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噻吩及其类似物作为有前景的抗氧化剂:一项回顾性研究。

Thiophene and Its Analogs as Prospective Antioxidant Agents: A Retrospective Study.

机构信息

Institute of Pharmaceutical Research, GLA University, Mathura, Uttar Pradesh, 281406, India.

School of Pharmaceutical Sciences, IFTM University, Moradabad, Uttar Pradesh, 244102, India.

出版信息

Mini Rev Med Chem. 2022;22(10):1420-1437. doi: 10.2174/1389557521666211022145458.

Abstract

The field of Free Radical Chemistry has gained considerable interest in the current scenario. The formation of free radicals is attributable to different physiochemical factors, radiation exposure, pathological conditions, environmental contaminants, and as by-products of metabolized drugs. The concentration of free radicals is regulated strongly under normal conditions by physiological antioxidants. Free radicals may cause oxidative damage to proteins, lipids, sugars, and DNA when abundantly produced or when antioxidants are depleted. This imbalance of reduction-oxidation, referred to as oxidative stress, can change the body's physiological conditions and ultimately lead to tissue injury, further contributing to various disease pathologies. A proper balance between free radicals and antioxidants is required for an effective physiological process. The oxidation mechanism is chemically hindered by antioxidants; these are often called free radical scavengers. The application of an external antioxidant source is crucial in addressing the issue of oxidative stress. Plenty of naturally occurring, semi-synthetic, and synthetic antioxidants are used, and the search for an efficient, non-toxic, and safe antioxidant is stepped up over time. As an influential scaffold, thiophene and its derivatives have become a significant source of interest for researchers due to its substantial variety of biological activities. The versatility of thiophene moiety has been identified by an affluent unveiling of its derivatives with anti-inflammatory, antioxidant, anti-cancer, and antimicrobial behaviors. Thiophene activity has been influenced greatly by the nature and orientation of the substitutions. The current study aims at addressing various synthetic compounds with thiophene or condensed thiophene as a fundamental moiety or substituent as radical scavengers.

摘要

自由基化学领域在当前的情况下引起了相当大的兴趣。自由基的形成归因于不同的物理化学因素、辐射暴露、病理状况、环境污染物以及代谢药物的副产物。在正常情况下,自由基的浓度通过生理抗氧化剂得到强烈调节。当自由基大量产生或抗氧化剂耗尽时,自由基可能会对蛋白质、脂质、糖和 DNA 造成氧化损伤。这种氧化还原的不平衡,称为氧化应激,可以改变身体的生理状况,并最终导致组织损伤,进一步导致各种疾病的病理。自由基和抗氧化剂之间需要适当的平衡才能实现有效的生理过程。抗氧化剂在化学上阻碍了氧化机制;这些抗氧化剂通常被称为自由基清除剂。应用外部抗氧化剂来源对于解决氧化应激问题至关重要。大量天然存在的、半合成的和合成的抗氧化剂被使用,并且随着时间的推移,人们对寻找高效、无毒和安全的抗氧化剂的兴趣不断增加。作为一种有影响力的支架,噻吩及其衍生物因其具有多种生物活性而成为研究人员关注的重要来源。噻吩部分的多功能性通过其衍生物具有抗炎、抗氧化、抗癌和抗菌行为的丰富揭示得到了确定。噻吩的活性受取代基的性质和取向的影响很大。本研究旨在研究各种具有噻吩或稠合噻吩作为基本部分或取代基的合成化合物作为自由基清除剂。

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