229975-97-7
Chemical Structure
Atazanavir sulfate
Synonym(s): BMS-232632 sulfate
- CAS No.: 229975-97-7
- Formula:C38H54N6O11S
- Molecular Weight:802.93
IUPAC Name: methyl ((5S,8S,9S,14S)-8-benzyl-5-(tert-butyl)-9-hydroxy-15,15-dimethyl-3,6,13-trioxo-11-(4-(pyridin-2-yl)benzyl)-2-oxa-4,7,11,12-tetraazahexadecan-14-yl)carbamate sulfate
InChIKey: DQSGVVGOPRWTKI-QVFAWCHISA-N
SMILES: O=C(OC)N[C@@H](C(C)(C)C)C(NN(CC1=CC=C(C2=NC=CC=C2)C=C1)C[C@H](O)[C@H](CC3=CC=CC=C3)NC([C@H](C(C)(C)C)NC(OC)=O)=O)=O.O=S(O)(O)=O
Biological Activity: Atazanavir (BMS-232632) sulfate is a highly selective and orally active HIV-1 protease inhibitor with blood-brain barrier permeability. Atazanavir sulfate is a substrate and inhibitor of CYP3A4, and an inhibitor of P-glycoprotein (P-gp). Atazanavir sulfate is also a SARS-CoV 3CLpro inhibitor with an IC50 of 3.49 μM. Atazanavir sulfate inhibits cardiac fibrosis, hyperlipidemia and induces malignant glioma death[1][2][3][4][5][6][7][8][9].
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Atazanavir sulfate | 99.68% | Atazanavir (BMS-232632) sulfate is a highly selective and orally active HIV-1 protease inhibitor with blood-brain barrier permeability. Atazanavir sulfate is a substrate and inhibitor of CYP3A4, and an inhibitor of P-glycoprotein (P-gp). Atazanavir sulfate is also a SARS-CoV 3CLpro inhibitor with an IC50 of 3.49 μM. Atazanavir sulfate inhibits cardiac fibrosis, hyperlipidemia and induces malignant glioma death. | ||||||||||||||||||||
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Atazanavir sulfate (Standard) | ≥98% | Atazanavir (sulfate) (Standard) is the analytical standard of Atazanavir (sulfate). This product is intended for research and analytical applications. Atazanavir (BMS-232632) sulfate, a highly selective HIV-1 protease inhibitor, is the first protease inhibitor approved for once-daily administration. Atazanavir sulfate is a substrate and inhibitor of CYP3A4, and an inhibitor and inducer of P-glycoprotein (P-gp). Atazanavir sulfate is also a SARS-CoV 3CLpro inhibitor with an IC50 of 3.49 μM. | ||||||||||||||||||||
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- [1]. Havlir DV, et al. Atazanavir: new option for treatment of HIV infection. Clin Infect Dis. 2004 Jun 1;38(11):1599-604. [Content Brief]
- [2]. Wood R. Atazanavir: its role in HIV treatment. Expert Rev Anti Infect Ther. 2008 Dec;6(6):785-96. [Content Brief]
- [3]. Qi Sun, et al. Bardoxolone and bardoxolone methyl, two Nrf2 activators in clinical trials, inhibit SARS-CoV-2 replication and its 3C-like protease. Signal Transduct Target Ther. 2021 May 29;6(1):212. [Content Brief]
- [4]. Zhang G, et al. Long-term oral atazanavir attenuates myocardial infarction-induced cardiac fibrosis. Eur J Pharmacol. 2018 Jun 5;828:97-102. [Content Brief]
- [5]. Fukushima K, et al. Effect of serum lipids on the pharmacokinetics of atazanavir in hyperlipidemic rats. Biomed Pharmacother. 2009 Nov;63(9):635-42. [Content Brief]
- [6]. Pyrko P, et al. HIV-1 protease inhibitors nelfinavir and atazanavir induce malignant glioma death by triggering endoplasmic reticulum stress. Cancer Res. 2007 Nov 15;67(22):10920-8. [Content Brief]
- [7]. Alomar FA, et al. Efavirenz, atazanavir, and ritonavir disrupt sarcoplasmic reticulum Ca2+ homeostasis in skeletal muscles. Antiviral Res. 2021 Mar;187:104975. [Content Brief]
- [8]. Robillard KR, et al. Role of P-glycoprotein in the distribution of the HIV protease inhibitor atazanavir in the brain and male genital tract. Antimicrob Agents Chemother. 2014;58(3):1713-22. [Content Brief]
- [9]. Bousquet L, et al. Comparison of ABC transporter modulation by atazanavir in lymphocytes and human brain endothelial cells: ABC transporters are involved in the atazanavir-limited passage across an in vitro human model of the blood-brain barrier. AIDS Res Hum Retroviruses. 2008 Sep;24(9):1147-54. [Content Brief]