Goto Kazunori, Matsuoka Satoshi, Noma Akinori
Department of Physiology, Faculty of Medicine, Kyoto University, Yoshida-Konoe, Sakyo-ku, Kyoto 606-8501, Japan.
J Physiol. 2004 Sep 1;559(Pt 2):411-22. doi: 10.1113/jphysiol.2004.063875. Epub 2004 Jul 2.
To explore the electrophysiological properties of the interstitial cells of Cajal (ICCs) and fibroblast-like cells (FLCs), we developed a new preparation by treating the murine small intestine with collagenase. This thin muscle layer preparation contained at least two types of interstitial cells around the enteric nerve bundles, and the cluster of smooth muscle cells displayed a rhythmic contraction. We morphologically identified ICCs and FLCs and conducted patch clamp experiments on each type of cell. The c-kit-positive CD34-negative ICCs showed spontaneous and rhythmic potential fluctuations, and a large transient inward current was evoked by depolarization under voltage clamp conditions. Once the inward current was triggered, it took a regenerative time course and lasted approximately 500 ms. The current was inactivated by continuous depolarization, and by removal of external Ca2+. The application of acetylcholine (ACh) prolonged the duration of spontaneous depolarization as well as the depolarization-induced inward current. This inward current showed a reversal potential of around +3 mV and was considered to be due to non-selective cation channels. The c-kit-negative CD34-positive FLCs showed irregular or regular potential fluctuations, and spontaneous outward current was observed under voltage clamp conditions. This outward current showed a reversal potential of around -80 mV and might be classified as a potassium current. We failed to observe major time- and voltage-dependent currents except the above two currents in the interstitial cells.
为了探究 Cajal 间质细胞(ICCs)和成纤维细胞样细胞(FLCs)的电生理特性,我们通过用胶原酶处理小鼠小肠开发了一种新的制备方法。这种薄肌层制备物在肠神经束周围包含至少两种类型的间质细胞,并且平滑肌细胞簇呈现出节律性收缩。我们从形态学上鉴定了 ICCs 和 FLCs,并对每种类型的细胞进行了膜片钳实验。c-kit 阳性 CD34 阴性的 ICCs 表现出自发性和节律性的电位波动,并且在电压钳制条件下,去极化可诱发一个大的瞬时内向电流。一旦触发内向电流,它会呈现再生性时程并持续约 500 毫秒。该电流通过持续去极化以及去除细胞外 Ca2+ 而失活。乙酰胆碱(ACh)的应用延长了自发去极化的持续时间以及去极化诱导的内向电流。这种内向电流的反转电位约为 +3 mV,被认为是由于非选择性阳离子通道所致。c-kit 阴性 CD34 阳性的 FLCs 表现出不规则或规则的电位波动,并且在电压钳制条件下观察到自发外向电流。这种外向电流的反转电位约为 -80 mV,可能归类为钾电流。除了上述两种电流外,我们在间质细胞中未观察到主要的时间和电压依赖性电流。