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多靶标药物设计治疗复杂疾病面临的挑战是什么?

What are the challenges with multi-targeted drug design for complex diseases?

机构信息

Department of Synthesis and Chemical Technology of Pharmaceutical Substances with Computer Modeling Laboratory, Faculty of Pharmacy, Medical University of Lublin, Lublin, Poland.

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

出版信息

Expert Opin Drug Discov. 2022 Jul;17(7):673-683. doi: 10.1080/17460441.2022.2072827. Epub 2022 May 12.

Abstract

INTRODUCTION

Current findings on multifactorial diseases with a complex pathomechanism confirm that multi-target drugs are more efficient ways in treating them as opposed to single-target drugs. However, to design multi-target ligands, a number of factors and challenges must be taken into account.

AREAS COVERED

In this perspective, we summarize the concept of application of multi-target drugs for the treatment of complex diseases such as neurodegenerative diseases, schizophrenia, diabetes, and cancer. We discuss the aspects of target selection for multifunctional ligands and the application of methods in their design and optimization. Furthermore, we highlight other challenges such as balancing affinities to different targets and drug-likeness of obtained compounds. Finally, we present success stories in the design of multi-target ligands for the treatment of common complex diseases.

EXPERT OPINION

Despite numerous challenges resulting from the design of multi-target ligands, these efforts are worth making. Appropriate target selection, activity balancing, and ligand drug-likeness belong to key aspects in the design of ligands acting on multiple targets. It should be emphasized that methods, in particular inverse docking, pharmacophore modeling, machine learning methods and approaches derived from network pharmacology are valuable tools for the design of multi-target drugs.

摘要

简介

目前针对具有复杂发病机制的多因素疾病的研究结果证实,多靶点药物在治疗这些疾病方面比单靶点药物更有效。然而,要设计多靶点配体,必须考虑许多因素和挑战。

涵盖领域

在这篇观点文章中,我们总结了多靶点药物在治疗神经退行性疾病、精神分裂症、糖尿病和癌症等复杂疾病方面的应用概念。我们讨论了多功能配体的靶标选择以及这些方法在设计和优化中的应用。此外,我们还强调了其他挑战,如平衡对不同靶标的亲和力和获得化合物的类药性。最后,我们介绍了设计用于治疗常见复杂疾病的多靶点配体的成功案例。

专家意见

尽管多靶点配体的设计带来了许多挑战,但这些努力是值得的。适当的靶标选择、活性平衡和配体的类药性是设计作用于多个靶标的配体的关键方面。应该强调的是,基于配体的方法、特别是反向对接、药效基团模型、机器学习方法和网络药理学衍生的方法是设计多靶点药物的有价值的工具。

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