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抑制人类免疫缺陷病毒复制的亚苯基双(亚甲基)连接的双四氮杂大环化合物的合成及其构效关系。2. 杂芳基连接基对双环胺活性的影响。

Synthesis and structure-activity relationships of phenylenebis(methylene)-linked bis-tetraazamacrocycles that inhibit human immunodeficiency virus replication. 2. Effect of heteroaromatic linkers on the activity of bicyclams.

作者信息

Bridger G J, Skerlj R T, Padmanabhan S, Martellucci S A, Henson G W, Abrams M J, Joao H C, Witvrouw M, De Vreese K, Pauwels R, De Clercq E

机构信息

Johnson Matthey Pharmaceutical Research, West Chester, Pennsylvania 19380, USA.

出版信息

J Med Chem. 1996 Jan 5;39(1):109-19. doi: 10.1021/jm950584t.

Abstract

A series of bicyclam analogs connected through a heteroaromatic linker have been synthesized and evaluated for their inhibitory effects on HIV-1 (IIIB) and HIV-2 (ROD) replication in MT-4 cells. The activity of pyridine- and pyrazine-linked bicyclams was found to be highly dependent upon the substitution of the heteroaromatic linker connecting the cyclam rings. For example, 2,6- and 3,5-pyridine-linked bicyclams were potent inhibitors of HIV-1 and HIV-2 replication, whereas the 2,5- and 2,4-substituted pyridine-linked compounds exhibited substantially reduced activity and, in addition, were found to be highly toxic to MT-4 cells. We have subsequently discovered that these effects are not unique; amino-substituted linkers also have the potential to deactivate phenylenebis(methylene)-linked bicyclams. A model is proposed to explain the deactivating effects of the pyridine group in certain substitution patterns based on the ability of the pyridine nitrogen to participate in pendant conformations (complexation) with the adjacent azamacrocyclic ring, which may involve hydrogen bonding or coordination to a transition metal. The introduction of a sterically hindering group such as phenyl at the 6-position of the 2,4-substituted pyridine-linked bicyclam appears to prevent pendant conformations, providing an analog with comparable anti-HIV-1 and anti-HIV-2 activities to the parent m-phenylenebis(methylene)-linked bicyclam. The results of this study have been used to develop a quantitative structure-activity relationship model with improved predictive capability in order to aid the design of antiviral bis-azamacrocyclic analogs.

摘要

已合成了一系列通过杂芳族连接基相连的双环胺类似物,并评估了它们对MT-4细胞中HIV-1(IIIB)和HIV-2(ROD)复制的抑制作用。发现吡啶和吡嗪连接的双环胺的活性高度依赖于连接环胺环的杂芳族连接基的取代情况。例如,2,6-和3,5-吡啶连接的双环胺是HIV-1和HIV-2复制的有效抑制剂,而2,5-和2,4-取代的吡啶连接的化合物活性显著降低,此外,还发现它们对MT-4细胞具有高毒性。我们随后发现这些效应并非独特;氨基取代的连接基也有可能使亚苯基双(亚甲基)连接的双环胺失活。提出了一个模型来解释基于吡啶氮与相邻氮杂大环环形成侧链构象(络合)的能力(这可能涉及氢键或与过渡金属的配位),某些取代模式下吡啶基团的失活效应。在2,4-取代的吡啶连接的双环胺的6位引入空间位阻基团如苯基似乎可以阻止侧链构象,从而提供一种与母体间亚苯基双(亚甲基)连接的双环胺具有相当抗HIV-1和抗HIV-2活性的类似物。本研究结果已用于建立具有更高预测能力的定量构效关系模型,以辅助抗病毒双氮杂大环类似物的设计。

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