首页> 外文期刊>American Journal of Physiology >Loss of responsiveness of circular smooth muscle cells from the guinea pig ileum is associated with changes in gap junction coupling
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Loss of responsiveness of circular smooth muscle cells from the guinea pig ileum is associated with changes in gap junction coupling

机译:豚鼠回肠中圆形平滑肌细胞反应性的丧失与间隙连接偶联的改变有关

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摘要

Gap junction coupling and neuromuscular transmission to smooth muscle were studied in the first 4 h after preparations were set up in vitro. Intracellular recordings were made from smooth muscle cells of guinea pig ileum. Fast inhibitory junction potentials (IJPs) were small (1.3 ± 1.0 mV) in the first 30 min but increased significantly over the first 120 min to 15.8 ± 0.9 mV (n = 12, P < 0.001). Comparable increases in slow IJPs and excitatory junction potentials were- also observed. During the same period, resting membrane potential depolarized from -58.8 ± 1.4 to -47.2 ± 0.4 mV (n = 12, P < 0.001). Input resistance, estimated by intracellular current injection, decreased in parallel (P < 0.05), and dye coupling, measured by intracellular injection of carboxyfluorescein, increased (P < 0.001). Input resistance was higher and dye coupling was less in longitudinal than circular smooth muscle cells. Gap junction blockers [carbenox-olone (100 muM), 18beta-glycyrrhetinic acid (10 muM), and 2-amino-ethoxydiphenyl borate (50 muM)] hyperpolarized coupled circular smooth muscle cells, reduced the amplitude of fast and slow IJPs and excitatory junction potentials, increased input resistance, and reduced dye coupling. Local application of ATP (10 mM) mimicked IJPs and showed comparable increases in amplitude over the first 120 min; carbenoxolone and 2-aminoethoxydiphenyl borate significantly reduced ATP-evoked hyperpolarizations in coupled cells. In contrast, synaptic transmission between myenteric neurons was not suppressed during the first 30 min. Gap junction coupling between circular smooth muscle cells in isolated preparations was initially disrupted but recovered over the next 120 min to a steady level. This was associated with potent effects on neuromuscular transmission and responses to exogenous ATP.
机译:在体外建立制剂后的最初4小时内,研究了间隙连接偶联和神经肌肉向平滑肌的传递。从豚鼠回肠的平滑肌细胞进行细胞内记录。快速抑制连接电位(IJP)在最初的30分钟内很小(1.3±1.0 mV),但在最初的120分钟内显着增加到15.8±0.9 mV(n = 12,P <0.001)。还观察到缓慢的IJP和兴奋性连接电位的可比增加。在同一时期,静息膜电位从-58.8±1.4减至-47.2±0.4 mV(n = 12,P <0.001)。通过细胞内电流注入估计的输入电阻平行降低(P <0.05),而通过细胞内羧基羧基荧光素测量的染料偶联增加(P <0.001)。与圆形平滑肌细胞相比,纵向上的输入阻力更高,染料偶联更少。间隙连接阻滞剂[carbenox-olone(100μM),18beta-甘草次酸(10μM)和2-氨基-乙氧基二苯基硼酸盐(50μM)]超极化耦合的环状平滑肌细胞,降低了IJPs快慢和兴奋性的幅度结电位,增加的输入电阻和减少的染料偶联。 ATP(10 mM)的局部应用模仿了IJP,并在最初的120分钟内显示出相当的幅度增加;羧苄酮和2-氨基乙氧基二苯基硼酸盐可显着降低偶联细胞中ATP引起的超极化。相反,在最初的30分钟内,肌间神经元之间的突触传递没有受到抑制。最初分离的制剂中圆形平滑肌细胞之间的间隙连接偶联最初被破坏,但是在接下来的120分钟内恢复到稳定水平。这与对神经肌肉传递和对外源ATP的反应的有效作用有关。

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