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Adenosine and kidney function.

机译:腺苷和肾功能。

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In this review we outline the unique effects of the autacoid adenosine in the kidney. Adenosine is present in the cytosol of renal cells and in the extracellular space of normoxic kidneys. Extracellular adenosine can derive from cellular adenosine release or extracellular breakdown of ATP, AMP, or cAMP. It is generated at enhanced rates when tubular NaCl reabsorption and thus transport work increase or when hypoxia is induced. Extracellular adenosine acts on adenosine receptor subtypes in the cell membranes to affect vascular and tubular functions. Adenosine lowers glomerular filtration rate (GFR) by constricting afferent arterioles, especially in superficial nephrons, and acts as a mediator of the tubuloglomerular feedback, i.e., a mechanism that coordinates GFR and tubular transport. In contrast, it leads to vasodilation in deep cortex and medulla. Moreover, adenosine tonically inhibits the renal release of renin and stimulates NaCl transport in the cortical proximal tubule but inhibits it in medullary segments including the medullary thick ascending limb. These differential effects of adenosine are subsequently analyzed in a more integrative way in the context of intrarenal metabolic regulation of kidney function, and potential pathophysiological consequences are outlined.
机译:在这篇综述中,我们概述了autacoid腺苷在肾脏中的独特作用。腺苷存在于肾细胞的胞浆中和常氧性肾脏的细胞外空间中。细胞外腺苷可源自细胞腺苷的释放或ATP,AMP或cAMP的细胞外分解。当管状NaCl的重吸收和运输功增加或引起缺氧时,它以增加的速率生成。细胞外腺苷作用于细胞膜中的腺苷受体亚型,影响血管和肾小管的功能。腺苷通过收缩传入小动脉(特别是在浅表肾单位中)来降低肾小球滤过率(GFR),并充当肾小管肾小球反馈的介质,即协调GFR和肾小管运输的机制。相反,它导致深层皮质和延髓的血管舒张。此外,腺苷在声调上抑制肾素的肾脏释放并刺激皮质近端小管中的NaCl转运,但在包括髓质粗大上升肢体的髓样节段中抑制它。腺苷的这些差异作用随后在肾功能的肾脏内代谢调节中以更综合的方式进行了分析,并概述了潜在的病理生理后果。

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