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关于具有重要药用价值的杂环化合物以及生物物理方法在揭示生物环境中内在作用机制方面的重要性的综述。

A review on medicinally important heterocyclic compounds and importance of biophysical approach of underlying the insight mechanism in biological environment.

作者信息

Karthikeyan Subramani, Grishina Maria, Kandasamy Saravanan, Mangaiyarkarasi Rajendiran, Ramamoorthi Anitha, Chinnathambi Shanmugavel, Pandian Ganesh N, John Kennedy L

机构信息

Division of Physics, School of Advanced Sciences, Vellore Institute of Technology University, Chennai, India.

Centre for Healthcare Advancement, Innovation and Research, Vellore Institute of Technology University, Chennai, India.

出版信息

J Biomol Struct Dyn. 2023;41(23):14599-14619. doi: 10.1080/07391102.2023.2187640. Epub 2023 Mar 13.

Abstract

Heterocyclic derivatives have more interesting biological properties which hold a remarkable place in pharmaceutical industries due to their unique physiochemical properties and ease of adaption in various biological environments. Of many, the above-said derivatives have been recently examined for their promising action against a few malignancies. Specifically, anti-cancer research has benefited from these derivatives' natural flexibility and dynamic core scaffold. In any case, concerning some other promising anti-cancer drugs, heterocyclic derivative doesn't come without deficiencies. To be a successful drug candidate it should poses Absorption, Distribution, Metabolism and Eliminations (ADME) parameter, and must also have good binding interaction towards carrier protein as well as DNA and less in toxic nature, economically feasible. In this review, we described the overview of biologically important heterocyclic derivatives and their main application in medicine. Further, we focus types of biophysical techniques to understand the binding interaction mechanism.Communicated by Ramaswamy H. Sarma.

摘要

杂环衍生物具有更有趣的生物学特性,由于其独特的物理化学性质以及易于适应各种生物环境,在制药行业中占据着显著地位。其中,上述衍生物最近已被研究其对一些恶性肿瘤的潜在作用。具体而言,抗癌研究受益于这些衍生物的天然灵活性和动态核心支架。然而,与其他一些有前景的抗癌药物相比,杂环衍生物并非没有缺陷。要成为成功的候选药物,它应具备吸收、分布、代谢和排泄(ADME)参数,还必须与载体蛋白以及DNA具有良好的结合相互作用,毒性较小,经济上可行。在本综述中,我们描述了具有生物学重要性的杂环衍生物的概述及其在医学中的主要应用。此外,我们重点介绍了用于理解结合相互作用机制的生物物理技术类型。由拉马斯瓦米·H·萨尔马传达。

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