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眶下神经横断对三叉神经脑干复合体中甘丙肽结合位点的组织、发育及影响

Organization, development, and effects of infraorbital nerve transection on galanin binding sites in the trigeminal brainstem complex.

作者信息

Bodie D, Bennett-Clarke C A, Davis K, Postelwaite J P, Chiaia N L, Rhoades R W

机构信息

Department of Anatomy and Neurobiology, Medical College of Ohio, Toledo 43699, USA.

出版信息

Somatosens Mot Res. 1997;14(3):168-80. doi: 10.1080/08990229771033.

Abstract

Previous experiments from this laboratory have indicated that transection of the infraorbital nerve (ION, the trigeminal [V] branch that supplies the mystacial vibrissae follicles) at birth and in adulthood has markedly different effects on galanin immunoreactivity in the V brainstem complex. Adult nerve transection increases galanin immunoreactivity in the superficial layers of V subnucleus caudalis (SpC) only, while neonatal nerve transection results in increased galanin expression in vibrissae-related primary afferents throughout the V brainstem complex. The present study describes the distribution of binding sites for this peptide in the mature and developing V ganglion and brainstem complex and determines the effects of neonatal and adult ION damage and the associated changes in galanin levels upon their distribution and density. Galanin binding sites are densely distributed in all V brainstem subnuclei and are particularly dense in V subnucleus interpolaris and the superficial layers of SpC. They are present at birth (P-0) and their distribution is similar to that in adult animals. Transection of the ION in adulthood and examination of brainstem 7 days later indicated marked reductions in the density of galanin binding sites in the V brainstem complex. With the exception of the superficial laminae of SpC, the same reduction in density remained apparent in rats that survived > 45 days after nerve cuts. Transection of the ION on P-0 resulted in no change in the density of galanin binding sites in the brainstem after either 7 or > 60 days survival. These results indicate that densely distributed galanin binding sites are present in the V brainstem complex of both neonatal and adult rats, that they are located in regions not innervated by galanin-positive axons, and that their density is not significantly influenced by large lesion-induced changes in the primary afferent content of their natural ligand.

摘要

本实验室之前的实验表明,在出生时和成年后切断眶下神经(ION,三叉神经[V]的分支,为触须毛囊提供神经支配),对V脑干复合体中甘丙肽免疫反应性有明显不同的影响。成年后切断神经仅会增加V尾侧亚核(SpC)浅层的甘丙肽免疫反应性,而新生期切断神经则会导致整个V脑干复合体中与触须相关的初级传入纤维中甘丙肽表达增加。本研究描述了该肽在成熟和发育中的V神经节及脑干复合体中的结合位点分布,并确定了新生期和成年期ION损伤以及甘丙肽水平的相关变化对其分布和密度的影响。甘丙肽结合位点在所有V脑干亚核中密集分布,在V极间亚核和SpC浅层尤为密集。它们在出生时(P-0)就已存在,其分布与成年动物相似。成年后切断ION并在7天后检查脑干,结果表明V脑干复合体中甘丙肽结合位点的密度显著降低。除SpC浅层外,在神经切断后存活超过45天的大鼠中,密度的降低同样明显。在P-0时切断ION,无论存活7天还是超过60天,脑干中甘丙肽结合位点的密度均无变化。这些结果表明,新生和成年大鼠的V脑干复合体中均存在密集分布的甘丙肽结合位点,它们位于未被甘丙肽阳性轴突支配的区域,并且其密度不受原发性传入纤维中天然配体的大量损伤诱导变化的显著影响。

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