首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Human fetal cerebellar and cortical tissue transplanted to the anterior eye chamber of athymic rats: electrophysiological and structural studies.
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Human fetal cerebellar and cortical tissue transplanted to the anterior eye chamber of athymic rats: electrophysiological and structural studies.

机译:将人胎儿小脑和皮质组织移植到无胸腺大鼠的前眼房:电生理和结构研究。

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摘要

Human fetal tissue fragments from cortex cerebri and cerebellum were grafted to the anterior chamber of the eye of adult athymic nude rats. The grafts were obtained from tissue fragments recovered after elective routine abortions, performed in weeks 8-11 of gestation. Both cerebellar and cortex cerebri grafts survived and developed in the anterior chamber of the eye for 1-4 months. The transplants slowly became vascularized from the host iris. The grafts developed blood vessels with laminin-immunoreactive walls and contained relatively high amounts of glial fibrillary acidic protein- and neurofilament-immunoreactivity in the neuropil after 4 months in oculo. Recordings of extracellular action potentials from the grafts revealed spontaneously active neurons with action-potential waveforms similar to those observed in immature rodents. Morphologically, the grafts showed no signs of rejection. Clusters and bands of large neurons resembling Purkinje cells and dense aggregates of smaller granule-like cells could be found in the cerebellar grafts. Large neurons were also seen in the cortex grafts. Taken together, these data suggest that the athymic rat may serve as a useful tool for studies of central nervous system tissue from otherwise immunologically incompatible species.
机译:将来自大脑皮层和小脑的人类胎儿组织碎片移植到成年无胸腺裸鼠眼睛的前房。移植物是从常规流产后恢复的组织碎片中获得的,在妊娠的第8-11周进行。小脑和皮质小脑移植物均在眼前房存活并发育1-4个月。移植物逐渐从宿主虹膜血管化。移植物在眼球中放置4个月后,移植物形成具有层粘连蛋白免疫反应性壁的血管,并在神经纤维中包含相对大量的神经胶质纤维酸性蛋白和神经丝免疫反应性。记录来自移植物的细胞外动作电位显示自发活跃的神经元,其动作电位波形类似于在未成熟啮齿动物中观察到的。从形态上看,移植物没有排斥迹象。在小脑移植物中可以发现类似于浦肯野细胞的大型神经元簇和条带,以及较小颗粒状细胞的密集聚集体。在皮层移植物中也可以看到较大的神经元。综上所述,这些数据表明,无胸腺大鼠可以作为研究来自其他免疫学不相容物种的中枢神经系统组织的有用工具。

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