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抗氧化剂在慢性炎症性疾病治疗中的潜在应用。

Potential use of antioxidants for the treatment of chronic inflammatory diseases.

作者信息

Blagov Alexander V, Summerhill Volha I, Sukhorukov Vasily N, Zhigmitova Elena B, Postnov Anton Y, Orekhov Alexander N

机构信息

Institute of General Pathology and Pathophysiology, Moscow, Russia.

Institute for Atherosclerosis Research, Moscow, Russia.

出版信息

Front Pharmacol. 2024 May 16;15:1378335. doi: 10.3389/fphar.2024.1378335. eCollection 2024.

Abstract

The excessive production of various reactive oxidant species over endogenous antioxidant defense mechanisms leads to the development of a state of oxidative stress, with serious biological consequences. The consequences of oxidative stress depend on the balance between the generation of reactive oxidant species and the antioxidant defense and include oxidative damage of biomolecules, disruption of signal transduction, mutation, and cell apoptosis. Accumulating evidence suggests that oxidative stress is involved in the physiopathology of various debilitating illnesses associated with chronic inflammation, including cardiovascular diseases, diabetes, cancer, or neurodegenerative processes, that need continuous pharmacological treatment. Oxidative stress and chronic inflammation are tightly linked pathophysiological processes, one of which can be simply promoted by another. Although, many antioxidant trials have been unsuccessful (some of the trials showed either no effect or even harmful effects) in human patients as a preventive or curative measure, targeting oxidative stress remains an interesting therapeutic approach for the development of new agents to design novel anti-inflammatory drugs with a reliable safety profile. In this regard, several natural antioxidant compounds were explored as potential therapeutic options for the treatment of chronic inflammatory diseases. Several metalloenzymes, such as superoxide dismutase, catalase, and glutathione peroxidase, are among the essential enzymes that maintain the low nanomolar physiological concentrations of superoxide (O•-) and hydrogen peroxide (HO), the major redox signaling molecules, and thus play important roles in the alteration of the redox homeostasis. These enzymes have become a striking source of motivation to design catalytic drugs to enhance the action of these enzymes under pathological conditions related to chronic inflammation. This review is focused on several major representatives of natural and synthetic antioxidants as potential drug candidates for the treatment of chronic inflammatory diseases.

摘要

内源性抗氧化防御机制无法抵御各种活性氧化物质的过量产生,从而导致氧化应激状态的出现,并产生严重的生物学后果。氧化应激的后果取决于活性氧化物质的产生与抗氧化防御之间的平衡,包括生物分子的氧化损伤、信号转导的破坏、突变和细胞凋亡。越来越多的证据表明,氧化应激参与了与慢性炎症相关的各种衰弱性疾病的病理生理过程,包括心血管疾病、糖尿病、癌症或神经退行性疾病,这些疾病需要持续的药物治疗。氧化应激和慢性炎症是紧密相连的病理生理过程,其中一个过程可轻易地被另一个过程所促进。尽管许多抗氧化剂试验在人类患者中作为预防或治疗措施并未取得成功(有些试验显示无效甚至有害),但针对氧化应激仍然是开发新型抗炎药物的一种有趣的治疗方法,这些药物具有可靠的安全性。在这方面,几种天然抗氧化化合物被探索作为治疗慢性炎症性疾病的潜在治疗选择。几种金属酶,如超氧化物歧化酶、过氧化氢酶和谷胱甘肽过氧化物酶,是维持超氧化物(O•-)和过氧化氢(HO)这两种主要氧化还原信号分子低纳摩尔生理浓度的关键酶,因此在氧化还原稳态的改变中发挥重要作用。这些酶已成为设计催化药物以增强其在与慢性炎症相关的病理条件下作用的一个显著动力来源。本综述聚焦于天然和合成抗氧化剂的几种主要代表物,它们作为治疗慢性炎症性疾病的潜在候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c7/11137403/0578a1ad84bd/fphar-15-1378335-g001.jpg

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