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影响放射状胶质细胞形态的因素。

Factors affecting the morphology of radial glia.

作者信息

Gierdalski Marcin, Juliano Sharon L

机构信息

Department of Anatomy, Physiology, & Genetics and Program in Neuroscience, USUHS, Bethesda, MD 20814, USA.

出版信息

Cereb Cortex. 2003 Jun;13(6):572-9. doi: 10.1093/cercor/13.6.572.

Abstract

A model of cortical dysplasia results from disruption of the earliest generated neocortical cells. Injections of an antimitotic (methylazoxy methanol - MAM) into pregnant ferrets result in a constellation of effects, which include disruption of radial glia, with early differentiation in astrocytes, and impaired migration of neurons into the cortical plate. We found previously that culture of P0 MAM-treated slices with explants of normal cortical plate reorganizes the radial glia toward their normal morphology and improves migration of neurons into the cortical plate. This suggested that P0 normal cortical plate contains a 'factor' capable of providing reorganizing cues to disorganized developing cortex. The current study characterizes the biological activity in normal cortical plate by isolating fractions of different molecular weight obtained from conditioned media of organotypic cultures. The only media fraction capable of providing reorganizing activity to MAM-treated cortex was the molecular weight fraction between 30 and 50 kDa. Treatment designed to denature proteins demonstrated that the active molecular weight fraction (30-50 kDa) was not able to provide reorganizing cues when either heated or treated with Proteinase K. These data provide support for the idea that normal cortical plate of neonatal ferret contains a radialization factor that is a protein of 30-50 kDa.

摘要

皮质发育异常模型源于最早生成的新皮质细胞的破坏。向怀孕的雪貂注射抗有丝分裂剂(甲基偶氮甲醇 - MAM)会产生一系列影响,包括放射状胶质细胞的破坏、星形胶质细胞的早期分化以及神经元向皮质板迁移受损。我们之前发现,将P0期经MAM处理的切片与正常皮质板外植体共同培养,可使放射状胶质细胞重新组织成正常形态,并改善神经元向皮质板的迁移。这表明P0期正常皮质板含有一种“因子”,能够为发育紊乱的皮质提供重组线索。当前研究通过分离从器官型培养条件培养基中获得的不同分子量组分,来表征正常皮质板中的生物活性。唯一能够为经MAM处理的皮质提供重组活性的培养基组分是分子量在30至50 kDa之间的组分。旨在使蛋白质变性的处理表明,活性分子量组分(30 - 50 kDa)在加热或用蛋白酶K处理后无法提供重组线索。这些数据支持了新生雪貂正常皮质板含有一种放射状因子的观点,该因子是一种30至50 kDa的蛋白质。

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