首页> 美国卫生研究院文献>The Journal of Physiology >Separate agonist-specific oscillatory mechanisms in cultured human sweat duct cells.
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Separate agonist-specific oscillatory mechanisms in cultured human sweat duct cells.

机译:培养的人汗管细胞中单独的激动剂特异性振荡机制。

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摘要

1. Cultured sweat duct cells (CSDCs) were grown to confluency on a permeable support, and the pharmacological ion transport regulation was assayed by transepithelial voltage clamp techniques. 2. Exposure of the serosal membrane of CSDCs to methacholine (MCh), lysylbradykinin (LBK) or histamine produced an oscillating short-circuit current (Iscc) response, which could be divided in an initial transient phase and a sustained oscillating phase, the latter of which was totally dependent on external Ca2+. 3. The Iscc responses evoked by LBK and histamine were, in contrast to the cholinergic response, characterized by a marked desensitization and short duration of the subsequent phase of Iscc oscillations. 4. Prolonged Iscc oscillations, reflecting continuous Ca2+ influx, were seen following MCh stimulation, and in response to LBK or histamine stimulation, when cells had been pre-treated with MCh. This pre-treatment effect of MCh was independent of continuous muscarinic receptor occupation, and it was unrelated to nicotinic receptor occupation. 5. It is suggested that MCh stimulation selectively initiates an influx of Ca2+ to an intracellular pool, from where Ca2+ can be discharged repetitively. In contrast, LBK and histamine only activate discharge of Ca2+ from such an intracellular pool, resulting in a limited response, given no prior stimulation by MCh of the Ca2+ influx mechanism.
机译:1.培养的汗管细胞(CSDC)在可渗透的支持物上生长至汇合,并通过跨上皮电压钳技术测定药理学离子迁移调节。 2. CSDC的浆膜暴露于乙酰甲胆碱(MCh),赖氨酰缓激肽(LBK)或组胺会产生振荡短路电流(Iscc)反应,该反应可分为初始瞬态阶段和持续振荡阶段,后者其中完全依赖于外部Ca2 +。 3.与胆碱能反应相反,LBK和组胺引起的Iscc反应的特征在于明显的脱敏和随后Iscc振荡阶段的持续时间短。 4.当用MCh预处理细胞后,在MCh刺激后以及响应LBK或组胺刺激时,观察到长时间的Iscc振荡,反映了连续的Ca2 +流入。 MCh的这种预处理效果与连续的毒蕈碱受体占领无关,并且与烟碱样受体占领无关。 5.建议MCh刺激选择性地引起Ca2 +流入细胞内池,Ca2 +可以从细胞池中反复排出。相反,LBK和组胺仅激活Ca2 +从这种细胞内池的释放,导致响应受限,因为MCh事先没有对Ca2 +内流机制的刺激。

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