The Ambiguous Aspects of Oxygen

G. Napolitano, G. Fasciolo, P. Venditti
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引用次数: 11

Abstract

For most living beings, oxygen is an essential molecule for survival, being the basis of biological oxidations, which satisfy most of the energy needs of aerobic organisms. Oxygen can also behave as a toxic agent posing a threat to the existence of living beings since it can give rise to reactive oxygen species (ROS) that can oxidise biological macromolecules, among which proteins and lipids are the preferred targets. Oxidative damage can induce cell, tissue, and organ dysfunction, which leads to severe body damage and even death. The survival of the aerobic organism depends on the development of an elaborate antioxidant defence system adapted to the normal level of atmospheric oxygen. The production of ROS in the aerobic organism can occur accidentally from exposure to pollutants or radiation, but occurs constantly during normal metabolic reactions. Cells have evolved using ROS to their advantage. Indeed, ROS are used as signalling molecules in numerous physiological processes, including muscle contraction, regulation of insulin release, and adaptation to environmental changes. Therefore, supplementation with antioxidants must be used wisely. A low level of ROS is essential for adaptation processes, so an excess of antioxidants can be harmful. Conversely, in conditions where ROS production increases, antioxidants can be useful to avoid cellular dysfunction.
氧的模糊方面
对大多数生物来说,氧是生存的重要分子,是生物氧化的基础,满足了需氧生物的大部分能量需求。氧也可以作为一种对生物生存构成威胁的有毒物质,因为它可以产生活性氧(ROS),从而氧化生物大分子,其中蛋白质和脂质是首选靶点。氧化损伤会导致细胞、组织和器官功能障碍,从而导致严重的身体损伤甚至死亡。需氧生物的生存取决于复杂的抗氧化防御系统的发展,该系统适应大气中正常水平的氧气。需氧生物中ROS的产生可能是由于暴露于污染物或辐射而意外发生的,但在正常的代谢反应中不断发生。细胞已经利用ROS进行了进化。事实上,ROS在许多生理过程中被用作信号分子,包括肌肉收缩、胰岛素释放的调节和对环境变化的适应。因此,必须明智地补充抗氧化剂。低水平的ROS对适应过程至关重要,因此过量的抗氧化剂可能是有害的。相反,在ROS产生增加的条件下,抗氧化剂可用于避免细胞功能障碍。
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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