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设计、合成与评价分子靶向型缺氧激活前药。

Design, synthesis and evaluation of molecularly targeted hypoxia-activated prodrugs.

机构信息

Department of Chemistry, Chemistry Research Laboratory, University of Oxford, Oxford, UK.

Department of Oncology, Cancer Research UK (CRUK)/Medical Research Council (MRC) Institute for Radiation Oncology, University of Oxford, Oxford, UK.

出版信息

Nat Protoc. 2016 Apr;11(4):781-94. doi: 10.1038/nprot.2016.034. Epub 2016 Mar 24.

Abstract

Regions of insufficient oxygen supply-hypoxia-occur in diverse contexts across biology in both healthy and diseased organisms. The difference in the chemical environment between a hypoxic biological system and one with normal oxygen levels provides an opportunity for targeting compound delivery to hypoxic regions by using bioreductive prodrugs. Here we detail a protocol for the efficient synthesis of (1-methyl-2-nitro-1H-imidazol-5-yl)methanol, which is a key intermediate that can be converted into a range of 1-methyl-2-nitro-1H-imidazole-based precursors of bioreductive prodrugs. We outline methods for attaching the bioreductive group to a range of functionalities, and we discuss the strategy for positioning of the group on the biologically active parent compound. We have used two parent checkpoint kinase 1 (Chk1) inhibitors to exemplify the protocol. The PROCEDURE also describes a suite of reduction assays, of increasing biological relevance, to validate the bioreductive prodrug. These assays are applied to an exemplar compound, CH-01, which is a bioreductive Chk1 inhibitor. This protocol has broad applications to the development of hypoxia-targeted compounds.

摘要

在健康和患病的生物体内,各种生物学背景下都会出现供氧不足的区域,即缺氧。缺氧生物系统与正常氧水平的生物系统之间的化学环境差异为利用还原生物前药靶向缺氧区域的化合物递送提供了机会。本研究详细介绍了(1-甲基-2-硝基-1H-咪唑-5-基)甲醇的高效合成方案,这是一种关键的中间产物,可以转化为一系列还原生物前药的 1-甲基-2-硝基-1H-咪唑基前体。我们概述了将还原生物基团连接到一系列官能团的方法,并讨论了在具有生物活性的母体化合物上定位基团的策略。我们使用了两种母体细胞周期蛋白依赖性激酶 1(Chk1)抑制剂来举例说明该方案。该方案还描述了一系列还原测定,这些测定的生物学相关性逐渐增强,以验证还原生物前药。这些测定应用于一个代表性化合物 CH-01,这是一种还原型 Chk1 抑制剂。该方案广泛适用于开发缺氧靶向化合物。

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