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Binding of developing mouse cerebellar cells to fibronectin: a possible mechanism for the formation of the external granular layer

机译:发育中的小鼠小脑细胞与纤连蛋白的结合:外部颗粒层形成的可能机制

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摘要

The role of the matrix glycoprotein fibronectin in the formation of the external granular layer of the developing mouse cerebellum was investigated by in vitro studies of the binding of cerebellar cells to a fibronectin-coated culture substratum and by in vivo immunocytochemical localization of antiplasma fibronectin antiserum in cerebellar tissue. The adhesion of cells dissociated from embryonic and early postnatal mouse cerebellum is developmental stage-specific when the cells are plated on tissue culture substrata derivatized with human plasma fibronectin. Cells dissociated from mouse cerebellum at embryonic day 13 form cellular aggregates on insoluble plasma fibronectin. In contrast, cells dissociated from embryonic day 16 through postnatal day 7 cerebellum form a monolayer. Time-lapse video recordings reveal extensive cell movement of late embryonic and early postnatal cerebellar cells on insoluble plasma fibronectin. Late embryonic and early postnatal cerebellar cells bind to fibronectin but do not degrade the fibronectin substratum. Immunocytochemical studies of the binding of antiplasma fibronectin antisera to cryostat sections of intact embryonic and early postnatal cerebellar tissue reveal a brightly stained region of endogenous fibronectin along the route of granule cell migration from the lateral caudal part of the neuroepithelium lining the fourth ventricle up onto the external surface of the cerebellar anlage. When the formation of the external granular layer is completed, the intense region of fibronectin is no longer visible.
机译:通过体外研究小脑细胞与纤连蛋白包被的培养基质的结合以及体内抗血浆纤连蛋白抗血清的免疫细胞化学定位,研究了基质糖蛋白纤连蛋白在发育中的小鼠小脑外部颗粒层形成中的作用。小脑组织。当将细胞涂在用人血浆纤连蛋白衍生化的组织培养基质上时,从胚胎和出生后早期小鼠小脑解离的细胞的粘附是发育阶段特异性的。在胚胎第13天从小鼠小脑解离的细胞在不溶性血浆纤连蛋白上形成细胞聚集体。相反,从胚胎第16天到出生后第7天小脑解离的细胞形成单层。延时录像记录了在不溶性血浆纤连蛋白上胚胎晚期和出生后小脑早期细胞的广泛细胞运动。胚胎晚期和产后早期小脑细胞与纤连蛋白结合,但不会降解纤连蛋白基质。免疫细胞化学研究抗血浆纤连蛋白抗血清与完整的胚胎和出生后小脑早期组织的低温恒温器切片的结合,发现沿颗粒细胞从神经上皮外侧尾部到第四脑室衬里的颗粒细胞迁移的路径,内源性纤连蛋白的染色区域较亮。小脑血管外表面。当外部颗粒层的形成完成时,纤连蛋白的强区域不再可见。

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