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Ca 2+ 2+ signalling behaviours of intramuscular interstitial cells of Cajal in the murine colon

机译:CA 2+ 2+ CAJAL在鼠冒号中的肌肉内间质细胞的信号行为

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Key points Colonic intramuscular interstitial cells of Cajal (ICC‐IM) exhibit spontaneous Ca 2+ transients manifesting as stochastic events from multiple firing sites with propagating Ca 2+ waves occasionally observed. Firing of Ca 2+ transients in ICC‐IM is not coordinated with adjacent ICC‐IM in a field of view or even with events from other firing sites within a single cell. Ca 2+ transients, through activation of Ano1 channels and generation of inward current, cause net depolarization of colonic muscles. Ca 2+ transients in ICC‐IM rely on Ca 2+ release from the endoplasmic reticulum via IP 3 receptors, spatial amplification from RyRs and ongoing refilling of ER via the sarcoplasmic/endoplasmic‐reticulum‐Ca 2+ ‐ATPase. ICC‐IM are sustained by voltage‐independent Ca 2+ influx via store‐operated Ca 2+ entry. Some of the properties of Ca 2+ in ICC‐IM in the colon are similar to the behaviour of ICC located in the deep muscular plexus region of the small intestine, suggesting there are functional similarities between these classes of ICC. Abstract A component of the SIP syncytium that regulates smooth muscle excitability in the colon is the intramuscular class of interstitial cells of Cajal (ICC‐IM). All classes of ICC (including ICC‐IM) express Ca 2+ ‐activated Cl ? channels, encoded by Ano1 , and rely upon this conductance for physiological functions. Thus, Ca 2+ handling in ICC is fundamental to colonic motility. We examined Ca 2+ handling mechanisms in ICC‐IM of murine proximal colon expressing GCaMP6f in ICC. Several Ca 2+ firing sites were detected in each cell. While individual sites displayed rhythmic Ca 2+ events, the overall pattern of Ca 2+ transients was stochastic. No correlation was found between discrete Ca 2+ firing sites in the same cell or in adjacent cells. Ca 2+ transients in some cells initiated Ca 2+ waves that spread along the cell at ~100?μm?s ?1 . Ca 2+ transients were caused by release from intracellular stores, but depended strongly on store‐operated Ca 2+ entry mechanisms. ICC Ca 2+ transient firing regulated the resting membrane potential of colonic tissues as a specific Ano1 antagonist hyperpolarized colonic muscles by ~10?mV. Ca 2+ transient firing was independent of membrane potential and not affected by blockade of L‐ or T‐type Ca 2+ channels. Mechanisms regulating Ca 2+ transients in the proximal colon displayed both similarities to and differences from the intramuscular type of ICC in the small intestine. Similarities and differences in Ca 2+ release patterns might determine how ICC respond to neurotransmission in these two regions of the gastrointestinal tract.
机译:CAJAL(ICC-IM)的关键点结肠肌内间质细胞表现出自发的Ca 2+瞬变,作为来自多个烧制部位的随机事件,偶尔观察到传播CA 2+波。在ICC-IM中的CA 2+瞬态的射击不与视野中的相邻ICC-IM协调,甚至在单个小区中的其他射击站点中的事件。 CA 2+瞬变,通过激活ANO1通道和向内电流产生,导致结肠肌的净去极化。 ICC-IM中的Ca 2+瞬变依赖于通过IP 3受体从内质网的Ca 2+释放,通过肌肉/内质/内质 - 网-Ca 2+ -ATPase从Ryrs和On onegare再填充ER的空间扩增。 ICC-IM通过电压无关的CA 2+流入通过存储操作的CA 2+入口来维持。结肠ICC-IM中CA 2+的一些性质类似于位于小肠的深肌丛区域的ICC的行为类似,表明这些类别的ICC之间存在功能性相似。摘要调节结肠中调节平滑肌兴奋性的SIP Syncytium的组成部分是Cajal(ICC-IM)的肌内间质细胞的肌内细胞。所有类别的ICC(包括ICC-IM)表达CA 2+ -Activated CL?由ANO1编码的频道,依靠该电导进行生理功能。因此,ICC中的CA 2+处理是结肠运动的基础。我们在ICC中表达GCAMP6F的鼠近端结肠的ICC-IM中检查了CA 2+处理机制。在每个细胞中检测到几种Ca 2+烧制部位。虽然各个站点显示有节奏CA 2+事件,但CA 2+瞬态的整体模式是随机的。在同一细胞中的离散Ca 2+烧制位点或相邻电池中没有发现相关性。在某些细胞中的CA 2+瞬变引发了沿着电池在〜100Ω·s≤1的CA 2+波。 CA 2+瞬变是由细胞内商店的释放引起的,但依赖于商店操作的CA 2+进入机制。 ICC CA 2+瞬态烧制将结肠组织的静止膜电位调节为特定的ANO1拮抗剂超极化结肠肌〜10?MV。 Ca 2+瞬态烧制与膜电位无关,不受阻断的L-或T型Ca 2+通道的影响。调节近端结肠中的Ca 2+瞬变调节Ca 2+瞬变的机制显示出与小肠中ICC肌内类型的相似之处和差异。 CA 2+释放模式的相似性和差异可能决定ICC如何在胃肠道的这两个区域中对神经传递进行响应。

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