Calka Jaroslaw, Ganko Marta, Rychlik Andrzej
Department of Clinical Physiology, Faculty of Veterinary Medicine, University of Warmia and Mazury, Oczapowskiego 13, 10-718 Olsztyn, Poland.
Department of Clinical Diagnostics, Faculty of Veterinary Medicine, University of Warmia and Mazury, Oczapowskiego 14, 10-718 Olsztyn, Poland.
Animals (Basel). 2020 Oct 31;10(11):2008. doi: 10.3390/ani10112008.
The vagus nerve is responsible for efferent innervation and functional control of stomach functions. The efferent fibers originate from neurons located in the dorsal motor nucleus of the vagus (DMX) and undergo functional control of the local neuroregulatory terminals. The aim of the present study was to examine the existence of morphological foundations for direct regulatory action of the local TH-immunoreactive neurons on parasympathetic efferent neurons supplying the prepyloric region of the porcine stomach. Combined injection of neuronal retrograde tracer Fast Blue into the stomach prepyloric region with TH immunostaining was used in order to visualize spatial relationship between DMX-located stomach prepyloric region supplying neuronal stomata and local TH-IR terminals. We confirmed existence of TH-immunoreactive neural terminals closely opposing the stomach prepyloric region innervating neurons at the porcine DMX area. The observed spatial relationship points out the possibility of indirect catecholaminergic control of the stomach function exerted through preganglionic parasympathetic efferent neurons in the pig.
迷走神经负责胃功能的传出神经支配和功能控制。传出纤维起源于位于迷走神经背运动核(DMX)的神经元,并接受局部神经调节终末的功能控制。本研究的目的是检查局部TH免疫反应性神经元对供应猪胃幽门前区域的副交感传出神经元直接调节作用的形态学基础是否存在。将神经元逆行示踪剂快蓝与TH免疫染色联合注射到胃幽门前区域,以观察位于DMX的供应胃幽门前区域的神经元气孔与局部TH免疫反应性终末之间的空间关系。我们证实,在猪的DMX区域存在与支配胃幽门前区域的神经元紧密相对的TH免疫反应性神经终末。观察到的空间关系表明,猪可能通过节前副交感传出神经元对胃功能进行间接的儿茶酚胺能控制。