Therapeutic activities and biological effects of curcumin, as a natural multi-target compound, on human health: A minireview

Fatemeh Paknia, Niloofar Parchami, Negar Nasry, H. Mohabatkar
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引用次数: 2

Abstract

Background and aims: Curcumin or diferuloylmethane is derived from ferulic acid. This herbal compound has a particular chemical structure and various biological/medical properties. The functional groups in the curcumin structure and its analogs are involved in the formation of specific biological activities. This natural compound has high bioactivity, as well as the potential to treat diseases such as cancer, Alzheimer’s, diabetes, and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Considering the spread of infectious diseases and cancers in recent years, as well as an increase in drug resistance and side effects, providing effective and available treatments is necessary. Methods: This review explained the chemical structure of curcumin and covered its biological properties, including anti-inflammation, antioxidant, anti-cancer, neuroprotective, anti-diabetic, and anti-SARS-CoV-2 activities. Scientific databases were studied to gather the required information. Results: Curcumin affected several molecular pathways, including activating transcription factors, cell growth factors, anti-inflammatory agents, protein kinases, cytokines, and apoptotic pathway factors. Thus, it had beneficial therapeutic effects on health. Conclusion: By targeting a wide range of molecular mechanisms, curcumin has the potential to treat various diseases. Knowledge of curcumin’s pharmacological/biological activities and its action mechanisms can enhance the applications of curcumin as a potentially bioactive and therapeutic compound.
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姜黄素作为一种天然多靶点化合物对人体健康的治疗活性和生物学效应综述
背景和目的:姜黄素或异戊醇基甲烷是从阿魏酸中提取的。这种草药化合物具有特殊的化学结构和各种生物/医学特性。姜黄素及其类似物结构中的官能团参与了特定生物活性的形成。这种天然化合物具有很高的生物活性,以及治疗癌症、阿尔茨海默氏症、糖尿病和严重急性呼吸系统综合征冠状病毒2 (SARS-CoV-2)等疾病的潜力。考虑到近年来传染病和癌症的蔓延,以及耐药性和副作用的增加,提供有效和可用的治疗是必要的。方法:综述了姜黄素的化学结构及其抗炎、抗氧化、抗癌、神经保护、抗糖尿病和抗sars - cov -2等生物学特性。研究了科学数据库以收集所需的资料。结果:姜黄素影响多种分子通路,包括激活转录因子、细胞生长因子、抗炎因子、蛋白激酶、细胞因子和凋亡通路因子。因此,它对健康有有益的治疗作用。结论:姜黄素通过广泛的分子机制,具有治疗多种疾病的潜力。了解姜黄素的药理/生物学活性及其作用机制,可以促进姜黄素作为一种潜在的生物活性和治疗化合物的应用。
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