Verna A, Barets A, Salat C
J Neurocytol. 1984 Dec;13(6):849-65. doi: 10.1007/BF01148589.
The distribution of sympathetic (noradrenergic) nerves within the rabbit carotid body was investigated by fluorescence microscopy and electron microscopy. With the Falck-Hillarp method, fluorescent nerve fibres were found associated with blood vessels and type I/type II cell groups. After the injection of 6-hydroxydopamine, degenerating nerve profiles were found near blood vessels, near type I/type II cell groups and in contact with type II cells. Following the administration of [3H]noradrenaline, labelled nerve profiles were observed in close association with blood vessels and around cell groups; a few labelled nerve profiles were observed in contact with type II cells. With a modified chromaffin method, chromaffin nerve profiles were found around blood vessels, around type I/type II cell groups and their sensory nerve supply and in contact with type II cells. It was shown that for about one-third of the chromaffin nerve profiles, the nearest structure (in the plane of section) was a type I/type II cell group. Furthermore, the mean distance between chromaffin nerve profiles and blood vessels and between chromaffin nerve profiles and type I/type II cell groups was about the same (2.2 microns and 2.7 microns respectively). These results suggest that the carotid body sympathetic innervation might have, in addition to its vasomotor function, a direct action on the chemosensory structures. This hypothesis is discussed in the light of currently available physiological data and a comparison is made with the role of the sympathetic innervation in other sensory systems.
通过荧光显微镜和电子显微镜研究了兔颈动脉体内交感(去甲肾上腺素能)神经的分布。采用Falck-Hillarp方法,发现荧光神经纤维与血管以及I型/II型细胞群相关。注射6-羟基多巴胺后,在血管附近、I型/II型细胞群附近以及与II型细胞接触处发现了退化的神经轮廓。给予[3H]去甲肾上腺素后,观察到标记的神经轮廓与血管紧密相连并围绕细胞群;少数标记的神经轮廓与II型细胞接触。采用改良的嗜铬细胞方法,在血管周围、I型/II型细胞群及其感觉神经供应周围以及与II型细胞接触处发现了嗜铬神经轮廓。结果表明,约三分之一的嗜铬神经轮廓,最近的结构(在切片平面上)是I型/II型细胞群。此外,嗜铬神经轮廓与血管之间以及嗜铬神经轮廓与I型/II型细胞群之间的平均距离大致相同(分别为2.2微米和2.7微米)。这些结果表明,颈动脉体交感神经支配除了具有血管运动功能外,可能对化学感受结构有直接作用。根据目前可用的生理数据对这一假设进行了讨论,并与交感神经支配在其他感觉系统中的作用进行了比较。