In silico approaches supporting drug repurposing for Leishmaniasis: a scoping review.

IF 3.8 3区 生物学 Q1 BIOLOGY EXCLI Journal Pub Date : 2024-09-03 eCollection Date: 2024-01-01 DOI:10.17179/excli2024-7552
Gustavo Scheiffer, Karime Zeraik Abdalla Domingues, Daniela Gorski, Alexandre de Fátima Cobre, Raul Edison Luna Lazo, Helena Hiemisch Lobo Borba, Luana Mota Ferreira, Roberto Pontarolo
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Abstract

The shortage of treatment options for leishmaniasis, especially those easy to administer and viable for deployment in the world's poorest regions, highlights the importance of employing these strategies to cost-effectively investigate repurposing candidates. This scoping review aims to map the studies using in silico methodologies for drug repurposing against leishmaniasis. This study followed JBI recommendations for scoping reviews. Articles were searched on PubMed, Scopus, and Web of Science databases using keywords related to leishmaniasis and in silico methods for drug discovery, without publication date restrictions. The selection was based on primary studies involving computational methods for antileishmanial drug repurposing. Information about methodologies, obtained data, and outcomes were extracted. After the full-text appraisal, 34 studies were included in this review. Molecular docking was the preferred method for evaluating repurposing candidates (n=25). Studies reported 154 unique ligands and 72 different targets, sterol 14-alpha demethylase and trypanothione reductase being the most frequently reported. In silico screening was able to correctly pinpoint some known active pharmaceutical classes and propose previously untested drugs. Fifteen drugs investigated in silico exhibited low micromolar inhibition (IC50 < 10 µM) of Leishmania spp. in vitro. In conclusion, several in silico repurposing candidates are yet to be investigated in vitro and in vivo. Future research could expand the number of targets screened and employ advanced methods to optimize drug selection, offering new starting points for treatment development. See also the graphical abstract(Fig. 1).

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支持利什曼病药物再设计的硅学方法:范围综述。
利什曼病治疗方案的短缺,尤其是那些易于施用且可用于世界最贫困地区的治疗方案的短缺,凸显了采用这些策略对候选药物进行具有成本效益的再利用研究的重要性。本范围综述旨在对使用硅学方法对利什曼病进行药物再利用的研究进行梳理。本研究遵循了 JBI 关于范围界定综述的建议。在 PubMed、Scopus 和 Web of Science 数据库中使用与利什曼病和药物发现的硅学方法相关的关键词对文章进行了检索,没有出版日期限制。选择的依据是涉及抗利什曼病药物再利用计算方法的主要研究。提取了有关方法、获得的数据和结果的信息。经过全文评估,34 项研究被纳入本综述。分子对接是评估再利用候选药物的首选方法(n=25)。研究报告了154种独特的配体和72个不同的靶点,其中甾醇14-α去甲基化酶和胰硫蛋白还原酶是最常见的靶点。硅学筛选能够正确确定一些已知的活性药物类别,并提出以前未曾测试过的药物。硅学研究的 15 种药物在体外对利什曼原虫属的抑制作用较低(IC50 < 10 µM)。总之,有几种硅学再利用候选药物还有待在体外和体内进行研究。未来的研究可以扩大筛选靶点的数量,并采用先进的方法优化药物选择,为治疗开发提供新的起点。另见图表摘要(图 1)。
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来源期刊
EXCLI Journal
EXCLI Journal BIOLOGY-
CiteScore
8.00
自引率
2.20%
发文量
65
审稿时长
6-12 weeks
期刊介绍: EXCLI Journal publishes original research reports, authoritative reviews and case reports of experimental and clinical sciences. The journal is particularly keen to keep a broad view of science and technology, and therefore welcomes papers which bridge disciplines and may not suit the narrow specialism of other journals. Although the general emphasis is on biological sciences, studies from the following fields are explicitly encouraged (alphabetical order): aging research, behavioral sciences, biochemistry, cell biology, chemistry including analytical chemistry, clinical and preclinical studies, drug development, environmental health, ergonomics, forensic medicine, genetics, hepatology and gastroenterology, immunology, neurosciences, occupational medicine, oncology and cancer research, pharmacology, proteomics, psychiatric research, psychology, systems biology, toxicology
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