Farré R, Wang X-Y, Vidal E, Domènech A, Pumarola M, Clave P, Huizinga J D, Jiménez M
Fundació de Gastroenterologia Dr Francisco Vilardell, Barcelona, Catalunya, Spain.
Neurogastroenterol Motil. 2007 Jun;19(6):484-96. doi: 10.1111/j.1365-2982.2007.00901.x.
The distribution of interstitial cells of Cajal (ICC) and neurotransmission were investigated in lower oesophageal sphincter (LES) circular muscle strips from Sprague-Dawley (SD) rats, Ws/Ws mutant rats and their wild-type (+/+) siblings. Intramuscular c-Kit-positive cells, confirmed to be ICC-IM by electron microscopy, were observed throughout both muscle layers from SD and +/+ rats. In contrast, c-Kit-positive, ultrastructurally typical ICC-IM were absent in Ws/Ws. LES strips from Ws/Ws rats showed increased spontaneous contractile activity. Strips from SD and +/+ rats, responded to electrical neuronal stimulation with a relaxation that was in part L-NNA and in part apamin sensitive, followed by a contraction which was decreased by atropine. In Ws/Ws rats, similar to +/+ rats, neurally mediated relaxation was L-NNA and apamin sensitive and the contraction was decreased by atropine. We conclude that in the rat LES, relaxation is mediated by NO and an apamin-sensitive mediator, and contraction primarily by acetylcholine. Despite the absence of c-Kit-positive ICC, nerve-muscle interaction can be accomplished likely by diffusion of neurotransmitters to the smooth muscle cells. The lack of c-Kit-positive ICC is related to an increase in the basal tone and spontaneous contractile activity. The presence of fibroblast-like ICC in Ws/Ws rats might represent immature ICC whose possible functions need further investigation.
研究了来自Sprague-Dawley(SD)大鼠、Ws/Ws突变大鼠及其野生型(+/+)同窝仔鼠的食管下括约肌(LES)环形肌条中Cajal间质细胞(ICC)的分布和神经传递。通过电子显微镜证实为ICC-IM的肌内c-Kit阳性细胞在SD大鼠和+/+大鼠的两层肌肉中均有观察到。相比之下,Ws/Ws大鼠中不存在c-Kit阳性、超微结构典型的ICC-IM。Ws/Ws大鼠的LES条显示出自发性收缩活动增加。SD大鼠和+/+大鼠的肌条对电神经刺激有反应,先是出现部分对L-NNA和部分对蜂毒明肽敏感的舒张,随后是阿托品可减弱的收缩。在Ws/Ws大鼠中,与+/+大鼠类似,神经介导的舒张对L-NNA和蜂毒明肽敏感,收缩可被阿托品减弱。我们得出结论,在大鼠LES中,舒张由一氧化氮和一种对蜂毒明肽敏感的介质介导,收缩主要由乙酰胆碱介导。尽管缺乏c-Kit阳性的ICC,但神经-肌肉相互作用可能通过神经递质向平滑肌细胞的扩散来实现。c-Kit阳性ICC的缺乏与基础张力和自发性收缩活动的增加有关。Ws/Ws大鼠中存在成纤维细胞样ICC可能代表未成熟的ICC,其可能的功能需要进一步研究。