Jirmanová I, Lieberman A R, Zelená J
Institute of Physiology, Czech Academy of Sciences, Prague 4-Krc.
J Neurocytol. 1994 Jul;23(7):422-32. doi: 10.1007/BF01207114.
We have investigated the capacity of injured axons in the spinal dorsal columns of young adult rats to reinnervate grafted Pacinian corpuscles. A branch of the hindlimb interosseous nerve with a group of crural Pacinian corpuscles attached to it was autotransplanted to the surface of the spinal cord and the nerve stump was implanted into the dorsal column. Two to three months later 16 grafts were removed for examination by light and electron microscopy. By 3 months after transplantation almost all Schwann cell columns of the grafted nerve branch were occupied by regenerated myelinated and unmyelinated axons. Of 41 corpuscles examined by electron microscopy 24 were reinnervated by 1-3 myelinated fibres which gave rise to multiple terminals in the inner core. The remaining corpuscles appeared to be denervated. Only two of the reinnervated corpuscles contained regenerated endings which reiterated the distinct ultrastructure of normal presynaptic terminals of CNS axons, characterized by clusters of lucent vesicles and paramembranous densities. All other corpuscles were reinnervated by terminals which resembled peripheral mechanosensory endings as they contained mitochondria and very few vesicles. One such corpuscle was coinnervated by small terminals filled with large dense cored vesicles. We assume that the majority of grafted Pacinian corpuscles have been reinnervated by dorsal column axons and that the regenerated terminals with the ultrastructure of peripheral mechanosensory endings derive from central axons of primary sensory neurons, which are apparently capable of constructing mechanosensory-like terminals in response to signals from the Pacinian corpuscles. The vesicle-filled endings are probably formed by second order sensory neurons, corticospinal neurons and small peptidergic neurons unable to adjust their terminals to the new target.
我们研究了年轻成年大鼠脊髓背柱中受损轴突重新支配移植的帕西尼小体的能力。将一条带有一组与后肢骨间神经相连的小腿帕西尼小体的后肢骨间神经分支自体移植到脊髓表面,并将神经残端植入背柱。两到三个月后,取出16个移植物进行光镜和电镜检查。移植后3个月,移植神经分支的几乎所有施万细胞柱都被再生的有髓和无髓轴突占据。在通过电镜检查的41个小体中,24个被1 - 3条有髓纤维重新支配,这些纤维在内核中形成多个终末。其余的小体似乎去神经支配了。只有两个重新支配的小体含有再生终末,这些终末重复了中枢神经系统轴突正常突触前终末独特的超微结构,其特征是透亮小泡簇和膜旁致密物。所有其他小体被终末重新支配,这些终末类似于外周机械感觉终末,因为它们含有线粒体且小泡很少。一个这样的小体由充满大致密核心小泡的小终末共同支配。我们假设大多数移植的帕西尼小体已被背柱轴突重新支配,并且具有外周机械感觉终末超微结构的再生终末源自初级感觉神经元的中枢轴突,这些中枢轴突显然能够根据来自帕西尼小体的信号构建类似机械感觉的终末。充满小泡的终末可能由二级感觉神经元、皮质脊髓神经元和无法将其终末调整到新靶标的小肽能神经元形成。