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首页> 外文期刊>Journal of Neuroscience Methods >Molecular and immunocytochemical characterization of primary neuronal cultures from adult rat brain: Differential expression of neuronal and glial protein markers.
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Molecular and immunocytochemical characterization of primary neuronal cultures from adult rat brain: Differential expression of neuronal and glial protein markers.

机译:成年大鼠大脑原代神经元培养物的分子和免疫细胞化学表征:神经元和神经胶质蛋白标志物的差异表达。

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Neurobiological studies using primary neuronal cultures commonly employ fetal-derived neurons, but much less often adult brain-derived neurons. Our goal is to perform morphological and molecular characterization of primary neuronal cultures from adult rat brain, including the relative expression of neuronal and glial cell markers at different time points. We tested the hypothesis that long-term neuronal viability is compatible with glial proliferation in adult neuron culture. We examined neuron culture from adult rat brain, which was maintained at steady state up to 24 days, and characterized them on the basis of cellular, molecular and biochemical properties at different time points of the culture. We identified neuronal and glial cells by both immunocytochemical and western immunoblotting techniques using NSE and Tau as neuronal markers and GFAP as glial protein marker, which revealed the presence of predominantly neuronal cells in the initial phase of the culture and a rise in glial cells from day 12 onwards. Notably, neuronal cells were preserved in the culture along with the glial cells even at day 24. Transfection of the cultured cells with a GFP expression vector and plasmids containing a luciferase reporter gene under the control of two different gene promoters demonstrated DNA transfectability. Taken together, these results suggest a differential expression of neuronal and glial cells at different time points and long-term neuronal viability in the presence of glial proliferation. Such adult neurons serve as a suitable system for the application of neurodegeneration models and for drug target discovery in various brain disorders including Alzheimer's disease.
机译:使用原代神经元培养物进行的神经生物学研究通常采用胎儿衍生的神经元,但成年大脑衍生的神经元则少得多。我们的目标是对成年大鼠大脑的原代神经元培养物进行形态学和分子表征,包括在不同时间点神经元和神经胶质细胞标志物的相对表达。我们测试了长期的神经元生存能力与成年神经元文化中的神经胶质增生相容的假设。我们检查了成年大鼠大脑的神经元培养物,该神经元培养物一直保持稳定状态长达24天,并根据培养物不同时间点的细胞,分子和生化特性对它们进行了表征。我们使用NSE和Tau作为神经元标记物和GFAP作为神经胶质蛋白标记物的免疫细胞化学和西方免疫印迹技术鉴定了神经元和神经胶质细胞,这揭示了培养初始阶段主要存在神经元细胞,而从今天开始神经胶质细胞的增多12起。值得注意的是,甚至在第24天,神经元细胞也与神经胶质细胞一起保存在培养物中。在两个不同的基因启动子的控制下,用GFP表达载体和含有荧光素酶报道基因的质粒转染培养的细胞证明了DNA转染性。综上所述,这些结果表明在神经胶质增生的情况下,神经元和神经胶质细胞在不同时间点的差异表达以及长期的神经元活力。这样的成年神经元用作在包括阿尔茨海默氏病在内的各种脑部疾病中应用神经变性模型和发现药物靶标的合适系统。

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