Madhav Jadhav, Kishori Mali, Vikash Rajput, Rudradip Das, Amit Shard
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This unique isomer of indole, with nitrogen located at a ring fusion position fused to a six-membered benzene ring, has emerged as a potent candidate for anticancer drug development. This review explores the structure-activity relationship (SAR) studies of various indolizine derivatives, highlighting their potential in targeting diverse cancer types. The review comprehensively analyzes the synthetic pathways employed to create potent indolizine derivatives, focusing on methods such as one-pot reactions, domino reactions, and other innovative approaches. Additionally, it critically examines the biological assays used to evaluate the anticancer activity of indolizine derivatives, providing a quantitative understanding of their potency against various cancer cell lines. 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引用次数: 0
摘要
癌症是一个包含多种疾病的术语,其特征是细胞不受控制地生长,从而破坏人体的正常功能。癌症仍然是全球主要的健康问题,每年夺去数百万人的生命。癌症的成因复杂而多面,涉及生活方式选择、遗传和环境因素。由于杂环核心具有良好的药理特性,许多获得 FDA 批准的药物都以其为核心。著名的抗癌药物包括多柔比星、多诺比星、5-氟尿嘧啶、甲氨蝶呤、长春新碱和长春新碱。吲哚利嗪是一种分子式为 C8H7N 的杂环化合物,是药物化学中的一个重要支架。这种独特的吲哚异构体,氮位于与六元苯环融合的环融合位,已成为抗癌药物开发的有效候选化合物。这篇综述探讨了各种吲哚利嗪衍生物的结构-活性关系(SAR)研究,强调了它们在靶向各种癌症类型方面的潜力。综述全面分析了制造强效吲哚利嗪衍生物的合成途径,重点关注一锅反应、多米诺反应和其他创新方法。此外,它还严格审查了用于评估吲哚利嗪衍生物抗癌活性的生物检测方法,提供了对这些衍生物对各种癌细胞系的效力的定量了解。本综述强调了不同的癌症类型,包括乳腺癌、肺癌、肝癌和结直肠癌,强调了吲哚利嗪衍生物的肿瘤治疗意义。
Exploring the decadal evolution of indolizine scaffold for anticancer innovations: a comprehensive analysis
Cancer, a term encompassing a diverse group of diseases, is characterized by uncontrolled cell growth that disrupts normal bodily functions. It remains a major global health concern, claiming millions of lives annually. The causes of cancer are complex and multifaceted, involving lifestyle choices, genetics, and environmental factors. Many FDA-approved drugs feature heterocyclic cores due to their promising pharmacological properties. Notable anticancer agents include doxorubicin, daunorubicin, 5-fluorouracil, methotrexate, vinblastine, and vincristine. Indolizine, a heterocyclic compound with the formula C8H7N, stands out as a privileged scaffold in medicinal chemistry. This unique isomer of indole, with nitrogen located at a ring fusion position fused to a six-membered benzene ring, has emerged as a potent candidate for anticancer drug development. This review explores the structure-activity relationship (SAR) studies of various indolizine derivatives, highlighting their potential in targeting diverse cancer types. The review comprehensively analyzes the synthetic pathways employed to create potent indolizine derivatives, focusing on methods such as one-pot reactions, domino reactions, and other innovative approaches. Additionally, it critically examines the biological assays used to evaluate the anticancer activity of indolizine derivatives, providing a quantitative understanding of their potency against various cancer cell lines. Emphasizing different cancer types, including breast, lung, liver, and colorectal cancer, this review underscores the oncotherapeutic significance of indolizine derivatives.
期刊介绍:
Medicinal Chemistry Research (MCRE) publishes papers on a wide range of topics, favoring research with significant, new, and up-to-date information. Although the journal has a demanding peer review process, MCRE still boasts rapid publication, due in part, to the length of the submissions. The journal publishes significant research on various topics, many of which emphasize the structure-activity relationships of molecular biology.