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C-3脱氧桦木酸和脱氧桦木醇的C-3苯甲酸衍生物作为HIV-1成熟抑制剂。

C-3 benzoic acid derivatives of C-3 deoxybetulinic acid and deoxybetulin as HIV-1 maturation inhibitors.

作者信息

Liu Zheng, Swidorski Jacob J, Nowicka-Sans Beata, Terry Brian, Protack Tricia, Lin Zeyu, Samanta Himadri, Zhang Sharon, Li Zhufang, Parker Dawn D, Rahematpura Sandhya, Jenkins Susan, Beno Brett R, Krystal Mark, Meanwell Nicholas A, Dicker Ira B, Regueiro-Ren Alicia

机构信息

Department of Discovery Chemistry, Bristol-Myers Squibb Research and Development, 5 Research Parkway, Wallingford, CT 06492, USA.

Department of Discovery Chemistry, Bristol-Myers Squibb Research and Development, 5 Research Parkway, Wallingford, CT 06492, USA.

出版信息

Bioorg Med Chem. 2016 Apr 15;24(8):1757-70. doi: 10.1016/j.bmc.2016.03.001. Epub 2016 Mar 2.

Abstract

A series of C-3 phenyl- and heterocycle-substituted derivatives of C-3 deoxybetulinic acid and C-3 deoxybetulin was designed and synthesized as HIV-1 maturation inhibitors (MIs) and evaluated for their antiviral activity and cytotoxicity in cell culture. A 4-subsituted benzoic acid moiety was identified as an advantageous replacement for the 3'3'-dimethylsuccinate moiety present in previously disclosed MIs that illuminates new aspects of the topography of the pharmacophore. The new analogs exhibit excellent in vitro antiviral activity against wild-type (wt) virus and a lower serum shift when compared with the prototypical HIV-1 MI bevirimat (1, BVM), the first MI to be evaluated in clinical studies. Compound 9a exhibits comparable cell culture potency toward wt virus as 1 (WT EC50=16 nM for 9a compared to 10nM for 1). However, the potency of 9a is less affected by the presence of human serum, while the compound displays a similar pharmacokinetic profile in rats to 1. Hence 9a, the 4-benzoic acid derivative of deoxybetulinic acid, represents a new starting point from which to explore the design of a 2nd generation MI.

摘要

设计并合成了一系列C-3脱氧桦木酸和C-3脱氧桦木醇的C-3苯基和杂环取代衍生物,作为HIV-1成熟抑制剂(MIs),并在细胞培养中评估了它们的抗病毒活性和细胞毒性。已确定4-取代苯甲酸部分是先前公开的MIs中存在的3'3'-二甲基琥珀酸部分的有利替代物,这揭示了药效团拓扑结构的新方面。与首个在临床研究中评估的HIV-1 MI比维那韦(1,BVM)相比,新类似物对野生型(wt)病毒表现出优异的体外抗病毒活性和更低的血清变化。化合物9a对wt病毒的细胞培养效力与1相当(9a的WT EC50 = 16 nM,而1为10 nM)。然而,9a的效力受人血清存在的影响较小,同时该化合物在大鼠中的药代动力学特征与1相似。因此,脱氧桦木酸的4-苯甲酸衍生物9a代表了探索第二代MI设计的新起点。

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