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K⁺和Cl⁻电导在鳃盖上皮氯化物分泌中的作用。

The role of K+ and Cl- conductances in chloride secretion by the opercular epithelium.

作者信息

Degnan K J

出版信息

J Exp Zool. 1985 Oct;236(1):19-25. doi: 10.1002/jez.1402360104.

Abstract

The opercular epithelium of the teleost Fundulus heteroclitus, when mounted in a lucite chamber under short-circuited conditions, secretes Cl- at a rate equivalent to the short-circuit current (Isc). The transepithelial Na+ movements are passive and proceed by a paracellular pathway. The addition of 2 X 10(-3) M Ba2+ to the serosal bathing solution inhibited the Isc 76.8% with no effect on the transepithelial conductance (Gt). The addition of 5 X 10(-4) M Cu2+ to the mucosal bathing solution inhibited the Isc 79.6% and reduced the Gt 35.6%. These inhibitory effects of Ba2+ and Cu2+ on the Isc were initiated within 1 minute after exposure with maximum effects occurring within 20 and 30 minutes, respectively. Simultaneous 36Cl- and 22Na+ unidirectional fluxes were performed on paired epithelia from the same fish. Serosal Ba2+ and mucosal Cu2+ inhibited the Cl- secretory flux 30.2 and 58.9%, respectively. The resulting net Cl- flux after inhibition was not significantly different from the mean measured Isc. Neither ion had significant effects on the Cl- influx (mucosa to serosa) or the unidirectional Na fluxes. These results indicated that the effects of both Ba2+ and Cu2+ were most likely exclusive to the transcellular Cl- pathway. Ba2+ is proposed to inhibit Cl- secretion by blocking the basolateral K+ channels, depolarizing the cell, and reducing the electrochemical driving force for Cl- across the apical membrane. Cu2+ is proposed to inhibit Cl- secretion by blocking the apical membrane Cl- channels.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

将硬骨鱼异鳞底鳉的鳃盖上皮细胞置于短路条件下的透明塑料小室中时,其分泌氯离子的速率与短路电流(Isc)相当。跨上皮的钠离子移动是被动的,通过细胞旁途径进行。向浆膜侧浴液中添加2×10⁻³ M的Ba²⁺可使Isc抑制76.8%,而对跨上皮电导(Gt)无影响。向黏膜侧浴液中添加5×10⁻⁴ M的Cu²⁺可使Isc抑制79.6%,并使Gt降低35.6%。Ba²⁺和Cu²⁺对Isc的这些抑制作用在暴露后1分钟内开始,分别在20分钟和30分钟内达到最大效应。对来自同一条鱼的成对上皮细胞同时进行³⁶Cl⁻和²²Na⁺单向通量测定。浆膜侧的Ba²⁺和黏膜侧的Cu²⁺分别抑制氯离子分泌通量30.2%和58.9%。抑制后产生的净氯离子通量与测得的平均Isc无显著差异。两种离子对氯离子内流(从黏膜到浆膜)或单向钠离子通量均无显著影响。这些结果表明,Ba²⁺和Cu²⁺的作用很可能仅作用于跨细胞氯离子途径。有人提出Ba²⁺通过阻断基底外侧钾通道、使细胞去极化以及降低氯离子跨顶膜的电化学驱动力来抑制氯离子分泌。有人提出Cu²⁺通过阻断顶膜氯离子通道来抑制氯离子分泌。(摘要截短于250词)

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