Liu L W, Thuneberg L, Huizinga J D
Department of Biomedical Sciences, McMaster University, Hamilton, Ontario, Canada.
Am J Physiol. 1994 Mar;266(3 Pt 1):G485-96. doi: 10.1152/ajpgi.1994.266.3.G485.
Incubation with 50 microM methylene blue (MB) and subsequent intense illumination resulted in abolition of the slow-wave activity in the submuscular interstitial cells of Cajal-circular muscle (ICC-CM) preparations of canine colon. This was often accompanied by a decrease in resting membrane potential. Repolarization of cells back to -70 mV did not restore the slow-wave activity, indicating that MB plus light directly interrupted the generation mechanism of slow waves. After MB incubation, a 2-min illumination consistently changed the mitochondrial conformation in ICCs from very condensed to orthodox, without inducing any obvious changes in smooth muscle cells. After 4- to 10-min illumination, ICCs became progressively more damaged with swollen and ruptured mitochondria, loss of cytoplasmic contrast and detail, loss of caveolae, and rupture of the plasma membrane. No damage was seen in smooth muscle cells or nerves. Gap junctional ultrastructure was preserved. Intense illumination without preincubation with MB left the slow waves and the ultrastructure of ICC-CM preparations unaffected. In CM preparations, without the submuscular ICC-smooth-muscle network, MB plus light induced no changes in electrical activity. We conclude that the correlation between selective damage to the submuscular ICCs (relative to smooth muscle) and selective loss of the slow-wave activity (relative to other electrical activity of the CM) strongly indicates that the ICCs play an essential role in the generation of slow waves.
用50微摩尔亚甲蓝(MB)孵育并随后进行强光照射,导致犬结肠 Cajal 环形肌(ICC-CM)制备物中肌间间质细胞的慢波活动消失。这通常伴随着静息膜电位的降低。细胞复极化回到 -70 mV 并未恢复慢波活动,表明MB加光直接中断了慢波的产生机制。MB孵育后,持续2分钟的光照一致地将ICC中线粒体的形态从非常浓缩变为正常,而未在平滑肌细胞中诱导任何明显变化。经过4至10分钟的光照后,ICC逐渐受损,线粒体肿胀和破裂,细胞质对比度和细节丧失,小窝消失,质膜破裂。在平滑肌细胞或神经中未见损伤。缝隙连接超微结构得以保留。未用MB预孵育的强光照射使ICC-CM制备物的慢波和超微结构不受影响。在没有肌间ICC-平滑肌网络的CM制备物中,MB加光未引起电活动变化。我们得出结论,肌间ICC(相对于平滑肌)的选择性损伤与慢波活动(相对于CM的其他电活动)的选择性丧失之间的相关性强烈表明ICC在慢波产生中起重要作用。