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Simultaneous imaging of Ca2+ signals in interstitial cells of Cajal and longitudinal smooth muscle cells during rhythmic activity in mouse ileum

机译:小鼠回肠节律性活动期间Cajal间质细胞和纵向平滑肌细胞中Ca2 +信号的同时成像

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摘要

Electrical rhythmicity in smooth muscle cells is essential for the movement of the gastrointestinal tract. Interstitial cells of Cajal (ICC) lie adjacent to smooth muscle layers and are implicated as the pacemaker cells. However, the pace making mechanism remains unclear. To study the intercellular interaction during electrical rhythm generation, we visualized changes in intracellular Ca2+ concentration ([Ca2+]i) in smooth muscle cells and myenteric ICC within segments of mouse ileum loaded with a fluorescent Ca2+ indicator, fluo-3. We observed rhythmic [Ca2+]i changes in longitudinal smooth muscle cells travelling rapidly through the smooth muscle cell layer. Between the rhythmic Ca2+ transients, we found brief Ca2+ transients localized to small areas within smooth muscle cells. The amplitude but not the periodicity of rhythmic [Ca2+]i transients in both cell types was partially inhibited by nicardipine, an L-type Ca2+ channel antagonist, suggesting that the rhythmic [Ca2+]i transients reflect membrane potential depolarizations corresponding to both slow waves and triggered Ca2+ spikes. Longitudinal smooth muscle cells and myenteric ICC showed synchronous spontaneous [Ca2+]i transients in eight out of 21 ileac preparations analysed. In the remaining preparations, the synchrony between ICC and smooth muscle cells was absent, although the rhythmicity of the smooth muscle cells was not disturbed. These results suggest that myenteric ICC may play multiple roles including pace making for physiological bowel movement.
机译:平滑肌细胞的电节律对于胃肠道的运动至关重要。 Cajal的间质细胞(ICC)与平滑肌层相邻,与起搏器细胞有关。但是,起搏机制仍不清楚。为了研究电节律产生过程中的细胞间相互作用,我们观察了平滑肌细胞和肌节ICC中细胞内Ca 2 + 浓度([Ca 2 + ] i)的变化装有荧光Ca 2 + 指示剂fluo-3的小鼠回肠。我们观察到[Ca 2 + ] i在节律性[Ca 2 + ] i的变化,其迅速穿过平滑肌细胞层。在有节奏的Ca 2 + 瞬变之间,我们发现短暂的Ca 2 + 瞬变位于平滑肌细胞内的小区域。尼卡地平(一种L型Ca 2 + 通道拮抗剂)部分抑制了两种细胞中节律性[Ca 2 + ] i瞬变的幅度,但没有抑制其周期性。有节奏的[Ca 2 + ] i瞬变反映了对应于慢波和触发的Ca 2 + 尖峰的膜电位去极化。在分析的21种回肠制剂中,有8种的纵向平滑肌细胞和肌间ICC表现出同步的自发[Ca 2 + ] i瞬变。在其余的制剂中,尽管平滑肌细胞的节律性没有受到干扰,但ICC和平滑肌细胞之间却没有同步。这些结果表明,肠肌ICC可能起多种作用,包括为生理性肠蠕动起搏。

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