(phenylmethyl)propyl]-2-[(2-quinolinylcarbonyl)amino]-,(2S)-;Butanediamide,N1-[3-[3-[[(1,1-dimethylethyl)amino]carbonyl]octahydro-2(1H)-isoquinolinyl]-2-hydroxy-1-(phenylmethyl)propyl]-2-[(2-quinolinylcarbonyl)amino]-,[3S-[2[1R*(R*),2S*],3α,4aβ,8aβ]]-;(2S)-N1-[(1S,2R)-3-[(3S,4aS,8aS)-3-[[(1,1-Dimethylethyl)amino]carbonyl]octahydro-2(1H)-isoquinolinyl]-2-hydroxy-1-(phenylmethyl)propyl]-2-[(2-quinolinylcarbonyl)amino]butanediamide;Ro 31-8959;(S)-N-[(αS)-α-[(1R)-2-[(3S,4aS,8aS)-3-(tert-Butylcarbamoyl)octahydro-2(1H)-isoquinolyl]-1-hydroxyethyl]phenethyl]-2-quinaldamidosuccinamide;Saquinavir;Sch 52852;Ro 31-8959/000;Fortovase;Sequinavir;131176-13-1

  • Categories:

    Active Pharmaceutical Ingredients  >  Inhibitor Drugs

Description

ChEBI: An aspartic acid derivative obtained by formal condensation of the primary amino group of (2S,3R)-4-[(3S,4aS,8aS)-3-(tert-butylcarbamoyl)octahydroisoquinolin- (1H)-yl]-3-hydroxy-1-phenylbutan-2-ylamine with the carboxy group of N2(-quinolin-2-ylcarbonyl)-L-asparagine. An inhibitor of HIV-1 protease.Saquinavir mesylate, the first HIV protease inhibitor to reach the market, was launched in the U.S.A.. It is indicated for use in combination with approved nucleoside analogs for the treatm


Saquinavir is an aspartic acid derivative obtained by formal condensation of the primary amino group of (2S,3R)-4-[(3S,4aS,8aS)-3-(tert-butylcarbamoyl)octahydroisoquinolin-2(1H)-yl]-3-hydroxy-1-phenylbutan-2-ylamine with the carboxy group of N(2)(-quinolin-2-ylcarbonyl)-L-asparagine. An inhibitor of HIV-1 protease. It has a role as a HIV protease inhibitor and an antiviral drug. It is a member of quinolines and a L-asparagine derivative.|Saquinavir is an HIV-1 protease inhibitor used in combination with [ritonavir] and other antiretrovirals for the treatment of human immunodeficiency virus-1 (HIV-1) infection. In 1995 it became the first protease inhibitor approved by the FDA, followed shortly by ritonavir in 1996, and remains in clinical use today due to a relatively benign adverse effect profile as compared to other antiretroviral therapies. While its efficacy was initially limited by exceptionally poor oral bioavailability (approximately 4%), its current indications require the co-administration of ritonavir - a potent enzyme inhibitor - that increases the bioavailability and subsequent serum concentrations of saquinavir, thus dramatically improving antiviral activity.|Saquinavir is a Protease Inhibitor. The mechanism of action of saquinavir is as a HIV Protease Inhibitor, and Cytochrome P450 3A Inhibitor.|Saquinavir is an antiretroviral protease inhibitor that is used in the therapy and prevention of human immunodeficiency virus (HIV) infection and the acquired immunodeficiency syndrome (AIDS). Saquinavir can cause transient and usually asymptomatic elevations in serum aminotransferase levels and, rarely, can lead to clinically apparent acute liver injury. In HBV or HCV coinfected patients, highly active antiretroviral therapy with saquinavir may result of an exacerbation of the underlying chronic hepatitis B or C.|Saquinavir is a peptidomimetic inhibitor of human immunodeficiency virus (HIV) protease.|An HIV protease inhibitor which acts as an analog of an HIV protease cleavage site. It is a highly specific inhibitor of HIV-1 and HIV-2 proteases, and also inhibits CYTOCHROME P-450 CYP3A.

