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Regulation of bicarbonate transport across the brush border membrane of the bull-frog choroid plexus.

机译:碳酸氢盐跨牛蛙脉络丛刷状缘膜转运的调节。

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摘要

Our previous study of the choroid plexus showed that elevation of cellular cyclic AMP stimulated HCO3 secretion into the cerebrospinal fluid (c.s.f.). To explore the mechanism of this stimulation, we have used micro-electrodes to observe the effect of phosphodiesterase inhibitors on membrane potentials, resistances and electromotive forces (e.m.f.) in the bull-frog plexus. The potential profile under control conditions was -45 mV across the apical membrane (Vvc) and -9 mV across the epithelium (Vvs) with respect to the c.s.f. Two-dimensional cable analysis indicated that 70% of adjacent epithelial cells were electrically uncoupled, and that the coupling coefficient for the remaining cells was only 0.12. The results of circuit analysis gave values for membrane resistance and e.m.f. across the apical membrane of 200 omega cm2 and -135 mV, across the basolateral membrane of 386 omega cm2 and -138 mV, and across the paracellular shunt of 20 omega cm2 (the shunt e.m.f. was assumed to be negligible). Addition of phosphodiesterase inhibitors (10 mM-theophylline or 1 mM-3-isobutyl-1-methylxanthine (IBMX) ) depolarized Vvc by 18 mV and Vvs by 2 mV. Circuit analysis showed that the inhibitor reduced the apical membrane resistance by more than 60% and depolarized the apical e.m.f. by 70 mV without affecting the basolateral membrane or the shunt parameters. In Cl-free solutions IBMX depolarized Vvc and decreased the apical membrane resistance similar to that observed in regular buffer solution. However, in HCO3-free buffer solutions, the effects of IBMX on Vvc and membrane resistances were insignificant. In thirty-five cells in sixteen tissues a linear relationship was observed between the magnitude of the spontaneous membrane potential (Vvc) and the magnitude of IBMX-induced depolarization (delta VIBMXvc): delta VIBMXvc = -0.8 Vvc -15 (in mV). This suggests that HCO3 is accumulated within the epithelium above electrochemical equilibrium. We conclude that cyclic AMP increases HCO3 secretion across the choroid plexus by increasing the apical membrane HCO3 conductance.
机译:我们之前对脉络丛的研究表明,细胞周期AMP的升高会刺激HCO3分泌到脑脊液中(c.s.f.)。为了探索这种刺激的机制,我们使用微电极观察了磷酸二酯酶抑制剂对牛蛙丛中膜电位,电阻和电动势(e.m.f.)的影响。在对照条件下,相对于c.s.f,在顶膜(Vvc)上的电位分布为-45 mV,在上皮(Vvs)上的电位分布为-9 mV。二维电缆分析表明,70%的相邻上皮细胞未电耦合,其余细胞的耦合系数仅为0.12。电路分析的结果给出了膜电阻和e.m.f.的值。跨过200Ωcm2和-135 mV的顶膜,跨过386 ocm cm2和-138 mV的基底外侧膜以及跨过20Ωcm2的细胞旁分流(假设分流e.m.f.可以忽略不计)。加入磷酸二酯酶抑制剂(10 mM茶碱或1 mM-3-异丁基-1-甲基黄嘌呤(IBMX))使Vvc消极化18 mV,使Vv消极化2 mV。回路分析表明,该抑制剂使顶膜阻力降低了60%以上,并使顶电极e.m.f去极化。在不影响基底外侧膜或分流参数的情况下降低70 mV。在无氯溶液中,IBMX使Vvc去极化并降低了顶膜阻力,类似于在常规缓冲溶液中观察到的。但是,在不含HCO3的缓冲溶液中,IBMX对Vvc和膜电阻的影响微不足道。在16个组织的35个细胞中,观察到自发膜电位(Vvc)的大小与IBMX诱导的去极化的大小(δVIBMXvc)之间存在线性关系:δVIBMXvc = -0.8 Vvc -15(mV)。这表明HCO 3在电化学平衡以上累积在上皮内。我们得出结论,环状AMP通过增加顶膜HCO3电导来增加整个脉络丛的HCO3分泌。

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