探索噻吩衍生物:合成策略和生物学意义

IF 1.9 4区 医学 Q3 CHEMISTRY, MEDICINAL
Isha Mishra, Vikram Sharma, Nitin Kumar, Gaurav Krishna, Vandana Arora Sethi, Ravi Mittal, Prashant K. Dhakad, Raghav Mishra
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引用次数: 0

摘要

目的:噻吩是最重要的杂环支架之一,具有显著的药理特性。在含硫杂环中,噻吩及其衍生物尤其令人感兴趣,因为它们与许多具有鉴定潜力的天然和合成化合物相似。本研究的目的是广泛分析合成噻吩衍生物所采用的合成途径,并研究它们的各种生物功能。方法:对现有文献进行了全面审查,以收集与合成噻吩衍生物的方法有关的数据。我们在相关数据库中进行了全面搜索,包括 2024 年发表的作品。确定并整理了各种合成程序,其中既包括格瓦尔德反应等传统方法,也包括微波辅助合成和绿色合成等现代方法。此外,还对体外和体内研究进行了全面汇编,以研究 50 种不同噻吩衍生物的生物效应。研究的主要重点是各种活性,如抗癌、抗炎、抗原虫、抗菌、抗氧化和抗病毒功能。研究结果合成噻吩衍生物的方法多种多样,既有传统方法,也有现代方法。此外,还对噻吩衍生物的生物潜力进行了研究,结果表明噻吩衍生物具有广泛的作用。通过对结构-活性关系的研究,明确了生物活性所需的关键结构元素。结论:噻吩衍生物的生物潜力和灵活的合成途径使其成为药物化学中极具吸引力的候选化合物。了解噻吩衍生物的不同合成方法和生物作用有助于合理设计和创造治疗各种疾病的新方法。进一步探索和优化这些化合物对于下一步的药物开发计划具有相当大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Thiophene Derivatives: Synthesis Strategies and Biological Significance
Objectives: Thiophene is one of the most important heterocyclic scaffolds with notable pharmacological properties. Thiophene and its derivatives are of particular interest among sulphurcontaining heterocycles because of their similarities to numerous natural and synthetic compounds with identified potential. The purpose of this study is to extensively analyse the synthetic pathways adopted for synthesising thiophene derivatives and investigate their various biological functions. Methods: A comprehensive review of the existing literature was conducted to collect data pertaining to the methods that are employed for the synthesis of thiophene derivatives. A comprehensive search was carried out through relevant databases, including work published in 2024. A variety of synthesis procedures were identified and arranged, encompassing both traditional approaches like the Gewald reaction and contemporary ones like microwave-assisted synthesis and green synthesis. In addition, a comprehensive compilation of in vitro and in vivo studies was conducted to investigate the biological effects of 50 distinct thiophene derivatives. The primary focus of the studies was on various activities such as anti-cancer, anti-inflammatory, antiprotozoal, antibacterial, antioxidant, and antiviral functions. Results: Diverse methodologies have been employed in the synthesis of thiophene derivatives, encompassing both conventional and modern methods. Furthermore, the biological potential of thiophene derivatives was investigated, demonstrating a broad range of actions. Key structural elements necessary for biological activity were clarified by investigations of the structure-activity relationship. Conclusion: The biological potential and flexible synthesis pathways of thiophene derivatives make them attractive candidates for use in medicinal and pharmaceutical chemistry. Understanding the different synthesis methods and biological actions of thiophene derivatives may assist rational design and create novel treatments for a variety of conditions. The potential for these compounds to be further explored and optimised is considerable for the next drug development initiatives.
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来源期刊
Medicinal Chemistry
Medicinal Chemistry 医学-医药化学
CiteScore
4.30
自引率
4.30%
发文量
109
审稿时长
12 months
期刊介绍: Aims & Scope Medicinal Chemistry a peer-reviewed journal, aims to cover all the latest outstanding developments in medicinal chemistry and rational drug design. The journal publishes original research, mini-review articles and guest edited thematic issues covering recent research and developments in the field. Articles are published rapidly by taking full advantage of Internet technology for both the submission and peer review of manuscripts. Medicinal Chemistry is an essential journal for all involved in drug design and discovery.
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