Peptidergic innervation of human cerebral blood vessels and saccular aneurysms

被引:14
作者
Büki, A
Horváth, Z
Kalló, I
Liposits, Z
Lengvári, I
Dóczi, TP
机构
[1] Univ Pecs, Sch Med, Dept Neurosurg, H-7624 Pecs, Hungary
[2] Univ Szeged, Sch Med, Dept Anat, Szeged, Hungary
[3] Hungarian Acad Sci, Inst Expt Med, Dept Neurobiol, H-1083 Budapest, Hungary
[4] Univ Pecs, Sch Med, Dept Anat, Pecs, Hungary
基金
匈牙利科学研究基金会;
关键词
cerebral aneurysm; autoregulation; neuropeptides;
D O I
10.1007/s004010051098
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Peptidergic innervation of the human cerebral vasculature has not yet been described in detail and its role in the maintenance of cerebral autoregulation still needs to be established. Similarly, few data exist on the innervation of vascular malformations. The aim of this study was to clarify the peptidergic innervation patterns of human cerebral arteries of various sizes, and, for the first time, that of saccular aneurysms. Light microscopic study of whole-mount preparations of human cerebral arteries and aneurysm sacs resected either during tumor removal or after neck-clipping were carried out by means of silver-intensified light microscopic immunocytochemistry visualizing neuropeptide-Y, calcitonin gene-related peptide and substance P immunoreactivity. Systematic morphological investigations confirmed the presence of longitudinal fiber bundles on the adventitia and a network-like deeper peptidergic system at the adventitia-media border, while in smaller pial and intraparenchymal vessles, only sparse longitudinal immunopositive axons could be detected. The innervation pattern was totally absent in the wall of saccular aneurysms with the complete disappearance of peptidergic nerve fibers in some areas. To the best of our knowledge neither the disappearance of this network on small pial and intraparenchymal vessels, nor the absence of an innervation pattern in saccular aneurysms have been described before. Nonhomogeneous peptidergic innervation of the human cerebral vascular tree might be one of the factors responsible for the distinct autoregulatory properties of the capacitance and resistance vessels. Malfunction of this vasoregulatory system might lead to the impairment of autoregulation during pathological conditions such as subarachnoid hemorrhage.
引用
收藏
页码:383 / 388
页数:6
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