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筛选刚地弓形虫小分子抑制剂。

Screening for small molecule inhibitors of Toxoplasma gondii.

机构信息

Drexel University College of Medicine, Institute for Molecular Medicine, Department of Microbiology and Immunology, 2900, Queen Lane, PA 19129, USA.

出版信息

Expert Opin Drug Discov. 2012 Dec;7(12):1193-206. doi: 10.1517/17460441.2012.729036. Epub 2012 Sep 24.

Abstract

INTRODUCTION

Toxoplasma gondii, the agent that causes toxoplasmosis, is an opportunistic parasite that infects many mammalian species. It is an obligate intracellular parasite that causes severe congenital neurological and ocular disease mostly in immunocompromised humans. The current regimen of therapy includes only a few medications that often lead to hypersensitivity and toxicity. In addition, there are no vaccines available to prevent the transmission of this agent. Therefore, safer and more effective medicines to treat toxoplasmosis are urgently needed.

AREAS COVERED

The author presents in silico and in vitro strategies that are currently used to screen for novel targets and unique chemotypes against T. gondii. Furthermore, this review highlights the screening technologies and characterization of some novel targets and new chemical entities that could be developed into highly efficacious treatments for toxoplasmosis.

EXPERT OPINION

A number of diverse methods are being used to design inhibitors against T. gondii. These include ligand-based methods, in which drugs that have been shown to be efficacious against other Apicomplexa parasites can be repurposed to identify lead molecules against T. gondii. In addition, structure-based methods use currently available repertoire of structural information in various databases to rationally design small-molecule inhibitors of T. gondii. Whereas the screening methods have their advantages and limitations, a combination of methods is ideally suited to design small-molecule inhibitors of complex parasites such as T. gondii.

摘要

简介

弓形体原虫是弓形体病的病原体,是一种机会性寄生虫,感染许多哺乳动物物种。它是一种专性细胞内寄生虫,主要在免疫功能低下的人类中引起严重的先天性神经和眼部疾病。目前的治疗方案仅包括少数几种药物,这些药物常常导致过敏和毒性。此外,没有可用的疫苗来预防这种病原体的传播。因此,迫切需要更安全、更有效的药物来治疗弓形体病。

涵盖领域

作者介绍了目前用于筛选针对弓形体的新型靶标和独特化学型的计算和体外策略。此外,本综述还强调了一些新型靶标和新化学实体的筛选技术和特征,这些靶标和实体可能开发成针对弓形体病的高效治疗方法。

专家意见

正在使用多种不同的方法来设计针对弓形体的抑制剂。这些方法包括基于配体的方法,其中已经证明对其他顶复门寄生虫有效的药物可以被重新用于鉴定针对弓形体的先导分子。此外,基于结构的方法利用各种数据库中当前可用的结构信息库来合理设计针对弓形体的小分子抑制剂。虽然筛选方法有其优点和局限性,但将多种方法结合起来最适合设计复杂寄生虫(如弓形体)的小分子抑制剂。

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