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大鼠腹根中的感觉C纤维对辣椒素不敏感,且它们不介导软脑膜血管的血管外渗。

Sensory C-fibers in rat ventral roots are capsaicin-insensitive and they do not mediate extravasation from pial vessels.

作者信息

Karlsson M, Hildebrand C

机构信息

Department of Cell Biology, Faculty of Health Sciences, University of Linköping, Sweden.

出版信息

Brain Res. 1994 Apr 11;642(1-2):244-50. doi: 10.1016/0006-8993(94)90928-8.

Abstract

Mammalian ventral roots and pia mater contain sensory C-fibers, some of which exhibit a substance P- and/or calcitonin gene-related peptide (CGRP)-like immunoreactivity. At some locations, sensory axons containing these neuropeptides evoke peripheral plasma protein extravasation after antidromic electrical stimulation. Such axons usually disappear following treatment of neonatal rats with capsaicin. The purpose of the present study is to find out if afferent C-fibers in the rat ventral roots L4 and L5 are capsaicin-sensitive, and if antidromic stimulation of these fibers elicits extravasation in the root and/or the ventral pia mater. The results show (1) that the number of C-fibers in these ventral roots is unaffected by neonatal capsaicin treatment, as seen in the electron microscope; (2) that the occurrence and general configuration of axons with substance P- and CGRP-like immunoreactivity do not appear abnormal in neonatally capsaicin-treated rats, as revealed by fluorescence microscopy on longitudinal frozen sections; (3) that Evans blue albumin is not extravasated in the ventral root or pia mater after electrical ventral root stimulation or following systemic injection of capsaicin. We conclude, that ventral root afferents are functionally different from otherwise similar afferents at other locations.

摘要

哺乳动物的腹根和软脑膜含有感觉C纤维,其中一些表现出P物质和/或降钙素基因相关肽(CGRP)样免疫反应性。在某些部位,含有这些神经肽的感觉轴突在逆行电刺激后会引起外周血浆蛋白外渗。在用辣椒素处理新生大鼠后,这类轴突通常会消失。本研究的目的是确定大鼠L4和L5腹根中的传入C纤维是否对辣椒素敏感,以及对这些纤维的逆行刺激是否会在神经根和/或腹侧软脑膜中引起外渗。结果表明:(1)如在电子显微镜下所见,这些腹根中C纤维的数量不受新生大鼠辣椒素处理的影响;(2)通过纵向冰冻切片的荧光显微镜检查发现,在新生大鼠经辣椒素处理后,具有P物质和CGRP样免疫反应性的轴突的出现和总体形态并无异常;(3)在腹根电刺激或全身注射辣椒素后,伊文思蓝白蛋白不会在腹根或软脑膜中外渗。我们得出结论,腹根传入神经在功能上与其他部位的类似传入神经不同。

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