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蜥蜴结肠中Na⁺和Cl⁻的转运机制。

Mechanisms of transport of Na+ and Cl- in the lizard colon.

作者信息

Badia P, Gómez T, Díaz M, Lorenzo A

出版信息

Comp Biochem Physiol A Comp Physiol. 1987;87(4):883-7. doi: 10.1016/0300-9629(87)90009-0.

Abstract
  1. Ionic fluxes of sodium and chloride across lizard colon mucosa were measured and compared with the electrical characteristics of the tissue under voltage-clamped conditions. 2. In a Ringer-bicarbonate solution there was both a net sodium flux (JNanet) and a net chloride flux (JClnet) from mucosa to serosa. The net flux residual (JR) was near zero, indicating that net sodium and chloride transport is the result of an electrically neutral transport mechanism. 3. In the presence of sodium, the net chloride flux was abolished and the short-circuit current (Isc) and the electrical potential difference (PD) were unchanged. In the absence of chloride the net sodium flux was abolished and the short-circuit current and electrical potential difference were not modified. 4. From an analysis of the effects of the inhibitors, furosemide, amiloride and disulfonic stilbene (DIDS), a plausible model was developed to explain the characteristics of sodium and chloride absorption.
摘要
  1. 测量了蜥蜴结肠黏膜上钠和氯的离子通量,并将其与电压钳制条件下组织的电学特性进行了比较。2. 在林格氏碳酸氢盐溶液中,存在从黏膜到浆膜的净钠通量(JNanet)和净氯通量(JClnet)。净通量残余(JR)接近零,表明净钠和氯转运是电中性转运机制的结果。3. 在有钠存在的情况下,净氯通量消失,短路电流(Isc)和电势差(PD)不变。在无氯的情况下,净钠通量消失,短路电流和电势差未改变。4. 通过对呋塞米、氨氯吡脒和二磺基芪(DIDS)等抑制剂作用的分析,建立了一个合理的模型来解释钠和氯吸收的特性。

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