Heckroth J A
Indiana University School of Medicine, Terre Haute Center for Medical Education, Indiana State University 47809.
J Comp Neurol. 1992 Jan 1;315(1):85-97. doi: 10.1002/cne.903150107.
The development of glutamic acid decarboxylase-immunoreactivity (GAD-IR) in cells, fibers, and varicosities of the cerebellar cortex has been examined by light microscopy in normal and lurcher mutant mice between postnatal day 3 and 30 (P3-P30). Purkinje cell morphology was demonstrated in adjacent sections by using an antiserum to the 28Kd vitamin D-dependent calcium binding protein (CaBP). In early postnatal lurcher mice, but not in normal littermates, GAD-IR fibers, presumably Purkinje cell pseudopodia, invade the external granular layer. The plexus of CaBP-IR axons in the internal granular layer is much less complex in lurcher mice than in normal littermates, even before the onset of lurcher Purkinje cell degeneration at P8. In normal mice, GAD-IR fibers encapsulate Purkinje cell somata by P15. Lurcher Purkinje cells, in contrast, receive scattered contacts by GAD-IR puncta and possess a "cap" of such elements surrounding the primary dendrite and apical soma. Pinceau formations, visible as a knot of GAD-IR puncta hanging from the base of Purkinje cells in normal P15 mice, are not present in lurcher littermates. "Empty baskets" or collapsed pinceau formations in regions devoid of Purkinje cells are not revealed by anti-GAD immunohistochemistry in the P17-P30 lurcher cerebellar cortex.
在出生后第3天至30天(P3 - P30)的正常和蹒跚突变小鼠中,通过光学显微镜检查了小脑皮质细胞、纤维和膨体中谷氨酸脱羧酶免疫反应性(GAD - IR)的发育情况。在相邻切片中,使用针对28Kd维生素D依赖性钙结合蛋白(CaBP)的抗血清来显示浦肯野细胞的形态。在出生后早期的蹒跚小鼠中,但在正常同窝小鼠中未发现,GAD - IR纤维(可能是浦肯野细胞伪足)侵入外颗粒层。即使在P8时蹒跚浦肯野细胞开始退化之前,蹒跚小鼠内颗粒层中CaBP - IR轴突的丛状结构也比正常同窝小鼠简单得多。在正常小鼠中,到P15时GAD - IR纤维包裹浦肯野细胞胞体。相比之下,蹒跚浦肯野细胞通过GAD - IR斑点接受分散的接触,并在初级树突和顶端胞体周围有这样的元素组成的“帽”。在正常P15小鼠中可见为从浦肯野细胞基部悬挂的GAD - IR斑点结的篮状结构,在蹒跚同窝小鼠中不存在。在P17 - P30的蹒跚小鼠小脑皮质中,抗GAD免疫组织化学未显示在没有浦肯野细胞的区域有“空篮”或塌陷的篮状结构。