具有体内抗肿瘤潜力的吲哚杂合体的现状。

IF 3.4 4区 医学 Q3 CHEMISTRY, MEDICINAL
Future medicinal chemistry Pub Date : 2025-06-01 Epub Date: 2025-07-16 DOI:10.1080/17568919.2025.2521250
He Ling, Zhu Congcong
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引用次数: 0

摘要

癌症已成为世界各地死亡的主要原因,每年导致约1000万人死亡。抗癌药物在癌症治疗中发挥着关键作用,但它们不能完全满足患者不断升级、多样化和关键的需求,因此迫切需要创新的抗癌化疗药物。吲哚复合物可以同时调节癌细胞内的多个靶点,潜在地解决与单组分治疗相关的耐药和不良事件,同时提高治疗效果和改善药代动力学特性。自2021年以来,各种吲哚杂合体,包括吲哚-唑类、吲哚-查尔酮类、吲哚-磺胺类、吲哚-砜类、吲哚-脲类和吲哚-肼类,已被设计、合成并评估其体内抗肿瘤潜力、代谢稳定性、药代动力学特性、毒性和作用方式。本综述旨在深入了解2021年开始开发的吲哚化合物的体内抗肿瘤治疗潜力,为未来的合理设计铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The current landscape of indole hybrids with in vivo antitumor potential.

Cancer has emerged as a major cause of death throughout the world, leading to around 10 million deaths annually. Anticancer therapeutics play a pivotal role in cancer therapy, but they fail to fully meet the escalating, diverse, and critical needs of patients, underscoring the urgent need for innovative anticancer chemotherapeutics. Indole hybrids can simultaneously modulate multiple targets within cancer cells, potentially addressing drug resistance and adverse events associated with single-component therapies while enhancing therapeutic efficacy and improving pharmacokinetic properties. Diverse indole hybrids, including indole-azoles, indole-chalcones, indole-sulfonamides, indole-sulfones, indole-ureas, and indole-hydrazides, have been designed, synthesized, and evaluated for their in vivo antitumor potential, metabolic stability, pharmacokinetic properties, toxicity, and modes of action since 2021. This review aims to provide insights into the in vivo antitumor therapeutic potential of indole hybrids developed from 2021 to pave the way for future rational design.

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来源期刊
Future medicinal chemistry
Future medicinal chemistry CHEMISTRY, MEDICINAL-
CiteScore
5.80
自引率
2.40%
发文量
118
审稿时长
4-8 weeks
期刊介绍: Future Medicinal Chemistry offers a forum for the rapid publication of original research and critical reviews of the latest milestones in the field. Strong emphasis is placed on ensuring that the journal stimulates awareness of issues that are anticipated to play an increasingly central role in influencing the future direction of pharmaceutical chemistry. Where relevant, contributions are also actively encouraged on areas as diverse as biotechnology, enzymology, green chemistry, genomics, immunology, materials science, neglected diseases and orphan drugs, pharmacogenomics, proteomics and toxicology.
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