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Role of reactive oxygen species and superoxide dismutase in cartilage aging and pathology

机译:活性氧和超氧化物歧化酶在软骨衰老和病理中的作用

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In the last two decades, there has been an explosive interest in the role of oxidative stress in experimental and clinical medicine. Oxidative stress is strongly correlated with a number of age-related diseases, such as rheumatoid arthritis, osteoarthritis, osteoporosis and atherosclerosis. Repeated intra-articular injections of the antioxidant enzyme superoxide dismutase (SOD) have slowed down progression of rheumatoid arthritis. Unfortunately, none of the native human SODs possess attractive pharmacological properties to make them a clinically useful therapeutic drug, owing to their rapid renal clearance. To overcome these limitations, several synthetic low-molecular-weight compounds that mimic the effects of SOD were developed and have been shown to be efficient in vivo. The use of SOD for clinical application still receives great interest and attention. However, the limitation to the injection route of drug administration has not yet been overcome. Current research continues to investigate new strategies to enhance the reactive oxygen species-scavenging systems of the cell, in an attempt to attenuate the damage resulting from oxidative stress.
机译:在过去的二十年中,人们对氧化应激在实验和临床医学中的作用产生了爆炸性的兴趣。氧化应激与许多与年龄有关的疾病密切相关,例如类风湿关节炎,骨关节炎,骨质疏松症和动脉粥样硬化。反复关节内注射抗氧化酶超氧化物歧化酶(SOD)减缓了类风湿关节炎的进展。不幸的是,由于它们的快速肾脏清除作用,没有一种天然的人类SOD具有吸引人的药理特性使其成为临床上有用的治疗药物。为了克服这些局限性,开发了几种模拟SOD的合成低分子量化合物,并已证明在体内有效。 SOD在临床上的应用仍然引起极大的兴趣和关注。但是,尚未克服对药物给药的注射途径的限制。当前的研究继续研究增强细胞的活性氧清除系统的新策略,以试图减轻氧化应激造成的损害。

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