首页> 美国卫生研究院文献>The Journal of Physiology >Nerve-evoked purinergic signalling suppresses action potentials Ca2+ flashes and contractility evoked by muscarinic receptor activation in mouse urinary bladder smooth muscle
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Nerve-evoked purinergic signalling suppresses action potentials Ca2+ flashes and contractility evoked by muscarinic receptor activation in mouse urinary bladder smooth muscle

机译:神经诱发的嘌呤能信号传导抑制鼠膀胱平滑肌中毒蕈碱受体激活引起的动作电位Ca2 +闪烁和收缩

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摘要

Contraction of urinary bladder smooth muscle (UBSM) is caused by the release of ATP and ACh from parasympathetic nerves. Although both purinergic and muscarinic pathways are important to contraction, their relative contributions and signalling mechanisms are not well understood. Here, the contributions of each pathway to urinary bladder contraction and the underlying electrical and Ca2+ signalling events were examined in UBSM strips from wild type mice and mice deficient in P2X1 receptors (P2X1−/−) before and after pharmacological inhibition of purinergic and muscarinic receptors. Electrical field stimulation was used to excite parasympathetic nerves to increase action potentials, Ca2+ flash frequency, and force. Loss of P2X1 function not only eliminated action potentials and Ca2+ flashes during stimulation, but it also led to a significant increase in Ca2+ flashes following stimulation and a corresponding increase in the force transient. Block of muscarinic receptors did not affect action potentials or Ca2+ flashes during stimulation, but prevented them following stimulation. These findings indicate that nerve excitation leads to rapid engagement of smooth muscle P2X1 receptors to increase action potentials (Ca2+ flashes) during stimulation, and a delayed increase in excitability in response to muscarinic receptor activation. Together, purinergic and muscarinic stimulation shape the time course of force transients. Furthermore, this study reveals a novel inhibitory effect of P2X1 receptor activation on subsequent increases in muscarinic-driven excitability and force generation.
机译:副交感神经释放ATP和ACh引起膀胱平滑肌(UBSM)收缩。虽然嘌呤能通路和毒蕈碱通路都对收缩很重要,但它们的相对作用和信号传导机制尚不十分清楚。在这里,在野生型小鼠和缺乏P2X1受体的小鼠的UBSM条中检查了每种途径对膀胱收缩以及潜在的电和Ca 2 + 信号传导事件的贡献(P2X1 -/ − )在对嘌呤能和毒蕈碱受体进行药理抑制之前和之后。电场刺激可激发副交感神经,以增加动作电位,Ca 2 + 闪光频率和作用力。 P2X1功能的丧失不仅消除了刺激期间的动作电位和Ca 2 + 闪烁,而且导致刺激后Ca 2 + 闪烁显着增加,并相应增加在力瞬变中。毒蕈碱受体的阻滞不影响刺激过程中的动作电位或Ca 2 + 闪烁,但在刺激后阻止它们。这些发现表明,神经兴奋导致平滑肌P2X1受体快速参与,从而在刺激过程中增加动作电位(Ca 2 + 闪烁),并响应毒蕈碱受体激活而延迟增加兴奋性。嘌呤能和毒蕈碱刺激共同作用于力瞬变的时间过程。此外,这项研究揭示了P2X1受体激活对毒蕈碱驱动的兴奋性和产生力随后增加的新抑制作用。

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