靶向癌症雌激素受体α(ER-α)的吲哚-查尔酮衍生物的合成和体内研究。

Rahul Charudatta Choudhari, Kamalpreet Kaur, Agnidipta Das, Vikas Jaitak
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引用次数: 0

摘要

背景:癌症是全球女性死亡的主要原因,且发病率日益上升。有许多FDA批准的治疗乳腺癌症的药物。由于耐药性和选择性问题,需要开发出副作用较少的更有效的药物。吲哚衍生物已显示出作为抗乳腺癌症药物的显著药理潜力。此外,结合杂环支架的查尔酮衍生物在医学中发挥着重要作用。吲哚-查尔酮基化合物具有提高生物活性和增强类药物性质的潜力。这促使我们探索合成靶向雌激素受体α(ER-α)的吲哚-Chalcone衍生物,以发现有效的抗癌症药物。目的:合成吲哚醇酮衍生物,并通过分子对接研究其与ER-α蛋白的结合作用,为癌症治疗提供依据。方法:采用常规加热法合成吲哚查尔酮衍生物。在薛定谔软件的帮助下,对这些化合物进行了分子相互作用以及ADME(吸附、分布、代谢和排泄)研究。结果:在所有合成的化合物中,有4个化合物(1、2、3和4)的对接得分(分别为-10.24kcal/mol、-10.15kcal/mol,-9.40kcal/mol和-9.29kcal/mol)优于标准他莫昔芬(-8.43kcal/mol。合成的衍生物的ADME性质在可接受的范围内。在未来,这些化合物可以进一步探索其生物活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, and In-silico Studies of Indole-chalcone Derivatives Targeting Estrogen Receptor Alpha (ER-α) for Breast Cancer.

Background: Breast cancer is the prominent reason of death in women worldwide, and the cases are increasing day by day. There are many FDA-approved drugs for treating breast cancer. Due to drug resistance, and problems in selectivity, there is a need to develop more effective agents with few side effects. Indole derivatives have demonstrated significant pharmacological potential as anti-breast cancer agents. Further, chalcone derivatives incorporating heterocyclic scaffolds play a significant role in medicine. Indole-chalcone-based compounds offer the potential for improved biological activity and enhanced drug-like properties. It prompted us to explore the synthesis of Indole-Chalcone derivatives targeting estrogen receptor alpha (ER-α) to discover potent anti-breast cancer agents.

Objectives: To synthesize indole-chalcone derivatives and study their binding interactions for ER-α protein by molecular docking for breast cancer treatment.

Methods: In this study, indole-chalcone derivatives have been synthesized using conventional heating. With the help of Schrodinger software, molecular interaction as well as ADME (Adsorption, Distribution, Metabolism, and Excretion) studies of the compounds were conducted.

Results: Among all the synthesized compounds, four compounds (1, 2, 3, and 4) showed better docking scores (-10.24 kcal/mol, -10.15 kcal/mol, -9.40 kcal/mol, -9.29 kcal/mol, respectively) than the standard tamoxifen (-8.43 kcal/mol).

Conclusion: From In-silico studies, we can conclude that four compounds from the synthesized series fit into the active site of ER-α. ADME properties of synthesized derivatives were found in the acceptable range. In the future, these compounds can be further explored for biological activity.

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