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大鼠远端结肠中电中性氯化钠吸收的机制

Mechanism of electroneutral sodium chloride absorption in distal colon of the rat.

作者信息

Binder H J, Foster E S, Budinger M E, Hayslett J P

出版信息

Gastroenterology. 1987 Sep;93(3):449-55. doi: 10.1016/0016-5085(87)90905-x.

Abstract

This investigation was designed to establish the mechanism of sodium and chloride transport in the rat distal colon by determining ion fluxes across isolated mucosa under voltage clamp conditions. The net rates of sodium and chloride absorption in the distal colon of the rat were approximately equal (5.8 +/- 0.3 and 6.9 +/- 0.5 microEq/h X cm2, respectively) and significantly greater than the short circuit current (0.9 +/- 0.1 microEq/h X cm2). Net sodium absorption and net chloride absorption were markedly reduced by the removal of chloride and sodium, respectively, but were not affected by the absence of potassium from the mucosal bathing solution. Both net sodium absorption and net chloride absorption were also significantly inhibited by 1.0 mM amiloride and by 0.1 mM acetazolamide. In contrast, 0.1 mM amiloride and 1.0 mM furosemide did not inhibit either sodium or chloride absorption. These results confirm that electroneutral sodium chloride absorption is the predominant mechanism of sodium and chloride absorption and suggest that parallel ion (Na-H and Cl-HCO3) exchanges, rather than independent electrogenic sodium and chloride transport, coupled sodium-chloride cotransport, or coupled Na-K-2Cl cotransport, are most likely responsible for sodium chloride absorption in this epithelium.

摘要

本研究旨在通过在电压钳制条件下测定跨分离黏膜的离子通量,来确定大鼠远端结肠中钠和氯的转运机制。大鼠远端结肠中钠和氯的净吸收速率大致相等(分别为5.8±0.3和6.9±0.5微当量/小时×平方厘米),且显著高于短路电流(0.9±0.1微当量/小时×平方厘米)。分别去除氯和钠后,钠的净吸收和氯的净吸收均显著降低,但黏膜浴液中无钾时对其没有影响。1.0 mM氨氯吡脒和0.1 mM乙酰唑胺也显著抑制了钠的净吸收和氯的净吸收。相比之下,0.1 mM氨氯吡脒和1.0 mM呋塞米对钠或氯的吸收均无抑制作用。这些结果证实,电中性氯化钠吸收是钠和氯吸收的主要机制,并表明平行离子(Na-H和Cl-HCO3)交换,而非独立的电生性钠和氯转运、耦联的氯化钠共转运或耦联的Na-K-2Cl共转运,最有可能是该上皮细胞中氯化钠吸收的原因。

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