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大鼠颈脊髓中四种不同胆碱能神经元亚型的胚胎发育

Embryonic development of four different subsets of cholinergic neurons in rat cervical spinal cord.

作者信息

Phelps P E, Barber R P, Brennan L A, Maines V M, Salvaterra P M, Vaughn J E

机构信息

Division of Neurosciences, Beckman Research Institute of the City of Hope, Duarte, California 91010.

出版信息

J Comp Neurol. 1990 Jan 1;291(1):9-26. doi: 10.1002/cne.902910103.

Abstract

The developmental stage at which a neuron becomes committed to a neurotransmitter phenotype is an important time in its ontogenetic history. The present study examines when choline acetyltransferase (ChAT) is first detected within each of four different subsets of cholinergic neurons previously identified in the cervical enlargement of the spinal cord: namely, motor neurons, partition cells, central canal cluster cells, and dorsal horn neurons. By examining the temporal sequence of embryonic development of these cholinergic neurons, we can infer the relationships between ChAT expression and other important developmental events. ChAT was first detected reliably on embryonic day 13 (E13) by both biochemical and immunocytochemical methods, and it was localized predominantly within motor neurons. A second group of primitive-appearing ChAT-positive cells was detected adjacent to the ventricular zone on E14. These neurons seemed to disperse laterally into the intermediate zone by E15, and, on the basis of their location, were tentatively identified as partition cells. A third group of primitive ChAT-immunoreactive cells was detected on E16, both within and around the ventral half of the ventricular zone. By E17, some members of this "U"-shaped group appeared to have dispersed dorsally and laterally, probably giving rise to dorsal horn neurons as well as dorsal central canal cluster cells. Other members of this group remained near the ventral ventricular zone, most likely differentiating into ventral central canal cluster cells. Combined findings from the present study and a previous investigation of neurogenesis (Phelps et al.: J. Comp. Neurol. 273:459-472, '88), suggest that premitotic precursor cells have not yet acquired the cholinergic phenotype because ChAT is not detectable until after the onset of neuronal generation for each of the respective subsets of cholinergic neurons. However, ChAT is expressed in primitive bipolar neurons located within or adjacent to the germinal epithelium. Transitional stages of embryonic development suggest that these primitive ChAT-positive cells migrate to different locations within the intermediate zone to differentiate into the various subsets of mature cholinergic neurons. Therefore, it seems likely that spinal cholinergic neurons are committed to the cholinergic phenotype at pre- or early migratory stages of their development. Our results also hint that the subsets of cholinergic cells may follow different migration routes. For example, presumptive partition cells may use radial glial processes for guidance, whereas dorsal horn neurons may migrate along nerve fibers of the commissural pathway. Cell-cell interactions along such diverse migratory pathways could play a role in determining the different morphological, and presumably functional, phenotypes expressed by spinal cholinergic neurons.

摘要

神经元确定其神经递质表型的发育阶段是其个体发育史上的一个重要时期。本研究探讨了在脊髓颈膨大处先前鉴定出的四类不同胆碱能神经元亚群中,何时首次检测到胆碱乙酰转移酶(ChAT):即运动神经元、分隔细胞、中央管簇状细胞和背角神经元。通过研究这些胆碱能神经元胚胎发育的时间顺序,我们可以推断ChAT表达与其他重要发育事件之间的关系。通过生化和免疫细胞化学方法,在胚胎第13天(E13)首次可靠地检测到ChAT,且其主要定位于运动神经元内。在E14,在脑室区附近检测到第二组外观原始的ChAT阳性细胞。这些神经元似乎在E15时横向扩散到中间带,根据其位置,初步鉴定为分隔细胞。在E16,在脑室区腹侧半区内及其周围检测到第三组原始的ChAT免疫反应性细胞。到E17时,这个“U”形组的一些成员似乎已向背侧和外侧扩散,可能产生背角神经元以及背侧中央管簇状细胞。该组的其他成员仍靠近脑室腹侧区,很可能分化为腹侧中央管簇状细胞。本研究结果与先前一项神经发生研究(Phelps等人:《比较神经学杂志》273:459 - 472,'88)的综合结果表明,有丝分裂前的前体细胞尚未获得胆碱能表型,因为直到各胆碱能神经元亚群开始产生神经元后才能检测到ChAT。然而,ChAT在位于生发上皮内或其附近的原始双极神经元中表达。胚胎发育的过渡阶段表明,这些原始的ChAT阳性细胞迁移到中间带内的不同位置,分化为成熟胆碱能神经元的各个亚群。因此,脊髓胆碱能神经元似乎在其发育的迁移前或早期阶段就确定了胆碱能表型。我们的结果还暗示,胆碱能细胞亚群可能遵循不同的迁移途径。例如,推测的分隔细胞可能利用放射状胶质细胞突起作为导向,而背角神经元可能沿着连合通路的神经纤维迁移。沿着这些不同迁移途径的细胞间相互作用可能在决定脊髓胆碱能神经元所表达的不同形态以及大概的功能表型方面发挥作用。

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