Saquinavir Basic Attributes

670.84

670.84

1806241-263-5

L3JE09KZ2F

DTXSID6044012

C29444

White crystalline solid|Off-white to white very fine powder

J05AE01|J - Antiinfectives for systemic use

Characteristics

167

2.5 @ 25 deg C /Estimated/

1.211±0.06 g/cm3(Predicted)

349.84

1015.0±65.0 °C(Predicted)

567.7ºC

1.646

H2O: Insoluble

Commercially available saquinavir liquid-filled capsules should be refrigerated at 28 deg C in a tight container. Once dispensed, the liquid-filled capsules should be refrigerated, but may be stored at a temperature lower than 25 deg C for up to 3 months. Saquinavir mesylate hard gelatin capsules should be stored at 15-30 deg C in a tight container.

2X10-31 mm Hg @ 25 deg C /Estimated/

D20 -55.9° (c = 0.5 in methanol)

Henry's Law constant = 9.9X10-35 atm-cu m/mol @ 25 °C /Estimated/

Hydroxyl radical reaction rate constant = 2.1X10-10 cu cm/molec sec @ 25 °C /Estimated/

Safety Information

SRP: The most favorable course of action is to use an alternative chemical product with less inherent propensity for occupational exposure or environmental contamination. Recycle any unused portion of the material for its approved use or return it to the manufacturer or supplier. Ultimate disposal of the chemical must consider: the material's impact on air quality; potential migration in soil or water; effects on animal, aquatic, and plant life; and conformance with environmental and public health regulations.

The Approved Drug Products with Therapeutic Equivalence Evaluations List identifies currently marketed prescription drug products, incl saquinavir and saquinavir mesylate, approved on the basis of safety and effectiveness by FDA under sections 505 of the Federal Food, Drug, and Cosmetic Act.

Toxicity

The oral LD50 of saquinavir in both rats and mice is >5 g/kg. Data regarding overdose with saquinavir are limited. No acute toxicities or sequelae were noted in a patient ingesting 8 grams of saquinavir as a single dose, and a second subject ingesting 2.4 grams as a single dose experienced throat pain that lasted for 6 hours and subsequently resolved. Treatment of overdose should consist of symptomatic and supportive measures. Dialysis is unlikely to be of benefit given saquinavir's extensive protein-binding.

Some degree of serum aminotransferase elevations occur in a high proportion of patients taking saquinavir containing antiretroviral regimens. Moderate-to severe elevations in serum aminotransferase levels (>5 times the upper limit of normal) are found in 3% to 10% of patients, although rates may be higher in patients with HIV-HCV coinfection. These elevations are usually asymptomatic and self-limited and can resolve even with continuation of the medication.

Concurrent use of saquinavir with terfenadine has resulted in an increase in the plasma concentrations of terfenadine; competition for the cytochrome p450 enzyme CYP3A by saquinavir may also inhibit the metabolism of astemizole, cisapride, ergot derivatives, midazolam, or triazolam, due to the potential for serious and/or life-threatening cardiac arrhythmias or prolonged sedation, concurrent use of any of these medications with saquinavir mesylate capsules or saquinavir soft gelatin capsules is not recommended.|Concurrent administration of saquinavir mesylate capsules with these medications /calcium channel blocking agents, clindamycin, dapsone, or quinidine/ which are substrates of the CYP3A4 isoenzyme of the cytochrome p450 enzyme system, may result in elevated plasma concentrations of these medications; patients should be monitored for toxicities associated with these medications.|Ethanol-intake decreases the bioavailability of SQV /saquinavir/ after oral administration alone or with RTV /ritonavir/.|Concurrent administration of rifabutin or rifampin with saquinavir mesylate capsules has resulted in a decrease in the steady-state AUC and peak plasma concentration of saquinavir by approximately 80% and 40%, respectively; carbamazepine, dexamethasone, phenobarbital, phenytoin, or other medications that induce CYP3A4 may also reduce saquinavir plasma concentrations; use of alternative medications should be considered if patients are taking either formulation of saquinavir.|For more Interactions (Complete) data for SAQUINAVIR (17 total), please visit the HSDB record page.

Saquinavir is approximately 98% plasma protein-bound independent of serum concentration.

