细胞外酸对培养大鼠支持细胞中氯离子通道的抑制作用。

Reproduction, nutrition, development Pub Date : 2006-05-01 Epub Date: 2006-05-30 DOI:10.1051/rnd:2006013
Céline Auzanneau, Caroline Norez, Sabrina Noël, Chantal Jougla, Frédéric Becq, Clarisse Vandebrouck
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引用次数: 14

摘要

哺乳动物睾丸的支持细胞是参与干细胞精原细胞发育和维持以及向精小管腔分泌富含Cl(-)和K(+)的液体的关键细胞。采用全细胞膜片钳和碘离子外排实验对培养的大鼠支持细胞进行了研究,探讨了Cl(-)通道的药理作用和对支持细胞生理的贡献。我们表征了一种向外整流的Cl(-)电流,这种电流受到多种酸的刺激,包括与生理相关的乳酸。利用碘化物外排技术,该Cl(-)电流的药理学性质,即ICl(酸),揭示了DIDS (IC(50) = 27微米)、格列本脲(IC(50) = 31微米)和DPC (IC(50) = 86微米)对Ca(2+)不依赖的抑制作用。ICl(酸)不受杯[4]芳烃和9-AC的影响。抑制ICl(酸)的效价顺序为:DIDS近似为格列本脲> DPC >杯[4]芳烃,9-AC。相比而言,肿胀和ATP激活的Cl(-)电流在Sertoli细胞中的抑制谱为DPC = DIDS >>格列本脲= 9-AC(肿胀),DPC = 9-AC = DIDS >>格列本脲(ATP)。这一描述为内源性Cl(-)通道的生理学和药理学提供了新的见解,这些通道表达并可能参与支持细胞的液体分泌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmacological profile of inhibition of the chloride channels activated by extracellular acid in cultured rat Sertoli cells.

Sertoli cells from mammalian testis are key cells involved in the development and maintenance of stem cell spermatogonia as well as in the secretion of a Cl(-) and K(+)-rich fluid into the lumen of seminiferous tubules. The pharmacology and contribution of Cl(-) channels to the physiology of Sertoli cells were investigated using whole-cell patch clamp and iodide efflux experiments applied to cultured rat Sertoli cells. We characterized an outwardly rectifying Cl(-) current stimulated by various acid species including the physiologically relevant lactic acid. Using the iodide efflux technique, the pharmacological properties of this Cl(-) current, noted ICl(acid), revealed Ca(2+)-independent inhibition by DIDS (IC(50) = 27 microM), glibenclamide (IC(50) = 31 microM) and DPC (IC(50) = 86 microM). ICl(acid) was neither affected by calix[4]arene nor by 9-AC. The order of potency for inhibition of ICl(acid) is DIDS approximately glibenclamide > DPC >> calix[4]arene, 9-AC. For comparison, the inhibitory profile of the swelling- and ATP-activated Cl(-) currents in Sertoli cells is DPC = DIDS >> glibenclamide = 9-AC for ICl(swell) and DPC = 9-AC = DIDS >> glibenclamide for ICl(ATP). This description provides new insights into the physiology and pharmacology of the endogenous Cl(-) channels expressed and potentially involved in fluid secretion in Sertoli cells.

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