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通过胆囊收缩素样免疫反应鉴定的小脑传入神经的个体发生

Ontogenesis of cerebellar afferents identified by cholecystokinin-like immunoreactivity.

作者信息

King J S, Bishop G A

机构信息

Department of Cell Biology, Neurobiology and Anatomy, Ohio State University, Columbus 43210.

出版信息

Brain Res Dev Brain Res. 1992 Feb 21;65(2):237-52. doi: 10.1016/0165-3806(92)90185-y.

Abstract

The present account provides a developmental timetable for the maturation of cholecystokinin (CCK)-positive fibers in the cerebellar cortex and cerebellar nuclei of the opossum. CCK-positive fibers are in the cerebellar peduncle by postnatal day (PD) 1, however they wait until PD 7 to penetrate the cerebellar anlage. Between PD 7 and PD 20 the fibers wait again in the medullary core of the cerebellum. After PD 20, there are 2 distinct patterns of CCK localization within the overlying cortical layers. The first pattern develops between PD 20-26 when CCK puncta are present in restricted foci within the Purkinje cell layer of the anterior lobe vermis. They distribute in 4 parasagittal bands, 2 on either side of the midline, that extend from the primary fissure rostrally into the anterior lobe of the cerebellum. By PD 33 two additional parasagittal bands are present in the posterior lobe vermis. The vast majority of these CCK puncta are transient in nature as all but a few disappear by PD 84. Those that remain progress through a series of developmental stages characteristic of climbing fiber ontogeny. These climbing fibers persist in lobules V, VII and VIII of the adult cerebellum. Further, there is a transient expression of CCK-immunoreactivity within inferior olivary neurons. These observations support the interpretation that the transient population of CCK-IR puncta are immature climbing fiber axons derived from the inferior olive. The second pattern of CCK localization is evident between PD 30-33, the time when granule cells first can be recognized in a histologically distinct internal granule cell layer (IGL). Between PD 30 and PD 68 there is a differential pattern of distribution of CCK-IR profiles within the lobules of the cerebellum. Initially, CCK-IR axons are only present in the anterior vermis where they are aligned in register with the bands of CCK puncta in the Purkinje cell layer. CCK-IR puncta are not present in the posterior lobe vermis or hemispheres until later stages of development. Further, a sagittal organization is not evident in either of these latter 2 areas. Initially, CCK-IR profiles in the IGL cannot be identified as mossy fibers based on their terminal morphology. When they first enter the IGL they appear as punctate elements. Over time they become increasingly more complex in shape and between PD 68-84 develop morphological characteristics of adult mossy fiber rosettes. The cerebellar nuclei can be distinguished histologically by PD 18, but CCK-IR fibers are not evident among these neurons until PD 36 which corresponds to about the time they can be visualized in the IGL. In addition, CCK-IR cell bodies first appear in the cerebellar nuclei between PD 26-30; these are present in the adult.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本报告提供了负鼠小脑皮质和小脑核中胆囊收缩素(CCK)阳性纤维成熟的发育时间表。出生后第1天(PD1)时,CCK阳性纤维位于小脑脚,但直到PD7才穿透小脑原基。在PD7到PD20之间,这些纤维再次停留在小脑的髓质核心。PD20之后,在上覆皮质层内有两种不同的CCK定位模式。第一种模式在PD20 - 26之间形成,此时在前叶蚓部的浦肯野细胞层内的特定灶点出现CCK小点。它们分布在4条矢状旁带,中线两侧各2条,从初级裂沟向前延伸至小脑前叶。到PD33时,后叶蚓部又出现另外两条矢状旁带。这些CCK小点中的绝大多数本质上是短暂性的,因为除了少数几个之外,所有小点在PD84时都消失了。那些留存下来的小点会经历一系列特征性的攀缘纤维个体发育阶段。这些攀缘纤维在成年小脑的V、VII和VIII小叶中持续存在。此外,下橄榄核神经元内有CCK免疫反应性的短暂表达。这些观察结果支持这样的解释,即CCK免疫反应性小点的短暂群体是源自下橄榄核的未成熟攀缘纤维轴突。CCK定位的第二种模式在PD30 - 33之间明显,此时在组织学上可区分的内颗粒细胞层(IGL)中首次能识别出颗粒细胞。在PD30到PD68之间,小脑各小叶内CCK免疫反应性轮廓的分布模式存在差异。最初,CCK免疫反应性轴突仅存在于前蚓部,与浦肯野细胞层中的CCK小点带对齐。直到发育后期,后叶蚓部或半球中才出现CCK免疫反应性小点。此外,后两个区域中均未明显呈现矢状组织。最初,基于其终末形态,IGL中的CCK免疫反应性轮廓不能被识别为苔藓纤维。它们刚进入IGL时表现为点状成分。随着时间推移,它们的形状变得越来越复杂,并在PD68 - 84之间发育出成年苔藓纤维玫瑰花结的形态特征。到PD18时,小脑核在组织学上可区分,但直到PD36时这些神经元中才明显可见CCK免疫反应性纤维,这大约与它们在IGL中可被观察到的时间一致。此外,CCK免疫反应性细胞体在PD26 - 30之间首次出现在小脑核中;这些细胞体在成年个体中也存在。(摘要截选至400字)

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