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Polyethylenimine strategies for plasmid delivery to brain-derived cells.

机译:聚乙烯亚胺用于质粒递送至脑源性细胞的策略。

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The introduction of effective transfection reagents has had a dramatic impact on basic scientific studies over the past decade and is methodically becoming a clinical relevant agent. An area where these agents have had little impact to date is in transfection of neuronal cells either in vivo or in vitro. The poor results, obtained with these cells, likely arise from the innate properties of the cell itself such as its post-mitotic state and its fragility to the transfection agent. In this report, we investigated the transfection efficiency of branched and linear form of polyethylenimine (PEI) for a commonly used tissue culture cell line, the human CF bronchial epithelial cell line IB3-1, rat brain-derived glial, and neuronal cell lines. In addition, the effect of reaction conditions, such as ratio of PEI/plasmid, polymer molecular weight, and shape, was addressed on the transfection effects. The results indicate that branched PEI is more effective for the brain-derived cells. It is also shown that PEI 25 is more effective for the glial cells and PEI 50-100 is more effective for the neuronal cells under the evaluation conditions.
机译:在过去的十年中,有效转染试剂的引入对基础科学研究产生了巨大影响,并且有条理地成为临床相关试剂。迄今为止,这些试剂几乎没有影响的领域是体内或体外转染神经元细胞。用这些细胞获得的不良结果可能是由于细胞本身的固有特性,例如其有丝分裂后状态及其对转染剂的脆弱性。在本报告中,我们研究了聚乙烯亚胺(PEI)的分支和线性形式对常用组织培养细胞系,人CF支气管上皮细胞系IB3-1,大鼠脑源性神经胶质和神经元细胞系的转染效率。另外,针对转染效果,讨论了反应条件的影响,例如PEI /质粒的比例,聚合物分子量和形状。结果表明,支链PEI对于脑源性细胞更有效。还显示在评估条件下,PEI 25对神经胶质细胞更有效,PEI 50-100对神经元细胞更有效。

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