首页> 美国卫生研究院文献>The Journal of Physiology >Electrical coupling of circular muscle to longitudinal muscle and interstitial cells of Cajal in canine colon.
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Electrical coupling of circular muscle to longitudinal muscle and interstitial cells of Cajal in canine colon.

机译:环状结肠与犬结肠中Cajal的纵向肌肉和间质细胞的电耦合。

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摘要

1. Electrical communication between circular muscle, longitudinal muscle and interstitial cells of Cajal (ICC) was investigated; the hypothesis was tested that the resting membrane potential (RMP) gradient in the circular muscle of canine colon is caused by electrical coupling to neighbouring cells. 2. Isolated longitudinal muscle exhibited spike-like action potentials at a RMP of -45 mV with a frequency and amplitude of 20 cycles/min and 12 mV, respectively. 3. The circular muscle (CM), devoid of longitudinal muscle, myenteric plexus and submuscular ICC-smooth-muscle network, was electrically quiescent at a uniform RMP of -62 mV across the entire circular muscle layer. 4. Preparations consisting of only the submuscular ICC network and a few adjacent layers of circular muscle cells exhibited slow wave-type action potentials at a RMP of about -80 mV. 5. In ICC-CM preparations, consisting of the submuscular ICC network and circular muscle, a RMP gradient of 10 mV was observed near the submucosal border, whereas the RMP was constant at -62 mV in the myenteric half of the circular muscle. 6. In full thickness (FT) preparations, a RMP gradient of 23 mV was observed. The RMP decreased gradually from -71 mV at the submucosal border to -48 mV at the myenteric border of the circular muscle. 7. Coupling of longitudinal muscle to circular muscle caused circular muscle cells at the myenteric surface to depolarize by 14 mV and longitudinal muscle cells to hyperpolarize by 3 mV. 8. In the ICC-CM preparations, the slow wave amplitudes did not decay exponentially away from the ICC network indicating that slow waves propagated actively into the circular muscle; in the FT preparations there was an apparent exponential decay but this was due to the RMP gradient. 9. Spike-like action potentials (SLAPs) superimposed on the plateau phase of slow waves did not decay exponentially away from the myenteric border suggesting that SLAPs were generated within the circular muscle layer. 10. In summary, circular muscle cells possess a uniform intrinsic RMP of -62 mV. The RMP gradient in situ is caused by electrical coupling of circular muscle cells to longitudinal muscle cells and the submuscular network of ICC. In situ, slow wave-type action potentials propagate actively into the circular muscle layer, and, dependent on the level of excitation, circular muscle cells actively generate spikes.
机译:1.研究了Cajal(ICC)的环状肌,纵向肌与间质细胞之间的电连通;检验了假说,犬结肠圆肌中的静息膜电位(RMP)梯度是由与邻近细胞的电耦合引起的。 2.分离出的纵向肌肉在-45 mV的RMP处表现出类似尖峰的动作电位,其频率和幅度分别为20个周期/分钟和12 mV。 3.缺乏纵肌,肌间神经丛和肌下ICC平滑肌网络的环形肌(CM)在整个环形肌层上以-62 mV的均匀RMP处于电静止状态。 4.仅由肌下ICC网络和几个相邻的环形肌细胞层组成的制剂在约-80mV的RMP下显示出慢波型动作电位。 5.在由肌下ICC网络和环形肌组成的ICC-CM制剂中,在粘膜下边界附近观察到RMP梯度为10 mV,而在环形肌的肌间半部,RMP恒定在-62 mV。 6.在全厚度(FT)制剂中,观察到RMP梯度为23 mV。 RMP从粘膜下边界处的-71 mV逐渐降低至环形肌肉肌间界处的-48 mV。 7.纵向肌肉与环形肌肉的耦合导致肌层表面的环形肌肉细胞去极化14mV,而纵向肌肉细胞超极化3mV。 8.在ICC-CM的准备工作中,慢波振幅并未从ICC网络上呈指数衰减,这表明慢波主动传播到了环形肌肉中。在FT准备中,存在明显的指数衰减,但这是由于RMP梯度引起的。 9.叠加在慢波高原阶段的类穗状动作电位(SLAPs)并没有远离肌层边界呈指数衰减,这表明SLAPs是在环形肌层内产生的。 10.总之,环形肌细胞具有-62 mV的均匀固有RMP。原位RMP梯度是由环状肌细胞与纵向肌细胞和ICC的亚肌网络电耦合引起的。慢波型动作电位在原位主动传播到环状肌层中,并且取决于激发的程度,环状肌细胞会主动产生尖峰。

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