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被忽视的热带病:利用化学生物信息学方法从生物多样性中发现抗利什曼原虫和锥虫药物。

Neglected Tropical Diseases: A Chemoinformatics Approach for the Use of Biodiversity in Anti-Trypanosomatid Drug Discovery.

机构信息

Laboratory of Medicinal and Computational Chemistry (LQMC), Center for Research and Innovation in Biodiversity and Drug Discovery (CIBFar), Institute of Physics of Sao Carlos, University of Sao Paulo (USP), Av. Joao Dagnone, n° 1100, Sao Carlos 13563-120, SP, Brazil.

School of Pharmaceutical Sciences of Ribeirao Preto (FCFRP), University of Sao Paulo (USP), Avenida Professor Doutor Zeferino Vaz, s/n, Ribeirao Preto 14040-903, SP, Brazil.

出版信息

Biomolecules. 2024 Aug 20;14(8):1033. doi: 10.3390/biom14081033.

Abstract

The development of new treatments for neglected tropical diseases (NTDs) remains a major challenge in the 21st century. In most cases, the available drugs are obsolete and have limitations in terms of efficacy and safety. The situation becomes even more complex when considering the low number of new chemical entities (NCEs) currently in use in advanced clinical trials for most of these diseases. Natural products (NPs) are valuable sources of hits and lead compounds with privileged scaffolds for the discovery of new bioactive molecules. Considering the relevance of biodiversity for drug discovery, a chemoinformatics analysis was conducted on a compound dataset of NPs with anti-trypanosomatid activity reported in 497 research articles from 2019 to 2024. Structures corresponding to different metabolic classes were identified, including terpenoids, benzoic acids, benzenoids, steroids, alkaloids, phenylpropanoids, peptides, flavonoids, polyketides, lignans, cytochalasins, and naphthoquinones. This unique collection of NPs occupies regions of the chemical space with drug-like properties that are relevant to anti-trypanosomatid drug discovery. The gathered information greatly enhanced our understanding of biologically relevant chemical classes, structural features, and physicochemical properties. These results can be useful in guiding future medicinal chemistry efforts for the development of NP-inspired NCEs to treat NTDs caused by trypanosomatid parasites.

摘要

开发治疗被忽视的热带病(NTDs)的新疗法仍然是 21 世纪的主要挑战。在大多数情况下,现有的药物已经过时,在疗效和安全性方面存在局限性。当考虑到目前大多数这些疾病的高级临床试验中使用的新化学实体(NCEs)数量较少时,情况变得更加复杂。天然产物(NPs)是具有特权支架的命中和先导化合物的宝贵来源,可用于发现新的生物活性分子。考虑到生物多样性对于药物发现的重要性,对 2019 年至 2024 年的 497 篇研究文章中报道的具有抗原生动物活性的 NPs 化合物数据集进行了化学信息学分析。确定了不同代谢类别的结构,包括萜类、苯甲酸、苯并类、甾体、生物碱、苯丙素、肽、类黄酮、聚酮、木脂素、细胞松弛素和萘醌。这些独特的 NPs 集合占据了具有药物样特性的化学空间区域,这些特性与抗原生动物药物发现相关。收集到的信息极大地提高了我们对生物相关化学类别的理解,包括结构特征和物理化学性质。这些结果可用于指导未来的药物化学努力,以开发基于 NPs 的 NCEs 来治疗由原生动物寄生虫引起的 NTDs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14e4/11352992/cec5d4e853bc/biomolecules-14-01033-g001.jpg

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