Pravin Naik Jui, Kavalapure Rohini S, Alegaon Shankar G, Gharge Shankar, Ranade Shriram D
Department of Pharmaceutical Chemistry, KLE College of Pharmacy, Belagavi, KLE Academy of Higher Education and Research, Belagavi 590 010, Karnataka, India.
Department of Pharmaceutical Chemistry, KLE College of Pharmacy, Belagavi, KLE Academy of Higher Education and Research, Belagavi 590 010, Karnataka, India.
Bioorg Chem. 2025 Jan;154:108092. doi: 10.1016/j.bioorg.2024.108092. Epub 2024 Dec 24.
Indole, a fundamental heterocyclic core, has emerged as a cornerstone in the medicinal chemistry due to its diverse biological activities and structural versatility. This aromatic compound, present in natural as well as synthetic compounds, offers a versatile platform for the drug discovery. By strategically incorporating functional groups or pharmacophores, researchers can tailor indole-derivatives to target a wide range of diseases. This review delves into the multifaceted applications of indole derivatives, highlighting their potential as therapeutic agents for cancer, diabetes, depression, Alzheimer's diseases, Parkinson's disease, etc. emphasizing how indole derivatives can enhance potency and selectivity. By understanding the structure-activity relationship of indole compounds, scientists can develop innovative drug candidates with improved therapeutic profiles. The review highlights the diverse nature of indole-based derivatives along with the structure-activity relationshipThe current review comprehensively covers the advancements and developments in the field over the past seven years, specifically from 2017 to 2024. This timeframe was selected to provide an up-to-date and thorough analysis of recent progress, capturing significant trends, breakthroughs, and emerging insights within the domain. By focusing on this period, the review ensures relevance and highlights the evolving landscape of research, offering a detailed synthesis of key findings and their implications for future studies.
吲哚作为一种基本的杂环核心,因其多样的生物活性和结构多样性,已成为药物化学的基石。这种存在于天然和合成化合物中的芳香族化合物,为药物发现提供了一个多功能平台。通过策略性地引入官能团或药效团,研究人员可以定制吲哚衍生物以靶向多种疾病。本综述深入探讨了吲哚衍生物的多方面应用,强调了它们作为癌症、糖尿病、抑郁症、阿尔茨海默病、帕金森病等治疗药物的潜力,着重阐述了吲哚衍生物如何提高效力和选择性。通过理解吲哚化合物的构效关系,科学家们可以开发出具有改进治疗特性的创新候选药物。该综述突出了基于吲哚的衍生物的多样性以及构效关系。本综述全面涵盖了过去七年(具体为2017年至2024年)该领域的进展和发展。选择这个时间范围是为了对近期进展进行最新且全面的分析,捕捉该领域的重要趋势、突破和新见解。通过聚焦这一时期,该综述确保了相关性,并突出了不断演变的研究格局,提供了关键发现及其对未来研究的影响的详细综合内容。