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用于增强药物释放的可激活抗癌前药中的延长多电子级联和环化间隔系统

Elongated multiple electronic cascade and cyclization spacer systems in activatible anticancer prodrugs for enhanced drug release.

作者信息

de Groot F M, Loos W J, Koekkoek R, van Berkom L W, Busscher G F, Seelen A E, Albrecht C, de Bruijn P, Scheeren H W

机构信息

Department of Organic Chemistry, NSR-Center for Molecular Structure, Design and Synthesis, University of Nijmegen, Toernooiveld 1, 6525 ED Nijmegen, The Netherlands.

出版信息

J Org Chem. 2001 Dec 28;66(26):8815-30. doi: 10.1021/jo0158884.

Abstract

The design and synthesis of several novel elongated self-elimination spacer systems for application in prodrugs is described. These elongated spacer systems can be incorporated between a cleavable specifier and the parent drug. Naphthalene- and biphenyl-containing spacers were synthesized but did not eliminate. Prodrugs of the anticancer agents doxorubicin and paclitaxel are reported that contain two or three electronic cascade spacers. A novel catalytic application of HOBt was found for the synthesis of N-aryl carbamates through reacting a 4-nitrophenyl carbonate with an aniline derivative, to connect the 1,6-elimination spacers via a carbamate linkage. In addition, a double spacer-containing paclitaxel prodrug was synthesized, comprising a 1,6-elimination spacer and a bis-amine linker connected to paclitaxel via a 2'-carbamate linkage. Prodrugs in which the novel spacer systems were incorporated between a specific tripeptide specifier and the parent drug doxorubicin or paclitaxel proved to be significantly faster activated by plasmin in comparison with prodrugs containing conventional spacer systems. It is expected that the generally applicable novel spacer systems reported herein will contribute to future development of improved enzymatically activated prodrugs.

摘要

本文描述了几种用于前药的新型细长自消除间隔基系统的设计与合成。这些细长间隔基系统可连接在可裂解指示基团与母体药物之间。合成了含萘和联苯的间隔基,但它们不会发生消除反应。报道了含两个或三个电子级联间隔基的抗癌药物阿霉素和紫杉醇的前药。发现了1-羟基苯并三唑(HOBt)在通过使4-硝基苯基碳酸酯与苯胺衍生物反应合成N-芳基氨基甲酸酯中的一种新的催化应用,以通过氨基甲酸酯键连接1,6-消除间隔基。此外,合成了一种含双间隔基的紫杉醇前药,其包含一个1,6-消除间隔基和一个通过2'-氨基甲酸酯键与紫杉醇相连的双胺连接基。与含传统间隔基系统的前药相比,新型间隔基系统连接在特定三肽指示基团与母体药物阿霉素或紫杉醇之间的前药被纤溶酶激活的速度明显更快。预计本文报道的普遍适用的新型间隔基系统将有助于改进酶促激活前药的未来发展。

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