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绒毛和绒毛间上皮对肠道跨壁电位差以及对茶碱和糖的反应的作用。

Contribution of villus and intervillus epithelium to intestinal transmural potential difference and response to theophylline and sugar.

作者信息

Gunter-Smith P J, White J F

出版信息

Biochim Biophys Acta. 1979 Nov 2;557(2):425-35. doi: 10.1016/0005-2736(79)90340-7.

Abstract

A chamber design is described which permits isolation of villus or intervillus epithelium from proximal segments of Amphiuma intestine and measurement of the transpithelial potential difference (psi ms) and short-circuit current (Isc) produced by each. In media containing Cl- and 10 mequiv./l HCO3- the villus generated a basal psi ms of 0.8 mV (serosa negative) and Isc of 12 microA/cm2 while the intervillus psi ms and Isc were not different from zero. Acetazolamide altered the villus psi ms by 1.2 mV; the intervillus psi ms by only 0.3 mV. Transepithelial gradients of HCO3- appeared to generate diffusion potentials across the intervillus but not the villus epithelium. The actively transported sugar galactose elevated psi ms by 0.6 +/- 0.1 mV in the intervillus epithelium and by 1.5 +/- 0.2 mV in the villus epithelium for a response ratio (0.6/1.5) = 0.4. The response ratio for valine was 0.3. In contrast, the response ratios for theophylline (0.7) and cyclic AMP (0.7) were significantly higher. These observations indicate that the entire epithelium is responsive to theophylline and cyclic AMP while Na+-dependent solute transport and the basal electrogenic ion transport processes are primarily functions of the cells lining the intestinal villus.

摘要

本文描述了一种腔室设计,该设计可从蚓螈肠道近端分离绒毛或绒毛间上皮,并测量其产生的跨上皮电位差(ψms)和短路电流(Isc)。在含有Cl-和10 mequiv./l HCO3-的培养基中,绒毛产生的基础ψms为0.8 mV(浆膜为负),Isc为12 μA/cm2,而绒毛间的ψms和Isc与零无差异。乙酰唑胺使绒毛的ψms改变1.2 mV;使绒毛间的ψms仅改变0.3 mV。HCO3-的跨上皮梯度似乎在绒毛间而非绒毛上皮产生扩散电位。主动转运的糖半乳糖使绒毛间上皮的ψms升高0.6±0.1 mV,使绒毛上皮的ψms升高1.5±0.2 mV,反应比(0.6/1.5)=0.4。缬氨酸的反应比为0.3。相比之下,茶碱(0.7)和环磷酸腺苷(0.7)的反应比显著更高。这些观察结果表明,整个上皮对茶碱和环磷酸腺苷有反应,而依赖Na+的溶质转运和基础电生性离子转运过程主要是肠绒毛内衬细胞的功能。

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