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首页> 外文期刊>Journal of Muscle Research and Cell Motility >A possible role of the cholinergic and purinergic receptor interaction in the regulation of the rat urinary bladder function
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A possible role of the cholinergic and purinergic receptor interaction in the regulation of the rat urinary bladder function

机译:胆碱能和嘌呤能受体相互作用在调节大鼠膀胱功能中的可能作用

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The contractile activation of the upper (dome) and lower (base) parts of the urinary bladder show some differences. Cellular mechanisms that might be responsible for cholinergic effects blocking non-adrenergic non-cholinergic contractions in the base of the rat urinary bladder were investigated. Smooth muscle cells were thus freshly isolated or cultured both from the dome and the base of the rat urinary bladder and the contribution from cholinergic and purinergic pathways to their Ca2+ homeostasis was examined. The expression of nicotinic acetylcholine (nAChR) and P2X2 purinergic receptors on the cultured cells and on tissue sections was investigated. The ATP-evoked Ca2+ transients in rat smooth muscle cells did not show any desensitization. However, when ATP was administered together with carbamylcholine (CCh), the latter essentially prevented ATP from evoking Ca2+ transients in smooth muscle cells from the base (suppression to 12 ± 2.5% of control, n = 57; p 0.01), but not from the dome (99 ± 5% of control, n = 52; p 0.05) of the rat urinary bladder. While atropine was unable to modify (6 ± 3% of control, n = 14; p 0.05), α-bungarotoxin (118 ± 12% of control, n = 20; p 0.05) blocked the inhibitory effects of CCh. Additionally, α7 subunits of nAChR and P2X2 purinergic receptors were identified using immunocytochemistry, immunohistochemistry, and Western blot in cultured urinary bladder smooth muscle cells, in urinary bladder sections, and in urinary bladder muscle strips, respectively, suggesting that the activation of nAChR modifies the action of ATP.
机译:膀胱上部(圆顶)和下部(底部)的收缩活化表现出一些差异。研究了可能导致胆碱能阻滞大鼠膀胱根部非肾上腺能非胆碱能收缩的细胞机制。因此,从大鼠膀胱的圆顶和底部新鲜分离或培养了平滑肌细胞,并研究了胆碱能和嘌呤能途径对其Ca 2+稳态的贡献。研究了烟碱乙酰胆碱(nAChR)和P2X2嘌呤能受体在培养细胞和组织切片上的表达。在大鼠平滑肌细胞中,ATP诱发的Ca2 + 瞬变没有表现出任何脱敏作用。但是,将ATP与氨甲酰胆碱(CCh)一起使用时,后者实质上阻止了ATP在平滑肌细胞中引起碱基的Ca2 +瞬变(抑制至对照组的12±2.5%,n = 57; p <0.01 ),但不是来自大鼠膀胱的穹顶(对照组的99±5%,n = 52; p> 0.05)。尽管阿托品无法改变(对照组的6±3%,n = 14; p <0.05),但α-真菌毒素(对照组的118±12%,n = 20; p> 0.05)阻止了CCh的抑制作用。此外,分别在培养的膀胱平滑肌细胞,膀胱切片和膀胱肌条中使用免疫细胞化学,免疫组化和Western blot鉴定了nAChR和P2X2嘌呤能受体的α7亚基,这表明nAChR的激活修饰了ATP的作用。

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