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C6-O-烷基化 7-脱氮腺苷核苷类似物:发现强效和选择性抗昏睡病剂。

C6-O-alkylated 7-deazainosine nucleoside analogues: Discovery of potent and selective anti-sleeping sickness agents.

机构信息

Laboratory for Medicinal Chemistry (Campus Heymans), Ghent University, Ottergemsesteenweg 460, B-9000, Gent, Belgium.

Institute of Infection, Immunity and Inflammation, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, G12 8TA, United Kingdom.

出版信息

Eur J Med Chem. 2020 Feb 15;188:112018. doi: 10.1016/j.ejmech.2019.112018. Epub 2020 Jan 3.

Abstract

African trypanosomiasis, a deadly infectious disease caused by the protozoan Trypanosoma brucei spp., is spread to new hosts by bites of infected tsetse flies. Currently approved therapies all have their specific drawbacks, prompting a search for novel therapeutic agents. T. brucei lacks the enzymes necessary to forge the purine ring from amino acid precursors, rendering them dependent on the uptake and interconversion of host purines. This dependency renders analogues of purines and corresponding nucleosides an interesting source of potential anti-T. brucei agents. In this study, we synthesized and evaluated a series of 7-substituted 7-deazainosine derivatives and found that 6-O-alkylated analogues in particular showed highly promising in vitro activity with EC values in the mid-nanomolar range. SAR investigation of the O-alkyl chain showed that antitrypanosomal activity increased, and also cytotoxicity, with alkyl chain length, at least in the linear alkyl chain series. However, this could be attenuated by introducing a terminal branch point, resulting in the highly potent and selective analogues, 36, 37 and 38. No resistance related to transporter-mediated uptake could be identified, earmarking several of these analogues for further in vivo follow-up studies.

摘要

非洲锥虫病是一种由原生动物布氏锥虫属引起的致命传染病,通过受感染的采采蝇叮咬传播给新宿主。目前批准的治疗方法都有其特定的缺点,这促使人们寻找新的治疗药物。布氏锥虫缺乏从氨基酸前体合成嘌呤环所需的酶,使其依赖于摄取和转化宿主嘌呤。这种依赖性使嘌呤类似物和相应的核苷成为潜在抗布氏锥虫药物的有趣来源。在这项研究中,我们合成并评估了一系列 7-取代的 7-脱氮腺苷衍生物,发现特别是 6-O-烷基化类似物表现出非常有前途的体外活性,EC 值在中纳摩尔范围内。对 O-烷基链的 SAR 研究表明,抗锥虫活性随着烷基链长度的增加而增加,同时细胞毒性也增加,至少在直链烷基链系列中是如此。然而,通过引入末端支链点可以减弱这种作用,从而得到高活性和选择性的类似物 36、37 和 38。没有发现与转运体介导的摄取有关的耐药性,这为进一步的体内后续研究指定了几种类似物。

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