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胚胎神经视网膜再聚合体移植至新生大鼠脑内:分化与连接的形成

Transplantation of reaggregates of embryonic neural retinae to neonatal rat brain: differentiation and formation of connections.

作者信息

McLoon L K, Lund R D, McLoon S C

出版信息

J Comp Neurol. 1982 Feb 20;205(2):179-89. doi: 10.1002/cne.902050209.

Abstract

Embryonic day 14 neural retinae were dissociated into single cells and reaggregated prior to transplantation over the superior colliculi of newborn rats. One month after transplantation, the brains of the host rats were examined for transplant differentiation and the formation of projections from the transplant to the host brain. All reaggregated retinal transplants differentiated in the host brain, showing normal lamination and cellular morphology. Electron microscopic examination demonstrated normal synaptology with the transplanted retinal neuropil. Horseradish peroxidase injections into the host superior colliculus retrogradely filled cells within the transplant. These cells were found in the lamina corresponding to the ganglion cell layer and displayed a morphology characteristic of normal ganglion cells. Lesions of the transplants confirmed the projection of the reaggregated retinal transplants to superior colliculus. Degeneration was also traced into a number of ther nuclei that are normally retinorecipient. The presence of degenerating synaptic terminals resembling those seen after eye removal in control rats was confirmed by electron microscopic examination. It appears that despite disruption of initial cell-cell associations early in retinal development and prior to transplantation, the reaggregated transplants retain the ability to differentiate and form appropriate connection with the host brain.

摘要

胚胎第14天的神经视网膜被解离成单细胞,并在移植到新生大鼠上丘之前重新聚集。移植后一个月,检查宿主大鼠的大脑,以观察移植组织的分化情况以及从移植组织到宿主大脑的投射形成。所有重新聚集的视网膜移植组织在宿主大脑中均发生分化,呈现出正常的分层和细胞形态。电子显微镜检查显示移植的视网膜神经纤维网具有正常的突触结构。将辣根过氧化物酶注入宿主上丘,可逆行填充移植组织内的细胞。这些细胞位于对应于神经节细胞层的板层中,呈现出正常神经节细胞的形态特征。对移植组织的损伤证实了重新聚集的视网膜移植组织对上丘的投射。退变也追踪到了一些通常接受视网膜投射的其他核团。通过电子显微镜检查证实了存在类似于对照大鼠眼球摘除后所见的退化突触终末。尽管在视网膜发育早期及移植前初始细胞间联系被破坏,但重新聚集的移植组织似乎仍保留了分化能力,并能与宿主大脑形成适当连接。

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