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碳酸酐酶在肠道电解质转运中的功能作用。

Functional role of carbonic anhydrase in intestinal electrolyte transport.

作者信息

Charney A N, Wagner J D, Birnbaum G J, Johnstone J N

出版信息

Am J Physiol. 1986 Nov;251(5 Pt 1):G682-7. doi: 10.1152/ajpgi.1986.251.5.G682.

Abstract

We examined the role of carbonic anhydrase activity in intestinal transport by measuring the effect of systemic pH and PCO2 on electrolyte transport in the presence and absence of luminal acetazolamide. Adult Sprague-Dawley rats were anesthetized, and ileal and colonic segments were perfused with Ringer solution that was acetazolamide-free or that contained 0.1 mM sodium acetazolamide. Consecutive states of acute respiratory alkalosis and acidosis were created by changing the inspired CO2 from 0% (room air) to 8% CO2. In the ileum, acetazolamide perfusion did not affect the increment in net sodium and chloride absorption caused by a reduction in systemic pH. Mucosal carbonic anhydrase activity in this segment was measurable, although very low. In both the ascending and descending colon, acetazolamide perfusion reduced the increment in net sodium absorption caused by an increase in systemic PCO2. In addition, acetazolamide increased the chloride absorptive response to PCO2 in the ascending colon but did not affect the chloride response at all in the descending colon. Colonic mucosal carbonic anhydrase exhibited a proximal-to-distal gradient of activity: levels in the ascending colon were severalfold greater than in the descending colon. These findings suggest a functional role for carbonic anhydrase in mediating the colonic but not the ileal absorptive response to changes in systemic acid-base balance.

摘要

我们通过测量全身pH值和PCO₂对存在和不存在管腔乙酰唑胺时电解质转运的影响,研究了碳酸酐酶活性在肠道转运中的作用。将成年Sprague-Dawley大鼠麻醉,用不含乙酰唑胺或含有0.1 mM乙酰唑胺钠的林格溶液灌注回肠和结肠段。通过将吸入的CO₂从0%(室内空气)改为8% CO₂,产生急性呼吸性碱中毒和酸中毒的连续状态。在回肠中,乙酰唑胺灌注不影响全身pH值降低引起的净钠和氯吸收增加。该段黏膜碳酸酐酶活性可测量,尽管非常低。在升结肠和降结肠中,乙酰唑胺灌注均降低了全身PCO₂升高引起的净钠吸收增加。此外,乙酰唑胺增加了升结肠对PCO₂的氯吸收反应,但对降结肠的氯反应完全没有影响。结肠黏膜碳酸酐酶表现出从近端到远端的活性梯度:升结肠中的水平比降结肠中的高几倍。这些发现表明碳酸酐酶在介导结肠而非回肠对全身酸碱平衡变化的吸收反应中具有功能作用。

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