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Pharmacological Properties of Trichostatin A Focusing on the Anticancer Potential: A Comprehensive Review

机译:曲古抑菌素 A 的药理学特性专注于抗癌潜力:综合综述

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摘要

Trichostatin A (TSA), a natural derivative of dienohydroxamic acid derived from a fungal metabolite, exhibits various biological activities. It exerts antidiabetic activity and reverses high glucose levels caused by the downregulation of brain-derived neurotrophic factor (BDNF) expression in Schwann cells, anti-inflammatory activity by suppressing the expression of various cytokines, and significant antioxidant activity by suppressing oxidative stress through multiple mechanisms. Most importantly, TSA exhibits potent inhibitory activity against different types of cancer through different pathways. The anticancer activity of TSA appeared in many in vitro and in vivo investigations that involved various cell lines and animal models. Indeed, TSA exhibits anticancer properties alone or in combination with other drugs used in chemotherapy. It induces sensitivity of some human cancers toward chemotherapeutical drugs. TSA also exhibits its action on epigenetic modulators involved in cell transformation, and therefore it is considered an epidrug candidate for cancer therapy. Accordingly, this work presents a comprehensive review of the most recent developments in utilizing this natural compound for the prevention, management, and treatment of various diseases, including cancer, along with the multiple mechanisms of action. In addition, this review summarizes the most recent and relevant literature that deals with the use of TSA as a therapeutic agent against various diseases, emphasizing its anticancer potential and the anticancer molecular mechanisms. Moreover, TSA has not been involved in toxicological effects on normal cells. Furthermore, this work highlights the potential utilization of TSA as a complementary or alternative medicine for preventing and treating cancer, alone or in combination with other anticancer drugs.
机译:曲古抑菌素 A (TSA) 是源自真菌代谢物的二硝基异肟酸的天然衍生物,具有多种生物活性。它发挥抗糖尿病活性并逆转雪旺细胞中脑源性神经营养因子 (BDNF) 表达下调引起的高葡萄糖水平,通过抑制各种细胞因子的表达来发挥抗炎活性,并通过多种机制抑制氧化应激来发挥显着的抗氧化活性。最重要的是,TSA 通过不同的途径对不同类型的癌症表现出有效的抑制活性。TSA 的抗癌活性出现在涉及各种细胞系和动物模型的许多体外和体内研究中。事实上,TSA 单独或与化疗中使用的其他药物联合使用都表现出抗癌特性。它诱导一些人类癌症对化疗药物的敏感性。TSA 还对参与细胞转化的表观遗传调节剂起作用,因此被认为是癌症治疗的表观药物候选药物。因此,这项工作全面回顾了利用这种天然化合物预防、管理和治疗包括癌症在内的各种疾病的最新进展,以及多种作用机制。此外,本综述总结了使用 TSA 作为治疗剂治疗各种疾病的最新和相关文献,强调了其抗癌潜力和抗癌分子机制。此外,TSA 尚未参与对正常细胞的毒理学影响。此外,这项工作强调了 TSA 作为单独或与其他抗癌药物联合预防和治疗癌症的补充或替代药物的潜在用途。

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