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大鼠近端曲管中钠与碳酸氢根转运的关系。

Relationship between sodium and bicarbonate transport in the rat proximal convoluted tubule.

作者信息

Chan Y L, Giebisch G

出版信息

Am J Physiol. 1981 Mar;240(3):F222-30. doi: 10.1152/ajprenal.1981.240.3.F222.

Abstract

The relationship between net sodium and bicarbonate transport was studied by microperfusion of proximal convoluted tubules and peritubular capillaries. Bicarbonate absorption was unchanged as long as the sodium concentration remained above 40 meq/liter, despite reduction of sodium transport to 10% of its control value. At a sodium concentration of 5 meq/liter, fluid absorption was completely abolished but bicarbonate transport was reduced to 39% of its control value. Even at reduction of luminal and peritubular sodium concentrations to nominally zero, bicarbonate transport continued at 23% of its control value. Amiloride, at a sodium concentration of 5 meq/liter, inhibited bicarbonate absorption in a dose-dependent manner. Elevating peritubular pH to 8.4 drastically reduced net bicarbonate transport, whereas fluid absorption was only slightly inhibited. These results are consistent with a dual mechanism of acidification: a sodium-hydrogen exchange that saturates at low extracellular sodium concentrations and an additional sodium-independent mechanism of hydrogen ion secretion.

摘要

通过对近端曲管和肾小管周围毛细血管进行微量灌注,研究了钠和碳酸氢盐净转运之间的关系。只要钠浓度保持在40毫当量/升以上,碳酸氢盐的吸收就不会改变,尽管钠转运减少到其对照值的10%。当钠浓度为5毫当量/升时,液体吸收完全停止,但碳酸氢盐转运减少到其对照值的39%。即使将管腔和肾小管周围的钠浓度降低到名义上的零,碳酸氢盐转运仍以其对照值的23%继续进行。在钠浓度为5毫当量/升时,氨氯地平以剂量依赖的方式抑制碳酸氢盐的吸收。将肾小管周围pH值提高到8.4会大幅降低碳酸氢盐的净转运,而液体吸收仅受到轻微抑制。这些结果与酸化的双重机制一致:一种在低细胞外钠浓度下饱和的钠氢交换和一种额外的非钠依赖的氢离子分泌机制。

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