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合成和结构活性关系的氮杂大环 C-X-C 趋化因子受体 4 拮抗剂:含有单个氮杂大环的类似物是 T 细胞趋向性(X4)HIV-1 复制的有效抑制剂。

Synthesis and structure-activity relationships of azamacrocyclic C-X-C chemokine receptor 4 antagonists: analogues containing a single azamacrocyclic ring are potent inhibitors of T-cell tropic (X4) HIV-1 replication.

机构信息

AnorMED Inc. now Genzyme Corporation, 500 Kendall Street, Cambridge, Massachusetts 02142, USA.

出版信息

J Med Chem. 2010 Feb 11;53(3):1250-60. doi: 10.1021/jm901530b.

Abstract

Bis-tetraazamacrocycles such as the bicyclam AMD3100 (1) are a class of potent and selective anti-HIV-1 agents that inhibit virus replication by binding to the chemokine receptor CXCR4, the coreceptor for entry of X4 viruses. By sequential replacement and/or deletion of the amino groups within the azamacrocyclic ring systems, we have determined the minimum structural features required for potent antiviral activity in this class of compounds. All eight amino groups are not required for activity, the critical amino groups on a per ring basis are nonidentical, and the overall charge at physiological pH can be reduced without compromising potency. This approach led to the identification of several single ring azamacrocyclic analogues such as AMD3465 (3d), 36, and 40, which exhibit EC(50)'s against the cytopathic effects of HIV-1 of 9.0, 1.0, and 4.0 nM, respectively, antiviral potencies that are comparable to 1 (EC(50) against HIV-1 of 4.0 nM). More importantly, however, the key structural elements of 1 required for antiviral activity may facilitate the design of nonmacrocyclic CXCR4 antagonists suitable for HIV treatment via oral administration.

摘要

双四氮大环化合物,如 bicyclam AMD3100(1),是一类强效且选择性的抗 HIV-1 药物,通过与趋化因子受体 CXCR4 结合,抑制病毒复制,CXCR4 是 X4 病毒进入的辅助受体。通过对氮杂大环环系统内的氨基进行顺序替换和/或缺失,我们确定了此类化合物中具有强效抗病毒活性所需的最小结构特征。并非所有八个氨基都需要具有活性,每个环上的关键氨基是不同的,而且在生理 pH 值下可以降低整体电荷而不影响效力。这种方法导致了几种单环氮杂大环类似物的鉴定,如 AMD3465(3d)、36 和 40,它们对 HIV-1 细胞病变效应的 EC50 分别为 9.0、1.0 和 4.0 nM,抗病毒效力与 1 相当(对 HIV-1 的 EC50 为 4.0 nM)。然而,更重要的是,1 具有抗病毒活性所需的关键结构要素可能有助于设计适合通过口服给药治疗 HIV 的非大环 CXCR4 拮抗剂。

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