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Nerve-released acetylcholine contracts urinary bladder smooth muscle by inducing action potentials independently of IP3-mediated calcium release

机译:神经释放的乙酰胆碱通过诱导动作电位而独立于IP3介导的钙释放来收缩膀胱平滑肌

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摘要

Nerve-released ACh is the main stimulus for contraction of urinary bladder smooth muscle (UBSM). Here, the mechanisms by which ACh contracts UBSM are explored by determining Ca2+ and electrical signals induced by nerve-released ACh. Photolysis of caged inositol 1,4,5-trisphosphate (IP3) evoked Ca2+ release from the sarcoplasmic reticulum. Electrical field stimulation (20 Hz) induced Ca2+ waves within the smooth muscle that were present only during stimulus application. Ca2+ waves were blocked by inhibition of muscarinic ACh receptors (mAChRs) with atropine and depletion of sarcoplasmic reticulum Ca2+ stores with cyclopiazonic acid (CPA), and therefore likely reflect activation of IP3 receptors (IP3Rs). Electrical field stimulation also increased excitability to induce action potentials (APs) that were accompanied by Ca2+ flashes, reflecting Ca2+ entry through voltage-dependent Ca2+ channels (VDCCs) during the action potential. The evoked Ca2+ flashes and APs occurred as a burst with a lag time of ∼1.5 s after onset of stimulation. They were not inhibited by blocking IP3-mediated Ca2+ waves, but by blockers of mAChRs (atropine) and VDCCs (diltiazem). Nerve-evoked contractions of UBSM strips were greatly reduced by blocking VDCCs, but not by preventing IP3-mediated Ca2+ signaling with cyclopiazonic acid or inhibition of PLC with U73122. These results indicate that ACh released from nerve varicosities induces IP3-mediated Ca2+ waves during stimulation; but contrary to expectations, these signals do not appear to participate in contraction. In addition, our data provide compelling evidence that UBSM contractions evoked by nerve-released ACh depend on increased excitability and the resultant Ca2+ entry through VDCCs during APs.
机译:神经释放的乙酰胆碱是膀胱平滑肌(UBSM)收缩的主要刺激物。在这里,通过确定神经释放的ACh诱导的Ca2 +和电信号来探索ACh与UBSM发生收缩的机制。笼状肌醇1,4,5-三磷酸酯(IP3)的光解引起肌浆网释放Ca2 +。电场刺激(20 Hz)诱导平滑肌内的Ca2 +波,仅在施加刺激时才会出现。 Ca2 +波被阿托品抑制毒蕈碱型ACh受体(mAChRs)和肌浆网Ca2 +储存用环吡唑酸(CPA)抑制而被阻断,因此可能反映IP3受体(IP3Rs)的激活。电场刺激还增加了诱发伴随Ca2 +闪烁的动作电位(AP)的兴奋性,反映了Ca2 +在动作电位期间通过电压依赖性Ca2 +通道(VDCC)进入。刺激开始后,诱发的Ca2 +闪烁和AP爆发,约1.5 s的滞后时间。它们不受阻断IP3介导的Ca2 +波的抑制,而不受mAChR(阿托品)和VDCC(地尔硫卓)的阻断剂的抑制。 UBSM条带的神经诱发收缩可通过阻断VDCC而大大降低,但不能通过用环吡唑酸防止IP3介导的Ca2 +信号传导或通过U73122抑制PLC来降低。这些结果表明从神经静脉曲张释放的乙酰胆碱在刺激过程中诱导IP3介导的Ca2 +波。但是与预期相反,这些信号似乎没有参与收缩。此外,我们的数据提供了令人信服的证据,即神经释放的乙酰胆碱引起的UBSM收缩取决于增加的兴奋性以及在AP期间通过VDCC产生的Ca2 +进入。

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