首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Long-term bFGF neuronal culture: reintroduction into serum medium yields neurons and non-neuronal cells with neuronal characteristics.
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Long-term bFGF neuronal culture: reintroduction into serum medium yields neurons and non-neuronal cells with neuronal characteristics.

机译:长期bFGF神经元培养:重新引入血清培养基可产生具有神经元特征的神经元和非神经元细胞。

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摘要

The potential use of bFGF immortalized cells as hosts for delivering foreign genes into nervous tissue led us to examine the effect of maintaining, E-18 hippocampal neurons for extended periods in bFGF culture prior to transfer into a standard, serum-containing, medium. We found: (1) many, if not most, precursors seen in bFGF, mature into glia and not into primary neurons after medium exchange; (2) the electrophysiology of the neurons which do mature after medium transfer and replating, is similar to that of neurons in standard cultures; (3) extended culture in bFGF prior to cell harvesting and replating into standard medium generates neurons from the precursors that possess proper neuronal polarization, morphology, and electrophysiology; and (4) extended bFGF also induces the expression, on transfer into standard medium, of an additional cell type with a distinct non-neuronal morphology that stains with the neuronal marker MAP-2. These results illustrate the need for additional characterization of long-term growth factor effects on maintained progenitor cells prior to their use in gene therapy and transplantation.
机译:bFGF永生化细胞作为将外源基因传递至神经组织的宿主的潜在用途使我们研究了在转移至标准的含血清培养基之前,在bFGF培养物中长时间维持E-18海马神经元的作用。我们发现:(1)在培养基交换后,在bFGF中看到的许多(如果不是大多数)前体成熟为神经胶质而不是初级神经元。 (2)在培养基转移和重铺后成熟的神经元的电生理学与标准培养中的神经元相似。 (3)在收集细胞并将其重新接种到标准培养基中之前,在bFGF中进行扩展培养,以从具有适当神经元极化,形态和电生理学的前体中产生神经元; (4)扩展的bFGF在转移到标准培养基中后,还可以诱导其他细胞类型的表达,这种细胞类型具有明显的非神经元形态,并被神经元标记MAP-2染色。这些结果说明在将其用于基因治疗和移植之前,需要进一步表征长期生长因子对维持的祖细胞的作用。

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