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大鼠交感神经节中的门脉样微循环。

Portal-like microcirculation in rat sympathetic ganglia.

作者信息

Mekhail N A, Estafanous F G, Vitullo J C, Khairallah P A

机构信息

Department of Anesthesia Research, Cleveland Clinic Foundation, Ohio.

出版信息

Acta Anat (Basel). 1990;138(3):200-7. doi: 10.1159/000146940.

Abstract

The fine structure of intraganglionic blood vessels of rat superior cervical sympathetic ganglia is studied with the light microscope and with both conventional and ultrastructural histochemical methods. Two sets of small capillaries together with larger sinusoidal ones are identified. One set of capillaries is associated with the clustered (type II) small catecholamine-containing (CC) cells and exhibits features suggestive of fluid transport function (multiple wide fenestrae and active pinocytosis). The second set of capillaries is in direct relation to the sympathetic neurons (SN) and shows characteristics suggestive of absorptive function (microvilli and pinocytotic vesicles). The larger sinusoidal capillaries are observed in the vicinity of type II CC cells, extend parallel to the long axes of the perikarya of the neurons and occasionally form loops around them. The latter are assumed to be larger blood spaces connecting the two capillary sets and serve to slow the circulation around the neurons. A pattern of portal-like intraganglionic microcirculation through which type II CC cells participate in modulating the SN is postulated. Type II CC cells secrete a catecholamine modulator which, driven by concentration gradient, gains access to the circulation through the fenestrated capillaries. The sinusoidal capillaries serve to perfuse the SN with a slow stream of blood rich in the catecholamine modulator. The latter can be filtered through the microvilli and pinocytotic vesicles of the second set of capillaries to induce slow inhibitory postsynaptic potential on the SN.

摘要

采用光学显微镜以及传统组织化学和超微结构组织化学方法,对大鼠颈上神经节内神经节血管的精细结构进行了研究。识别出两组小毛细血管以及较大的窦状毛细血管。一组毛细血管与成群的(II型)含儿茶酚胺的小细胞(CC细胞)相关联,呈现出提示液体运输功能的特征(多个宽窗孔和活跃的胞饮作用)。第二组毛细血管与交感神经元(SN)直接相关,并表现出提示吸收功能的特征(微绒毛和胞饮小泡)。较大的窦状毛细血管在II型CC细胞附近观察到,与神经元胞体的长轴平行延伸,偶尔在它们周围形成环。后者被认为是连接两组毛细血管的较大血腔,有助于减缓神经元周围的血液循环。推测存在一种门脉样神经节内微循环模式,通过这种模式II型CC细胞参与调节SN。II型CC细胞分泌一种儿茶酚胺调节剂,该调节剂在浓度梯度驱动下,通过有窗孔的毛细血管进入循环。窦状毛细血管用于向SN灌注富含儿茶酚胺调节剂的缓慢血流。后者可通过第二组毛细血管的微绒毛和胞饮小泡进行过滤,以在SN上诱导缓慢的抑制性突触后电位。

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