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在添加B27的Neurobasal(一种新的无血清培养基组合)中,海马神经元的存活得到优化。

Optimized survival of hippocampal neurons in B27-supplemented Neurobasal, a new serum-free medium combination.

作者信息

Brewer G J, Torricelli J R, Evege E K, Price P J

机构信息

Southern Illinois University School of Medicine, Springfield 62794.

出版信息

J Neurosci Res. 1993 Aug 1;35(5):567-76. doi: 10.1002/jnr.490350513.

Abstract

We have systematically optimized the concentrations of 20 components of a previously published serum-free medium (Brewer and Cotman, Brain Res 494: 65-74, 1989) for survival of rat embryonic hippocampal neurons after 4 days in culture. This serum-free medium supplement, B27, produced neuron survival above 60%, independent of plating density above 160 plated cells/mm2. For isolated cells (< 100 cells/mm2), survival at 4 days was still above 45%, but could be rescued to the 60% level at 40 cells/mm2 by simply applying a coverslip on top of the cells. This suggests a need for additional trophic factors. High survival was achieved with osmolarity lower than found in Dulbecco's Modified Eagle's Medium (DMEM), and by reducing cysteine and glutamine concentrations and by the elimination of toxic ferrous sulphate found in DME/F12. Neurobasal is a new medium that incorporates these modifications to DMEM. In B27/Neurobasal, glial growth is reduced to less than 0.5% of the nearly pure neuronal population, as judged by immunocytochemistry for glial fibrillary acidic protein and neuron-specific enolase. Excellent long-term viability is achieved after 4 weeks in culture with greater than 90% viability for cells plated at 640/mm2 and greater than 50% viability for cells plated at 160/mm2. Since the medium also supports the growth of neurons from embryonic rat striatum, substantia nigra, septum, and cortex, and neonatal dentate gyrus and cerebellum (Brewer, in preparation), support for other neuron types is likely. B27/Neurobasal should be useful for in vitro studies of neuronal toxicology, pharmacology, electrophysiology, gene expression, development, and effects of growth factors and hormones.

摘要

我们系统地优化了先前发表的无血清培养基(Brewer和Cotman,《脑研究》494:65 - 74,1989)中20种成分的浓度,以利于大鼠胚胎海马神经元在培养4天后存活。这种无血清培养基添加剂B27能使神经元存活率高于60%,与接种密度高于160个接种细胞/mm²无关。对于分离的细胞(<100个细胞/mm²),4天时的存活率仍高于45%,但通过在细胞顶部简单放置盖玻片,在接种密度为40个细胞/mm²时可将存活率提高到60%水平。这表明需要额外的营养因子。通过使渗透压低于杜氏改良伊格尔培养基(DMEM)中的渗透压、降低半胱氨酸和谷氨酰胺浓度以及去除DME/F12中发现的有毒硫酸亚铁,实现了高存活率。Neurobasal是一种对DMEM进行了这些改良的新培养基。在B27/Neurobasal中,通过对胶质纤维酸性蛋白和神经元特异性烯醇化酶进行免疫细胞化学检测判断,胶质细胞生长减少至几乎纯神经元群体的不到0.5%。培养4周后实现了优异的长期活力,接种密度为640/mm²的细胞活力大于90%,接种密度为160/mm²的细胞活力大于50%。由于该培养基还支持来自胚胎大鼠纹状体、黑质、隔区和皮质以及新生齿状回和小脑的神经元生长(Brewer,正在准备中),所以可能也支持其他类型的神经元。B27/Neurobasal应可用于神经元毒理学、药理学、电生理学、基因表达、发育以及生长因子和激素作用的体外研究。

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