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促肾上腺皮质激素对肾小管氢离子分泌的控制。接受酸或碱负荷的促肾上腺皮质激素刺激的断奶大鼠中不可代谢碱的平衡。

Adrenocorticotropic hormone in the control of renal tubular hydrogen ion secretion. Balance of non-metabolizable base in ACTH-stimulated weanling rats subject to acid or base loading.

作者信息

Kildeberg P, Wamberg S, Engel K

机构信息

Institute of Paediatrics, Odense University, Denmark.

出版信息

Acta Physiol Scand. 1988 Jul;133(3):381-9. doi: 10.1111/j.1748-1716.1988.tb08420.x.

Abstract

Groups of weanling rats subject to ACTH-stimulation (tetracosactrin, 1 mg kg-1 day-1) were exposed to heavy oral loads of ammonium chloride (approx. 21 mmol kg-1 day-1) or sodium bicarbonate (approx. 40 mmol kg-1 day-1) for 8 days. During loading with sodium bicarbonate, the animals maintained a normal positive external (whole body) balance of non-metabolizable base (NB), excess NB being excreted quantitatively in the urine, whereas loading with ammonium chloride caused a fall in the mean balance of NB from a reference value of 12.1 mmol per 8 days to about zero. However, in the two groups the concentration in plasma of NB rose from the reference value (41 mmol l-1) to the same level (57 and 59 mmol l-1, respectively; P greater than 0.5) despite extreme differences in rates of gastrointestinal NB absorption, despite a significant rise in the rate of endogenous sulphuric acid production and despite the presence of ample chloride in diet and urine. These results indicate that ACTH determines the extracellular concentration of NB at which exchange of NB takes place by influencing, directly or indirectly, the relative rates of renal tubular H- secretion and Cl- reabsorption at any given rate of tubular reabsorption of Na-. Some cybernetic considerations of the disturbance are presented.

摘要

给断乳大鼠注射促肾上腺皮质激素(二十四肽促皮质素,1毫克/千克/天),并让它们连续8天口服大量氯化铵(约21毫摩尔/千克/天)或碳酸氢钠(约40毫摩尔/千克/天)。在给予碳酸氢钠期间,动物维持了不可代谢碱(NB)正常的正性外部(全身)平衡,过量的NB定量地经尿液排出,而给予氯化铵则导致NB的平均平衡从每8天12.1毫摩尔的参考值降至约零。然而,尽管两组胃肠道NB吸收速率差异极大,尽管内源性硫酸生成速率显著升高,且饮食和尿液中存在充足的氯离子,但两组血浆中NB的浓度均从参考值(41毫摩尔/升)升至相同水平(分别为57和59毫摩尔/升;P大于0.5)。这些结果表明,促肾上腺皮质激素通过直接或间接影响在任何给定的肾小管钠重吸收率下肾小管H⁺分泌和Cl⁻重吸收的相对速率,来决定发生NB交换时的细胞外NB浓度。本文还对这种紊乱进行了一些控制论方面的思考。

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