Jiang Xiao-Hua, Song Yan-Li, Long Ya-Qiu
State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Shanghai Institutes for Biological Sciences, CAS, 555 Zuchongzhi Road, Shanghai 201203, China.
Bioorg Med Chem Lett. 2004 Jul 16;14(14):3675-8. doi: 10.1016/j.bmcl.2004.05.014.
4-Substituted-4-aminopiperidine is an interesting structural motif found in a number of bioactive compounds. An efficient and convenient method for the synthesis of 4-differently substituted-4-aminopiperidine derivatives was described, employing isonipecotate as a starting material and Curtius rearrangement as a key step. The alkylation of isonipecotate could introduce various substituents at the 4-position of the piperidine ring. With this key building block, we are able to efficiently synthesize piperazino-piperidine based CCR5 antagonist in a highly convergent manner free of using toxic reagents such as diethylaluminum cyanide. The concise synthesis of a potent bioavailable CCR5 antagonist as HIV-1 entry inhibitor, Sch-350634 (1) was accomplished in excellent yield using N'-Boc-4-methyl-4-aminopiperidine 5a as a smart building block. The new methodology provides a facile and practical access to the piperazino-piperidine amide analogs as HIV-1 entry inhibitors.
4-取代-4-氨基哌啶是在许多生物活性化合物中发现的一种有趣的结构基序。描述了一种以异烟酸酯为起始原料,以库尔提斯重排为关键步骤,高效便捷地合成4-不同取代-4-氨基哌啶衍生物的方法。异烟酸酯的烷基化可在哌啶环的4-位引入各种取代基。利用这一关键结构单元,我们能够以高度汇聚的方式高效合成基于哌嗪基哌啶的CCR5拮抗剂,且无需使用有毒试剂如二乙氰基铝。使用N'-Boc-4-甲基-4-氨基哌啶5a作为智能结构单元,以优异的产率完成了作为HIV-1进入抑制剂的强效生物可利用CCR5拮抗剂Sch-350634(1)的简洁合成。新方法为作为HIV-1进入抑制剂的哌嗪基哌啶酰胺类似物提供了一种简便实用的合成途径。