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首页> 外文期刊>Cellular Physiology and Biochemistry >From Water to Aquaretics: a Legendary Route
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From Water to Aquaretics: a Legendary Route

机译:从水到水生动物:一条传奇之路

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摘要

Man is water. When life appeared on earth, the primordial cell had a simple structure and could immediately ascertain from the surrounding aquatic environment the substances for nutrition and oxygen, without any need for structural complexity. As part of evolution, during the transition from aquatic to terrestrial life, vertebrates had to fight against dehydration as well as fish in the sea. In this complex mechanism of osmoregulation, the structure and function of some osmoregulatory hormones have been maintained during the evolution of species, from fish to man. Within the homeostatic mechanism, the renin-angiotensin-aldosterone system (RAAS) is crucial in the regulation of renal reasorption of water and sodium. It is also involved in the regulation of renal plasma flux, blood volume and blood pressure. Vasopressin plays a hormonal function in the mechanisms of water homeostasis acting through Aquaporins (AQP), channel-proteins that allow bi-directional water transport across cell membranes.
机译:人是水。当生命出现在地球上时,原始细胞具有简单的结构,并且可以从周围的水生环境中立即确定营养和氧气的物质,而无需任何结构复杂性。作为进化的一部分,在从水生生物过渡到陆生生物的过程中,脊椎动物必须与脱水以及海洋中的鱼类抗争。在这种复杂的渗透调节机制中,某些渗透调节激素的结构和功能在从鱼类到人的物种进化过程中得以维持。在体内平衡机制中,肾素-血管紧张素-醛固酮系统(RAAS)在调节肾脏对水和钠的再吸收中至关重要。它也参与肾血浆通量,血容量和血压的调节。加压素在通过水通道蛋白(AQP)起作用的水稳态机制中起着激素功能,该通道蛋白允许水在细胞膜上双向运输。

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