Dhanvanthri Laboratory, Department of Sciences, Amrita School of Physical Sciences, Coimbatore, 641112, Amrita Vishwa Vidyapeetham, India.
Center of Excellence in Advanced Materials & Green Technologies (CoE-AMGT), Amrita School of Engineering, Coimbatore, 641112, Amrita Vishwa Vidyapeetham, India.
ChemMedChem. 2024 Jan 2;19(1):e202300447. doi: 10.1002/cmdc.202300447. Epub 2023 Nov 22.
An overview of pyrroles as distinct scaffolds with therapeutic potential and the significance of pyrrole derivatives for drug development are provided in this article. It lists instances of naturally occurring pyrrole-containing compounds and describes the sources of pyrroles in nature, including plants and microbes. It also explains the many conventional and modern synthetic methods used to produce pyrroles. The key topics are the biological characteristics, pharmacological behavior, and functional alterations displayed by pyrrole derivatives. It also details how pyrroles are used to treat infectious diseases. It describes infectious disorders resistant to standard treatments and discusses the function of compounds containing pyrroles in combating infectious diseases. Furthermore, the review covers the uses of pyrrole derivatives in treating non-infectious diseases and resistance mechanisms in non-infectious illnesses like cancer, diabetes, and Alzheimer's and Parkinson's diseases. The important discoveries and probable avenues for pyrrole research are finally summarized, along with their significance for medicinal chemists and drug development. A reference from the last two decades is included in this review.
本文概述了吡咯作为具有治疗潜力的独特支架,以及吡咯衍生物在药物开发中的重要性。它列出了天然存在的含吡咯化合物的实例,并描述了自然界中吡咯的来源,包括植物和微生物。它还解释了许多用于生产吡咯的传统和现代合成方法。本文的重点是吡咯衍生物的生物学特性、药理学行为和功能改变。它还详细说明了吡咯如何用于治疗传染病。它描述了对抗生素耐药的传染病,并讨论了含吡咯化合物在治疗传染病中的作用。此外,该综述还涵盖了吡咯衍生物在治疗非传染性疾病中的用途以及癌症、糖尿病和阿尔茨海默病和帕金森病等非传染性疾病中的耐药机制。最后总结了吡咯研究的重要发现和可能途径,以及它们对药物化学家的意义和药物开发的意义。本文综述包括过去二十年的参考文献。