毒蕈碱受体参与人纤毛肌细胞功能的表征。

I H Pang, S Matsumoto, E Tamm, L DeSantis
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引用次数: 21

摘要

毒蕈碱激动剂引起的纤毛肌收缩通常被认为增加了水流出设施和调节效果。我们以培养的人纤毛肌细胞为模型,研究参与肌肉收缩反应的毒蕈碱受体亚型。因此,开发了这些肌肉细胞的单细胞收缩试验。由于激动剂诱导的平滑肌收缩预计涉及磷脂酶C (PLC)的激活,我们还监测了这些细胞中的PLC活性。Carbachol引起肌肉细胞的收缩呈剂量依赖性和时间依赖性,估计EC50为1-3微米。100 μ m卡巴醇的收缩作用可被阿托品(1 μ m)和4DAMP (10 μ m, M1和M3受体选择性拮抗剂)的预处理所拮抗,但不能被匹伦齐平(10 μ m, M1受体选择性拮抗剂)所拮抗,提示与M3而非M1毒蕈碱受体有关。M3受体对于碳水化合物诱导的睫状肌细胞PLC激活也是必不可少的,正如受体亚型选择性拮抗剂的活性谱所示。例如,氯巴酚(EC50 = 20微米)的刺激作用被吡仑齐平(pKi = 6.8)、HHSiD (pKi = 7.6)、4DAMP (pKi = 9.5)和甲氧曲明(pKi < 6)所拮抗。因此,这些结果表明,在介导毒碱激动剂诱导的纤毛肌功能变化(如PLC激活或肌肉收缩)中,一种m3样受体亚型是必不可少的。
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Characterization of muscarinic receptor involvement in human ciliary muscle cell function.

Muscarinic agonist-induced contraction of the ciliary muscle is generally believed to increase aqueous outflow facility and effect accommodation. We used cultured human ciliary muscle cells as a model to study the muscarinic receptor subtype(s) involved in the contractile response of the muscle. Thus, a single cell contraction assay for these muscle cells was developed. And since agonist-induced contraction of smooth muscles is expected to involve the activation of phospholipase C (PLC), we also monitored the PLC activity in these cells. Carbachol caused contraction of the muscle cells in a dose-dependent and time-dependent manner with an estimated EC50 of 1-3 microM. The contractile effect of 100 microM carbachol was antagonized by pretreatment of atropine (1 microM) and 4DAMP (10 nM, antagonist selective for the M1 and M3 receptors) but not by pirenzepine (10 microM, antagonist selective for the M1 receptor), suggesting the involvement of the M3 but not the M1 muscarinic receptor. M3 receptor is also essential for the carbachol-induced PLC activation in the ciliary muscle cells, as indicated by the activity profiles of receptor subtype selective antagonists. For example, the stimulative effect of carbachol (EC50 = 20 microM) was antagonized by pirenzepine (pKi = 6.8), HHSiD (pKi = 7.6), 4DAMP (pKi = 9.5) and methoctramine (pKi < 6). Thus, these results indicate that an M3-like receptor subtype is essential in mediating the muscarinic agonists-induced functional changes, such as PLC activation or muscle contraction, in the ciliary muscle.

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