首页> 外文OA文献 >Effects of chloride and extracellular fluid volume on bicarbonate reabsorption along the nephron in metabolic alkalosis in the rat. Reassessment of the classical hypothesis of the pathogenesis of metabolic alkalosis.
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Effects of chloride and extracellular fluid volume on bicarbonate reabsorption along the nephron in metabolic alkalosis in the rat. Reassessment of the classical hypothesis of the pathogenesis of metabolic alkalosis.

机译:氯化物和细胞外液体积对大鼠代谢性碱中毒沿肾脏重碳酸盐重吸收的影响。重新评估代谢性碱中毒发病机理的经典假设。

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摘要

Volume expansion has been considered essential for the correction of chloride-depletion metabolic alkalosis (CDA). To examine the predictions of this hypothesis, rats dialyzed against 0.15 M NaHCO3 to produce CDA and controls, CON, dialyzed against Ringer-HCO3 were infused with either 6% albumin (VE) or 80 mM non-sodium chloride salts (CC) added to 5% dextrose (DX) and studied by micropuncture. CDA was maintained in rats infused with DX. VE expanded plasma volume (25%), maintained glomerular filtration rate (GFR), but did not correct CDA despite increased fractional delivery of total CO2 (tCO2) out of the proximal tubule (36 +/- 2%) as compared with VE/CON (24 +/- 4%; P less than 0.05). In contrast, CC corrected CDA despite volume contraction (-16%) and lower GFR than CC/CON; proximal tCO2 delivery in CC/CDA (29 +/- 4%) did not differ from VE/CDA. CC was associated with an increment in tCO2 excretion. The data strongly suggest that maintenance and correction of CDA are primarily dependent upon total body chloride and its influences on intrarenal mechanisms and not on the demands of sodium or fluid homeostasis.
机译:体积膨胀已被认为对纠正氯消耗代谢性碱中毒(CDA)至关重要。为了检验该假设的预测,在大鼠中针对0.15 M NaHCO3进行透析以产生CDA,并针对针对Ringer-HCO3进行了透析的对照CON注入6%白蛋白(VE)或80 mM非氯化钠盐(CC) 5%葡萄糖(DX),并通过微穿刺进行研究。 CDA在注入DX的大鼠中维持。与VE /相比,VE扩大了血浆容量(25%),保持了肾小球滤过率(GFR),但是尽管总CO2(tCO2)从近端小管的分次递送增加(36 +/- 2%),但仍不能纠正CDA。 CON(24 +/- 4%; P小于0.05)。相反,尽管体积收缩(-16%)且GFR低于CC / CON,但CC校正了CDA。 CC / CDA(29 +/- 4%)中的近端tCO2递送与VE / CDA无差异。 CC与tCO2排泄增加有关。数据强烈表明,CDA的维持和纠正主要取决于体内的氯化物及其对肾内机制的影响,而不取决于钠或液体体内稳态的需求。

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