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首页> 外文期刊>The Journal of Physiology >Oxygen, evolution and redox signalling in the human brain; quantum in the quotidian
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Oxygen, evolution and redox signalling in the human brain; quantum in the quotidian

机译:人脑中的氧气,进化和氧化还原信号; 量子在引用中

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摘要

Rising atmospheric oxygen (O-2) levels provided a selective pressure for the evolution of O-2-dependent micro-organisms that began with the autotrophic eukaryotes. Since these primordial times, the respiring mammalian cell has become entirely dependent on the constancy of electron flow, with molecular O-2 serving as the terminal electron acceptor in mitochondrial oxidative phosphorylation. Indeed, the ability to 'sense' O-2 and maintain homeostasis is considered one of the most important roles of the central nervous system (CNS) and probably represented a major driving force in the evolution of the human brain. Today, modern humans have evolved with an oversized brain committed to a continually active state and, as a consequence, paradoxically vulnerable to failure if the O-2 supply is interrupted. However, our pre-occupation with O-2, the elixir of life, obscures the fact that it is a gas with a Janus face, capable of sustaining life in physiologically controlled amounts yet paradoxically deadly to the CNS when in excess. A closer look at its quantum structure reveals precisely why; the triplet ground state diatomic O-2 molecule is paramagnetic and exists in air as a free radical, constrained from reacting aggressively with the brain's organic molecules due to its 'spin restriction', a thermodynamic quirk of evolutionary fate. By further exploring O-2's free radical 'quantum quirkiness', including emergent (quantum) physiological phenomena, our understanding of precisely how the human brain senses O-2 deprivation (hypoxia) and the elaborate redox-signalling defence mechanisms that defend O-2 homeostasis has the potential to offer unique insights into the pathophysiology and treatment of human brain disease.
机译:升高的大气氧(O-2)水平为O-2依赖性微生物的演变提供了一种选择性的压力,所述微生物的进化开始于自养真核生物。由于这些原始时间,呼吸哺乳动物细胞已经完全取决于电子流的恒定,其分子O-2用作线粒体氧化磷酸化中的末端电子受体。实际上,“感知”O-2和维持稳态的能力被认为是中枢神经系统(CNS)最重要的作用之一,并且可能在人类脑的演变中代表了主要的驱动力。如今,现代人类已经发展出了一个致力于持续活跃的状态的超大大脑,因此,如果O-2供应中断,则矛盾的易受失败的影响。然而,我们与O-2的预占领,生命的精英,掩盖了它是一种与Janus面孔的气体,能够在过量时矛盾地矛盾地矛盾地矛盾的矛盾的寿命。仔细看看其量子结构恰恰揭示了原因;三态地面硅藻型O-2分子是顺磁性的,并且在空气中作为自由基存在,受到由于其“自旋限制”而导致的脑的有机分子产生激进的反应,这是一种进化命运的热力学跳气。通过进一步探索O-2的自由基'量子Quartum Quirkiness',包括突出(量子)生理现象,我们对人脑感应如何感化O-2剥夺(缺氧)以及制定o-2的精心氧化还原信令防御机制稳态有可能为人脑病的病理生理学和治疗提供独特的见解。

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