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神经生长因子与层粘连蛋白或纤连蛋白在促进感觉神经元存活和轴突生长方面的协同作用。

Cooperation between nerve growth factor and laminin or fibronectin in promoting sensory neuron survival and neurite outgrowth.

作者信息

Millaruelo A I, Nieto-Sampedro M, Cotman C W

机构信息

Department of Psychobiology, University of California, Irvine 92717.

出版信息

Brain Res. 1988 Feb 1;466(2):219-28. doi: 10.1016/0165-3806(88)90047-8.

Abstract

Chick embryo dorsal root ganglion (DRG) neurons were purified by differential adhesion to plastic. The purified neurons were used to study the cooperation between nerve growth factor (NGF) and laminin or fibronectin in promoting neuron survival and neurite outgrowth. NGF alone supported the survival of only 20% embryonic day 10 (E10) cells, of which only 40-50% had neurites. Treatment of the substrate with fibronectin or laminin increased survival in the presence of NGF up to 80% of the seeded neurons, all of which showed extensive neurite outgrowth. Survival and neurite outgrowth were also enhanced by the combined effects of elevated potassium and laminin. In contrast to E8-10 cells, 85% of E16 neurons survived in the basal culture conditions, i.e. without additional NGF, fibronectin or laminin, although neurite outgrowth was enhanced by all 3 proteins. Antisera to NGF, laminin and fibronectin, each independently decreased survival and neurite outgrowth of DRG neurons, totally with E9 and partially with E16 cells. The results suggest that the cooperative actions of extracellular matrix proteins and NGF are essential for survival and neurite outgrowth of embryonic DRG neurons and that these neuronal requirements change during development.

摘要

鸡胚背根神经节(DRG)神经元通过与塑料的差异黏附进行纯化。纯化后的神经元用于研究神经生长因子(NGF)与层粘连蛋白或纤连蛋白在促进神经元存活和神经突生长方面的协同作用。单独使用NGF仅能支持10%胚胎日(E10)细胞的存活,其中只有40 - 50%有神经突。用纤连蛋白或层粘连蛋白处理底物,在有NGF存在的情况下,可使存活的接种神经元增加至80%,所有这些神经元都显示出广泛的神经突生长。高钾和层粘连蛋白的联合作用也增强了神经元的存活和神经突生长。与E8 - 10细胞不同,85%的E16神经元在基础培养条件下(即无额外的NGF、纤连蛋白或层粘连蛋白)存活,尽管这三种蛋白都能增强神经突生长。抗NGF、层粘连蛋白和纤连蛋白的抗血清各自独立地降低了DRG神经元的存活和神经突生长,对E9细胞完全起作用,对E16细胞部分起作用。结果表明,细胞外基质蛋白和NGF的协同作用对于胚胎DRG神经元的存活和神经突生长至关重要,并且这些神经元的需求在发育过程中会发生变化。

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