Drug Information

Saquinavir is indicated, in combination with ritonavir and other antiretroviral agents, for the treatment of HIV-1 infection in patients 16 years of age and older.|FDA Label|Invirase is indicated for the treatment of HIV-1-infected adult patients. Invirase should only be given in combination with ritonavir and other antiretroviral medicinal products.|Fortovase is indicated for treatment of HIV-1 infected adult patients. Fortovase should only be given in combination with ritonavir and other antiretroviral medicinal products (see section 4.2).

Saquinavir is an antiretroviral protease inhibitor that is used in the therapy and prevention of human immunodeficiency virus (HIV) infection and the acquired immunodeficiency syndrome (AIDS). Saquinavir can cause transient and usually asymptomatic elevations in serum aminotransferase levels and, rarely, can lead to clinically apparent acute liver injury. In HBV or HCV coinfected patients, highly active antiretroviral therapy with saquinavir may result of an exacerbation of the underlying chronic hepatitis B or C.

Antiviral Agents

Saquinavir, in combination with other antiretroviral agents, is indicated in the treatment of HIV infection or AIDS. Saquinavir soft gelatin capsule (Fortovase) is the preferred dosage form, according to the FDA. /Included in US product labeling/|Saquinavir was not detected in cord blood. Saquinavir soft-gel capsules are well tolerated during pregnancy and are not associated in this small study with birth abnormalities. Transmission of HIV infection from mother to child was successfully prevented in all cases. Low maternal exposures of saquinavir were noted. However, these did not appear to affect virologic efficacy of the combination. Samples from cord blood indicate minimal fetal exposure to saquinavir.

The principal adverse effects associated with saquinavir therapy involve the GI tract. In adults with HIV infection receiving saquinavir liquid-filled or hard gelatin capsules in conjunction with other antiretroviral agents (e.g., 2 dideoxynucleoside reverse transcriptase inhibitors), diarrhea occurred in 15.6-19.9%, abdominal discomfort in 8.6-13.3%, abdominal pain in 2.3-7.8%, nausea in 10.6-17.8%, dyspepsia in 8.4-8.9%, flatulence in 5.7-12.2%, vomiting in 2.9-4.4%, altered taste in 4.4%, and constipation in 3.3% of patients.|Adverse GI effects reported in <2% of patients receiving saquinavir hard gelatin or liquid-filled capsules alone or in conjunction with other antiretroviral agents include anorexia, abdominal distention, buccal mucosa ulceration, oral canker sores, cheilitis, dry mouth, dysphagia, abdominal colic, esophageal ulceration, esophagitis, eructation, bloodstained or discolored feces, frequent bowel movements, fecal incontinence, gastralgia, gastritis, GI reflux, GI ulcer, GI inflammation, intestinal obstruction, gingivitis, glossitis, hemorrhoids, infectious diarrhea, melena, painful defecation, parotid disorder, pruritus ani, /SRP: heartburn/, stomach upset, pelvic pain, rectal hemorrhage, salivary gland disorder, stomatitis, unpleasant taste, toothache, and tooth disorder.|Headache has occurred in 58.9% of adults with HIV infection receiving saquinavir liquid-filled capsules in conjunction with other antiretroviral agents. Depression has been reported in 2.7%, insomnia in 5.6%, and anxiety or libido disorder in 2.2% of patients receiving saquinavir liquid-filled capsules in conjunction with other antiretroviral therapy.|Adverse nervous system effects that have been reported in less than 2% of patients receiving saquinavir hard gelatin or liquid-filled capsules alone or in conjunction with other antiretroviral agents include ataxia, cerebral hemorrhage, confusion, seizures, dizziness, dysarthria, dysesthesia, facial numbness, facial pain, numbness of the extremities, hyperesthesia, hyperreflexia, hyporeflexia, light-headed feeling, myelopolyradiculoneuritis, paresthesia, peripheral neuropathy, prickly sensation, paresis, poliomyelitis, progressive multifocal leukoencephalopathy, spasms, tremor, and unconsciousness. Adverse psychologic effects reported in less than 2% of patients receiving the drug include agitation, amnesia, anxiety, behavior disturbances, excessive dreaming, euphoria, hallucination, irritability, lethargy, overdose effect, psychic disorder, psychosis, reduced intellectual ability, somnolence, and speech disorder. Serious adverse nervous system effects that have been reported rarely in clinical studies in patients receiving saquinavir alone or in conjunction with other antiretroviral agents which were considered to be at least possibly related to the study drugs include attempted suicide, episodes involving confusion, ataxia and weakness, and headache.|For more Drug Warnings (Complete) data for SAQUINAVIR (23 total), please visit the HSDB record page.

