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基于抗利什曼原虫和锥虫结构的药物设计——从靶向叶酸代谢途径中获得的经验教训。

Anti-trypanosomatid structure-based drug design - lessons learned from targeting the folate pathway.

机构信息

Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Warsaw, Poland.

School of Pharmacy, University of Eastern Finland, Kuopio, Finland.

出版信息

Expert Opin Drug Discov. 2022 Sep;17(9):1029-1045. doi: 10.1080/17460441.2022.2113776. Epub 2022 Oct 7.

Abstract

INTRODUCTION

Trypanosomatidic parasitic infections in humans and animals caused by , and species pose a significant health and economic burden in developing countries. There are few effective and accessible treatments for these diseases, and the existing therapies suffer from problems, such as parasite resistance and side effects. Structure-based drug design (SBDD) is one of the strategies that has been applied to discover new compounds targeting trypanosomatid-borne diseases.

AREAS COVERED

We review the current literature (mostly over the last 5 years, searched in the PubMed database on 11 November 2021) on the application of structure-based drug design approaches to identify new anti-trypanosomatidic compounds that interfere with a validated target biochemical pathway, the trypanosomatid folate pathway.

EXPERT OPINION

The application of structure-based drug design approaches to perturb the trypanosomatid folate pathway has successfully provided many new inhibitors with good selectivity profiles, most of which are natural products or their derivatives or have scaffolds of known drugs. However, the inhibitory effect against the target protein(s) often does not translate to anti-parasitic activity. Further progress is hampered by our incomplete understanding of parasite biology and biochemistry, which is necessary to complement SBDD in a multiparameter optimization approach to discovering selective anti-parasitic drugs.

摘要

简介

由 和 引起的人体和动物的锥体虫寄生感染给发展中国家的健康和经济带来了重大负担。这些疾病几乎没有有效且可获得的治疗方法,而现有的治疗方法存在寄生虫耐药性和副作用等问题。基于结构的药物设计(SBDD)是一种已应用于发现针对锥体虫病的新化合物的策略。

涵盖领域

我们回顾了基于结构的药物设计方法在鉴定新的抗锥体虫化合物中的应用,这些化合物干扰已验证的靶生化途径——锥体虫叶酸途径的现有文献(主要是过去 5 年的文献,于 2021 年 11 月 11 日在 PubMed 数据库中检索)。

专家意见

基于结构的药物设计方法在干扰锥体虫叶酸途径方面的应用成功地提供了许多具有良好选择性特征的新抑制剂,其中大多数是天然产物或其衍生物,或者具有已知药物的支架。然而,针对靶蛋白的抑制作用往往不能转化为抗寄生虫活性。由于我们对寄生虫生物学和生物化学的了解不完整,进一步的进展受到阻碍,这对于基于多参数优化方法发现选择性抗寄生虫药物的 SBDD 是必要的。

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