MOLECULAR AND CELLULAR MECHANISMS OF HYPOXIC RESPONSE

N. Bondarenko, Evgeniy Vladimirovich Khomutov, Tat'yana Leonidovna Ryapolova, M. Kishenya, Tat'yana Stepanovna Ignatenko, Vitaliy Arkad'evich Tolstoy, I. S. Evtushenko, S. V. Tumanova
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引用次数: 1

Abstract

Hypoxia is a typical pathological process characterized by oxygen tissue deficiency with the pathological and protective-compensatory reactions. The article briefly outlines the issues of hypoxia study and interval hypoxic training in clinical and rehabilitation practice while treating various diseases and pathological processes. The authors consider types of physiological and pathological responses to hypoxia, key aspects in the pathogenesis of normo- and hypobaric hypoxia under normal and reduced atmospheric pressure, and stages of hypoxia development. Physiological and biochemical responses to interval hypoxic training are associated with oxidative stress, which develops as a result of an imbalance between the pro- and antioxidant systems, and excessive production of reactive oxygen species. Interval hypoxic training is aimed at adequate activation of defense systems with the formation of stable adaptation to damaging factors. The authors prove the key role of HIF-1α biological effects in the mechanisms of cellular and tissue adaptation to oxygen deficiency. The authors also analyze the role of adenosine and adenosine receptors in acute and chronic inflammatory diseases associated with tissue hypoxia.
低氧反应的分子和细胞机制
缺氧是典型的以氧组织缺乏为特征的病理过程,具有病理性和保护性代偿反应。本文简要概述了缺氧研究和间歇缺氧训练在临床和康复实践中治疗各种疾病和病理过程中的问题。作者考虑了对缺氧的生理和病理反应类型,在正常和降低大气压下的常压和低压缺氧发病机制的关键方面,以及缺氧发展的阶段。间歇低氧训练的生理和生化反应与氧化应激有关,氧化应激是由于促氧化系统和抗氧化系统之间的不平衡以及活性氧的过量产生而产生的。间歇低氧训练旨在充分激活防御系统,形成对损伤因素的稳定适应。作者证明了HIF-1α生物学效应在细胞和组织缺氧适应机制中的关键作用。作者还分析了腺苷和腺苷受体在与组织缺氧相关的急慢性炎症性疾病中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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