Viral replication in the presence of saquinavir selects for drug-resistant virus. Among patients treated with saquinavir, resistance has been associated with progressive accumulation of resistance mutation over time. The most common mutation associated with saquinavir resistance is at protease codon 90, followed in frequency by codon 48. With prolonged administration, additional mutations at positions 36, 46, 82, and 84 occur and are associated with cross-resistance to other protease inhibitors.

Saquinavir exerts its antiviral activity by inhibiting an enzyme critical for the HIV-1 viral lifecycle. Like other protease inhibitors, saquinavir has a propensity for participating in drug interactions - use caution when administering saquinavir to patients maintained on other pharmaceutical agents as pharmacodynamic and pharmacokinetic interactions are common. Saquinavir is known to increase the QTc-interval in otherwise healthy individuals, and should therefore be used with caution in patients maintained on other QTc-prolonging medications or for whom prolongation of the QTc-interval may be of particular consequence (e.g. patients with pre-existing heart disease). Careful and regular monitoring of patient bloodwork is recommended, as saquinavir has been associated with the development of metabolic complications (e.g. diabetes mellitus, hyperlipidemia) and worsening of pre-existing liver disease.

Inhibitors of HIV PROTEASE, an enzyme required for production of proteins needed for viral assembly. (See all compounds classified as HIV Protease Inhibitors.)|Drugs and compounds which inhibit or antagonize the biosynthesis or actions of CYTOCHROME P-450 CYP3A. (See all compounds classified as Cytochrome P-450 CYP3A Inhibitors.)

The absolute bioavailability of orally administered saquinavir is only ~4%, thought to be a consequence of incomplete absorption and extensive first-pass metabolism. It is co-administered with ritonavir, another protease inhibitor and a potent inhibitor of the enzymes responsible for saquinavir's first-pass metabolism, in order to dramatically boost its serum concentrations and, by extension, its therapeutic efficacy. Following administration of saquinavir 1000mg twice daily with ritonavir 100mg twice daily the AUC24h at steady-state was 39026 ng.h/mL.|The primary means of elimination of saquinavir appears to be extensive hepatic metabolism followed by fecal excretion of both the parent drug and metabolic products. Following the administration of radiolabeled saquinavir (both orally and intravenously), approximately 81-88% of radioactivity is recovered in the feces within 5 days of dosing while only 1-3% is recovered in the urine. Mass balance studies indicate that only 13% of orally-administered plasma radioactivity is attributed to unchanged parent drug, with the remainder comprising metabolic products of saquinavir's hepatic metabolism. In contrast, intravenous administration resulted in approximately 66% of the circulating plasma radioactivity being attributed to unchanged parent drug, suggesting a high degree of first-pass metabolism with oral administration.|The steady-state volume of distribution of saquinavir is approximately 700 L, suggesting extensive distribution into tissues.|The systemic clearance of saquinavir is approximately 1.14 L/h/kg following intravenous administration.|Following administration of saquinavir in a dosage of 1200 mg 3 times daily as liquid-filled capsules, mean steady-state AUC at 3 weeks was 7249 ngh/mL compared with an AUC of 866 ngh/mL reported following administration of saquinavir hard gelatin capsules in a dosage of 600 mg 3 times daily. While the AUC of saquinavir in adults receiving liquid-filled capsules was lower at week 61-69 compared with the AUC at week 3, the AUC at week 61-69 was greater than the AUC at the same time point in HIV-infected adults receiving saquinavir as hard gelatin capsules (600 mg 3 times daily).|The relative oral bioavailability of saquinavir from liquid-filled (soft gelatin) capsules is estimated to average 331% (range: 207-530%) of that achieved with hard gelatin capsules of the drug when single 600-mg doses are administered. This would represent a calculated average oral bioavailability from the liquid-filled capsules of about 13% based on an average absolute bioavailability of 4% from the hard capsules; however, these are calculated estimates and not based on actual determination of absolute oral bioavailability from the liquid-filled capsules.|Saquinavir and its metabolites are eliminated from the body primarily through the biliary system and feces (more than 95% of the drug), with minimal urinary excretion (less than 3% of administered drug).|Oral bioavailability of the hard-gelatin capsule formulation of saquinavir (saquinavir mesylate, invirase) is only 4% due to limited absorption and extensive first-pass metabolism, with considerable interpatient variability. ... Absorption of saquinavir may be enhanced when the drug is taken with a high-calorie, high-fat meal. In addition, saquinavir demonstrates a greater than dose-proportional increase in exposure. For example, tripling the oral dose of saquinavir is associated with an eightfold increase in exposure.|For more Absorption, Distribution and Excretion (Complete) data for SAQUINAVIR (10 total), please visit the HSDB record page.

