Suppr超能文献

轴突切断的成年基底前脑神经元可支配胎儿额叶皮质移植体:大鼠的双荧光示踪研究

Axotomized, adult basal forebrain neurons can innervate fetal frontal cortex grafts: a double fluorescent tracer study in the rat.

作者信息

Sørensen J C, Wanner-Olsen H, Tønder N, Danielsen E, Castro A J, Zimmer J

机构信息

PharmaBiotec, Institute of Neurobiology, University of Aarhus, Denmark.

出版信息

Exp Brain Res. 1990;81(3):545-51. doi: 10.1007/BF02423503.

Abstract

The ability of axonal regeneration of identified adult basal forebrain (BFB) neurons was examined after homotopic grafting of fetal neocortical tissue to a lesion cavity in the frontal neocortex. Using a four step experimental procedure, adult rats first received an injection of the fluorescent dye Fluoro-Gold (FG) into the sensorimotor cortex in order to label those neurons with projections to the area by retrograde axonal transport. After one week the injection area was removed by aspiration, leaving a cavity in the neocortex. One week later a block of fetal (E14) frontal cortical tissue was placed in the cavity. The animals were then allowed to survive for 6 weeks before a second fluorescent tracer, Nuclear Yellow (NY), was injected into the transplant. The animals were sacrificed 24 h later and analyzed by fluorescence microscopy. Both single labeled, FG and NY containing neurons and double labeled neurons containing both tracers were found in the BFB. The results demonstrate that adult BFB neurons can reestablish cortical projections into fetal cortical grafts (double labeled neurons), and they suggest that other BFB neurons, not initially innervating the lesioned cortical area, have sprouted into the transplant (NY labeled neurons).

摘要

在将胎儿新皮质组织同位移植到额叶新皮质的损伤腔后,对已鉴定的成年基底前脑(BFB)神经元的轴突再生能力进行了研究。采用四步实验程序,成年大鼠首先在感觉运动皮质注射荧光染料氟金(FG),以便通过逆行轴突运输标记那些向该区域投射的神经元。一周后,通过抽吸去除注射区域,在新皮质中留下一个腔。一周后,将一块胎儿(E14)额叶皮质组织放入该腔中。然后让动物存活6周,之后将第二种荧光示踪剂核黄(NY)注入移植物中。24小时后处死动物并通过荧光显微镜进行分析。在BFB中发现了单标记的、含有FG和NY的神经元以及含有两种示踪剂的双标记神经元。结果表明,成年BFB神经元可以重新建立进入胎儿皮质移植物的皮质投射(双标记神经元),并且表明其他最初未支配损伤皮质区域的BFB神经元已经长入移植物(NY标记神经元)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验