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将GABA能前体细胞移植到成年小鼠脊髓后长期、动态的突触重组

Long-term, dynamic synaptic reorganization after GABAergic precursor cell transplantation into adult mouse spinal cord.

作者信息

Llewellyn-Smith Ida J, Basbaum Allan I, Bráz João M

机构信息

Cardiovascular Medicine, Human Physiology and Centre for Neuroscience, College of Medicine and Public Health, Flinders University, Bedford Park, South Australia, Australia.

Department of Anatomy, University of California San Francisco, San Francisco, California.

出版信息

J Comp Neurol. 2018 Feb 15;526(3):480-495. doi: 10.1002/cne.24346. Epub 2017 Nov 13.

Abstract

Transplanting embryonic precursors of GABAergic neurons from the medial ganglionic eminence (MGE) into adult mouse spinal cord ameliorates mechanical and thermal hypersensitivity in peripheral nerve injury models of neuropathic pain. Although Fos and transneuronal tracing studies strongly suggest that integration of MGE-derived neurons into host spinal cord circuits underlies recovery of function, the extent to which there is synaptic integration of the transplanted cells has not been established. Here, we used electron microscopic immunocytochemistry to assess directly integration of GFP-expressing MGE-derived neuronal precursors into dorsal horn circuitry in intact, adult mice with short- (5-6 weeks) or long-term (4-6 months) transplants. We detected GFP with pre-embedding avidin-biotin-peroxidase and GABA with post-embedding immunogold labeling. At short and long times post-transplant, we found host-derived synapses on GFP-immunoreactive MGE cells bodies and dendrites. The proportion of dendrites with synaptic input increased from 50% to 80% by 6 months. In all mice, MGE-derived terminals formed synapses with GFP-negative (host) cell bodies and dendrites and, unexpectedly, with some GFP-positive (i.e., MGE-derived) dendrites, possibly reflecting autoapses or cross talk among transplanted neurons. We also observed axoaxonic appositions between MGE and host terminals. Immunogold labeling for GABA confirmed that the transplanted cells were GABAergic and that some transplanted cells received an inhibitory GABAergic input. We conclude that transplanted MGE neurons retain their GABAergic phenotype and integrate dynamically into host-transplant synaptic circuits. Taken together with our previous electrophysiological analyses, we conclude that MGE cells are not GABA pumps, but alleviate pain and itch through synaptic release of GABA.

摘要

将来自内侧神经节隆起(MGE)的γ-氨基丁酸能(GABAergic)神经元胚胎前体移植到成年小鼠脊髓中,可改善神经性疼痛周围神经损伤模型中的机械性和热超敏反应。尽管Fos和跨神经元追踪研究强烈表明,源自MGE的神经元整合到宿主脊髓回路是功能恢复的基础,但移植细胞的突触整合程度尚未确定。在这里,我们使用电子显微镜免疫细胞化学方法,直接评估表达绿色荧光蛋白(GFP)的源自MGE的神经元前体,在短期(5 - 6周)或长期(4 - 6个月)移植的完整成年小鼠中,整合到背角神经回路的情况。我们使用包埋前抗生物素蛋白-生物素-过氧化物酶检测GFP,使用包埋后免疫金标记检测GABA。在移植后的短期和长期,我们在GFP免疫反应性MGE细胞体和树突上发现了宿主来源的突触。到6个月时,有突触输入的树突比例从50%增加到了80%。在所有小鼠中,源自MGE的终末与GFP阴性(宿主)细胞体和树突形成突触,出乎意料的是,还与一些GFP阳性(即源自MGE)的树突形成突触,这可能反映了移植神经元之间的自突触或串扰。我们还观察到MGE与宿主终末之间的轴-轴并列。GABA的免疫金标记证实移植细胞是GABA能的,并且一些移植细胞接受抑制性GABA能输入。我们得出结论,移植的MGE神经元保留其GABA能表型,并动态整合到宿主-移植突触回路中。结合我们之前的电生理分析,我们得出结论,MGE细胞不是GABA泵,而是通过GABA的突触释放来减轻疼痛和瘙痒。

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