Saquinavir is extensively metabolized in the liver following oral administration, and _in vitro_ studies have shown that >90% of its biotransformation is mediated by the CYP3A4 isoenzyme. Saquinavir is rapidly metabolized to a number of inactive mono- and di-hydroxylated compounds.|Results of in vitro studies indicate that saquinavir is rapidly metabolized in the liver to several monohydroxylated and dihydroxylated inactive metabolites. Metabolism of saquinavir is mediated by cytochrome P450; the isoenzyme CYP3A4 is involved in more than 90% of this metabolism. Orally administered saquinavir appears to undergo substantial metabolism on first pass through the liver.|Saquinavir is metabolized primarily by hepatic CYP3A4. The metabolites of saquinavir are not active against HIV-1.|Saquinavir has known human metabolites that include (2S)-N-[(2S,3R)-4-[(3S,4aR,8aS)-3-(tert-butylcarbamoyl)-6-hydroxy-decahydroisoquinolin-2-yl]-3-hydroxy-1-phenylbutan-2-yl]-2-[(quinolin-2-yl)formamido]butanediamide, (2S)-N-[(2S,3R)-4-[(3S,4aS,8aS)-3-(tert-butylcarbamoyl)-7-hydroxy-decahydroisoquinolin-2-yl]-3-hydroxy-1-phenylbutan-2-yl]-2-[(quinolin-2-yl)formamido]butanediamide, and (2S)-N-[(2S,3R)-4-[(3S,4aS,8aS)-3-[(1-hydroxy-2-methylpropan-2-yl)carbamoyl]-decahydroisoquinolin-2-yl]-3-hydroxy-1-phenylbutan-2-yl]-2-[(quinolin-2-yl)formamido]butanediamide.

The HIV lifecycle is comprised of 3 distinct stages: assembly, involving creation and packaging of essential viral components; budding, wherein the viral particle crosses the host cell plasma membrane and forms a lipid envelope; and maturation, wherein the viral particle alters its structure and becomes infectious. At the center of this lifecycle is the Gag polyprotein which, along with the products of its proteolysis, coordinate these stages and function as the major structural proteins of the virus. The HIV-1 protease enzyme, a dimeric aspartic protease, is the enzyme responsible for cleaving the Gag polyprotein and thus plays a critical role in many aspects of the HIV viral lifecycle. Saquinavir is an inhibitor of the HIV-1 protease enzyme. Its design is based on the "peptidomimetic" principle, wherein the molecule contains a hydroxyethylene scaffold that mimics the normal peptide linkage (cleaved by HIV protease) but which itself cannot be cleaved. By preventing HIV-1 protease activity, and thus the proteolysis of the Gag polyprotein, saquinavir results in the production of immature, non-infectious viral particles.|While the complete mechanisms of antiviral activity of saquinavir have not been fully elucidated, saquinavir apparently inhibits replication of retroviruses, including human immunodeficiency virus type 1 (HIV-1) and type 2 (HIV-2), by interfering with HIV protease. The drug, therefore, exerts a virustatic effect against retroviruses by acting as an HIV protease inhibitor.|Saquinavir is a selective, competitive, reversible inhibitor of HIV protease. HIV protease, an aspartic endopeptidase that functions as a homodimer, plays an essential role in the replication cycle of HIV and the formation of infectious virus. During HIV replication, HIV protease cleaves viral polypeptide products of the gag and gag-pol genes (i.e., p55 and p160) to form structural proteins of the virion core (i.e., p17, p24, p9, and p7) and essential viral enzymes (i.e., reverse transcriptase, integrase, and protease). Because saquinavir is a structural analog of the HIV Phe-Pro protease cleavage site, the drug inhibits the function of the enzyme. By interfering with the formation of these essential proteins and enzymes, saquinavir blocks maturation of the virus and causes the formation of nonfunctional, immature, noninfectious virions. Saquinavir is active in both acutely and chronically infected cells since it targets the HIV replication cycle after translation and before assembly. Thus, the drug is active in chronically infected cells (e.g., monocytes and macrophages) that generally are not affected by nucleoside reverse transcriptase inhibitors (e.g., didanosine, lamivudine, stavudine, zalcitabine, zidovudine). Saquinavir does not affect early stages of the HIV replication cycle; however, the drug interferes with the production of infectious HIV and limits further infectious spread of the virus.|Unlike nucleoside antiretroviral agents, the antiviral activity of saquinavir does not depend on intracellular conversion to an active metabolite. Saquinavir and other HIV protease inhibitors (e.g., amprenavir, indinavir, lopinavir, nelfinavir, ritonavir) act at a different stage of the HIV replication cycle than nucleoside and nonnucleoside reverse transcriptase inhibitors, and results of in vitro studies indicate that the antiretroviral effects of some nucleoside reverse transcriptase inhibitors and HIV protease inhibitors may be additive or synergistic.

