Xue C, Ward S M, Shuttleworth C W, Sanders K M
Department of Physiology, University of Nevada, School of Medicine, Reno 89557.
Histochemistry. 1993 May;99(5):373-84. doi: 10.1007/BF00717050.
In gastrointestinal muscles special cells, referred to an interstitial cells, may be involved in pacemaking and transduction of inputs from the enteric nervous system. We have used a modification of the NADH diaphorase method to characterize the distribution of interstitial cells in the muscularis externa of the canine colon. The staining product of the NADH diaphorase reaction is useful because it allows light and electron microscopic studies to be performed with the same marker. Therefore rigorous identification of the cells observed at the light microscopic level could be made by electron microscopy. We were able to label at least three classes of interstitial cells: (1) at the submucosal surface of the circular muscle layer; (2) within the thickness of the circular and longitudinal muscle layers; and (3) in the region of the myenteric plexus. This technique also labeled cell bodies and initial segments of processes of Dogiel type II neurones in enteric ganglia. Nerve fibres within the muscle layers did not exhibit NADH diaphorase activity. This study has identified the interstitial cells within the circular and longitudinal muscle layers and shows the arrangement of these cells in a three-dimensional network.
在胃肠道肌肉中,一类特殊的细胞,即间质细胞,可能参与了起搏活动以及来自肠神经系统输入信号的传导。我们采用了改良的NADH黄递酶法来描绘犬结肠外肌层中间质细胞的分布情况。NADH黄递酶反应的染色产物很有用,因为它能使光镜和电镜研究使用相同的标记物。因此,在光镜水平观察到的细胞可以通过电镜进行严格鉴定。我们能够标记至少三类间质细胞:(1)在环肌层的黏膜下层表面;(2)在环肌层和纵肌层的厚度范围内;(3)在肌间神经丛区域。这项技术还标记了肠神经节中Dogiel II型神经元的细胞体和突起的起始段。肌层内的神经纤维未表现出NADH黄递酶活性。本研究确定了环肌层和纵肌层内的间质细胞,并展示了这些细胞在三维网络中的排列方式。