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内皮细胞中的碳酸氢根离子泵,其调节兔角膜的水合作用。

The bicarbonate ion pump in the endothelium which regulates the hydration of rabbit cornea.

作者信息

Hodson S, Miller F

出版信息

J Physiol. 1976 Dec;263(3):563-77. doi: 10.1113/jphysiol.1976.sp011645.

Abstract
  1. Studies were made on the short-circuit current (s.c.c.) and fluid transport across rabbit corneal endothelium. 2. Normal s.c.c. of 27 muA.cm-2 is reduced to 19 muA.cm-2 in CO2-free Ringer, to 9 muA. cm-2 in HCO-3 -free Ringer and to zero in CO2 and HCO-3 -free Ringer. 3. Carbonic anhydrase inhibitors reduce s.c.c. from 27 to 19 muA.cm-2. Removal of exogenous CO2 causes no further reduction in s.c.c. 4. In CO2-free Ringer, net exogenous bicarbonate translocation is equal to s.c.c. 5. In all cases studied, net fluid transport across the endothelium in open circuit is directly proportional to s.c.c. 6. It is concluded that the endothelial 'pump' which regulates corneal hydration operates by 'pumping' bicarbonate ions into the aqueous humour. 7. Under physiological conditions, two thirds of the substrate is supplied by exogenous bicarbonate ions and one third is supplied by conversion of exogenous CO2 by intracellular carbonic anhydrase. 8. Metabolic CO2 does not participate significantly in the process, probably because it is at too low a concentration to compete effectively with exogenous CO2. 9. Electron histochemical studies suggest that carbonic anhydrase is located immediately underneath the posterior membrane of the endothelium, across which the active bicarbonate ion flux passes.
摘要
  1. 对家兔角膜内皮的短路电流(s.c.c.)和液体转运进行了研究。2. 正常的短路电流为27μA·cm⁻²,在无CO₂的林格氏液中降至19μA·cm⁻²,在无HCO₃⁻的林格氏液中降至9μA·cm⁻²,在无CO₂和HCO₃⁻的林格氏液中降至零。3. 碳酸酐酶抑制剂使短路电流从27μA·cm⁻²降至19μA·cm⁻²。去除外源性CO₂不会使短路电流进一步降低。4. 在无CO₂的林格氏液中,外源性碳酸氢盐的净转运量等于短路电流。5. 在所有研究的情况下,开路时内皮的净液体转运与短路电流成正比。6. 得出的结论是,调节角膜水合作用的内皮“泵”通过将碳酸氢根离子“泵”入房水来起作用。7. 在生理条件下,三分之二的底物由外源性碳酸氢根离子提供,三分之一由细胞内碳酸酐酶将外源性CO₂转化提供。8. 代谢产生的CO₂在该过程中不起重要作用,可能是因为其浓度过低,无法与外源性CO₂有效竞争。9. 电子组织化学研究表明,碳酸酐酶位于内皮后膜的正下方,活跃的碳酸氢根离子通量穿过该膜。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a4/1307717/9a3aa3f5c9a9/jphysiol00829-0259-a.jpg

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