Treatment of overdose: To decrease absorption: Patients may benefit from treatment with activated charcoal. Monitoring: Patient's vital signs should be monitored. Supportive care: Patients in whom intentional overdose is confirmed or suspected should be referred for psychiatric consultation.|Basic treatment: Establish a patent airway. Suction if necessary. Watch for signs of respiratory insufficiency and assist ventilations if needed. Administer oxygen by nonrebreather mask at 10 to 15 L/min. Monitor for pulmonary edema and treat if necessary ... . Monitor for shock and treat if necessary ... . Anticipate seizures and treat if necessary ... . For eye contamination, flush eyes immediately with water. Irrigate each eye continuously with normal saline during transport ... . Do not use emetics. For ingestion, rinse mouth and administer 5 ml/kg up to 200 ml of water for dilution if the patient can swallow, has a strong gag reflex, and does not drool ... . Cover skin burns with dry sterile dressings after decontamination ... . /Poison A and B/|Advanced treatment: Consider orotracheal or nasotracheal intubation for airway control in the patient who is unconscious, has severe pulmonary edema, or is in respiratory arrest. Positive pressure ventilation techniques with a bag valve mask device may be beneficial. Monitor cardiac rhythm and treat arrhythmias as necessary ... . Start an IV with D5W /SRP: "To keep open", minimal flow rate/. Use lactated Ringer's if signs of hypovolemia are present. Watch for signs of fluid overload. Consider drug therapy for pulmonary edema ... . For hypotension with signs of hypovolemia, administer fluid cautiously. Watch for signs of fluid overload ... . Treat seizures with diazepam (Valium) ... . Use proparacaine hydrochloride to assist eye irrigation ... . /Poison A and B/|Maintain an open airway and assist ventilation if needed. Treat coma, seizures, hypotension or anaphylaxis if they occur. replace fluid losses resulting from gastroenteritis with intravenous crystalloids. Maintain steady urine flow with intravenous fluids to alleviate crystalluria and reverse renal dysfunction. Treat lactic acidosis with judicious doses of sodium bicarbonate and by withdrawal of the offending drug. There are no specific antidotes for these agents. Administer activated charcoal.

/HUMAN EXPOSURE STUDIES/ Limited information is available on the acute toxicity of saquinavir. The acute lethal dose of the drug in humans is not known. In a phase II study, patients receiving a saquinavir dosage of 1.2 g every 4 hours as hard gelatin capsules (7.2 g daily) had no evidence of serious toxicity through the first 25 weeks of therapy. There was no evidence of acute toxicities or sequelae in a patient who ingested a single 8-g dose of saquinavir as hard gelatin capsules; emesis was induced within 2-4 hours of ingestion. One patient who ingested 2.4 g of saquinavir as hard gelatin capsules in conjunction with 600 mg of ritonavir experienced throat pain which lasted 6 hours and then resolved.|/HUMAN EXPOSURE STUDIES/ Substantial increases in serum concentrations of AST (SGOT) or ALT (SGPT) (more than 5 times the upper limit of normal) has occurred in 1.2-5.7% of patients receiving saquinavir liquid-filled capsules in conjunction with other antiretroviral agents. Substantial increases in total serum bilirubin concentrations (more than 2.5 times the upper limit of normal) has occurred in 1.6% of patients receiving saquinavir. Increased serum Gamma-glutamyltransferase (GGT, Gamma-glutamyltranspeptidase, GGTP) concentrations have been reported in 5.7-7.1% of patients receiving saquinavir.|/HUMAN EXPOSURE STUDIES/ Pancreatitis occurred in less than 2% of patients receiving saquinavir alone or in conjunction with other antiretroviral agents; pancreatitis resulting in death has been reported. Pancreatitis resulting in death has been reported in a few patients receiving didanosine, stavudine, and an HIV protease inhibitor (i.e., indinavir, nelfinavir). Pancreatitis also has been reported in patients receiving other HIV protease inhibitors (e.g., lopinavir). In clinical studies evaluating saquinavir in conjunction with other antiretroviral agents, substantial increases in serum amylase concentrations (more than 2 times the upper limit of normal) occurred in up to 1.9% of patients.|/HUMAN EXPOSURE STUDIES/ A severe cutaneous reaction associated with increased liver function test results, substantial increases in liver function test results (more than 10 times the usual normal value) in association with exacerbation of chronic liver disease, isolated increases in transaminase values, jaundice, upper left and right quadrant abdominal pain, ascites, hepatitis, hepatomegaly, or hepatosplenomegaly have occurred rarely in patients receiving saquinavir. Although a causal relationship to saquinavir has not been established, exacerbation of chronic liver dysfunction, including portal hypertension, has occurred in patients with hepatitis B or C, cirrhosis, or other liver abnormalities receiving the drug. Cholelithiasis, hepatitis, hepatomegaly, hepatosplenomegaly, jaundice, and sclerosing cholangitis have occurred in less than 2% of patients receiving saquinavir in clinical studies.|For more Human Toxicity Excerpts (Complete) data for SAQUINAVIR (7 total), please visit the HSDB record page.

Invirase

Saquinavir Use and Manufacturing

Methods of Manufacturing

Preparation: J.A. Martin and S. Redshaw, EP 432695; US 5196438 (1991, 1993 both to Hoffmann-LaRoche)

Uses

Antiviral (HIV protease inhibitor).Treatment of HIV infection (in combination with other antiretroviral drugs)A peptidomimetic protease inhibitor formulated as the mesylate for oral use.

Saquinavir: Oral: Capsules, liquid-filled, 200 mg, Fortovase Softgel (with povidone), Roche|Saquinavir Mesylate: Oral: Capsules, 200 mg (of saquinavir), Invirase, Roche

Analyte: saquinavir mesylate; matrix: chemical identification; procedure: infrared absorption spectrophotometry with comparison to standards /saquinavir mesylate/|Analyte: saquinavir mesylate; matrix: chemical identification; procedure: ultraviolet absorption spectrophotometry with comparison to standards /saquinavir mesylate/|Analyte: saquinavir mesylate; matrix: chemical identification; procedure: retention time of liquid chromatogram with comparison to standards /saquinavir mesylate/|Analyte: saquinavir mesylate; matrix: chemical purity; procedure: liquid chromatography with detection at 210 nm and comparison to standards /saquinavir mesylate/|For more Analytic Laboratory Methods (Complete) data for SAQUINAVIR (7 total), please visit the HSDB record page.

Human drugs -> Invirase -> EMA Drug Category|Antivirals for systemic use -> Human pharmacotherapeutic group|Human drugs -> Fortovase -> EMA Drug Category|Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients

Computed Properties

Molecular Weight:670.8
XLogP3:4.2
Hydrogen Bond Donor Count:5
Hydrogen Bond Acceptor Count:7
Rotatable Bond Count:13
Exact Mass:670.38426872
Monoisotopic Mass:670.38426872
Topological Polar Surface Area:167
Heavy Atom Count:49
Complexity:1140
Defined Atom Stereocenter Count:6
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

Recommended Suppliers of Saquinavir

Scan the QR Code to Share

Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.