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CNS gene transfer mediated by a novel controlled release system based on DNA complexes of degradable polycation PPE-EA: a comparison with polyethylenimine/DNA complexes.

机译:基于可降解聚阳离子PPE-EA的DNA复合物的新型控释系统介导的CNS基因转移:与聚乙胺/ DNA复合物的比较。

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Nonviral gene delivery systems based upon polycation/plasmid DNA complexes are quickly gaining recognition as an alternative to viral gene vectors for their potential in avoiding immunogenicity and toxicity problems inherent in viral systems. We investigated in this study the feasibility of using a controlled release system based on DNA complexed with a recently developed polymeric gene carrier, polyaminoethyl propylene phosphate (PPE-EA), to achieve gene transfer in the brain. A unique feature of this gene delivery system is the biodegradability of PPE-EA, which can provide a sustained release of DNA at different rates depending on the charge ratio of the polymer to DNA. PPE-EA/DNA complexes, naked DNA, and DNA complexed with polyethylenimine (PEI), a nondegradable cationic polymer known to be an effective gene carrier, were injected intracisternally into the mouse cerebrospinal fluid. Transgene expression mediated by naked DNA was mainly detected in the brain stem, a region close to the injection site. With either PPE-EA or PEI as a carrier, higher levels of gene expression could be detected in the cerebral cortex, basal ganglia, and diencephalons. Transgene expression in the brain mediated by PPE-EA/DNA complexes at an N/P ratio of 2 persisted for at least 4 weeks, with a significant higher level than that produced by either naked plasmid DNA or PEI/DNA at the 4-week time point. Furthermore, PPE-EA displayed much lower toxicity in cultured neural cells as compared to PEI and did not cause detectable pathological changes in the central nervous system (CNS). The results established the potential of PPE-EA as a new and biocompatible gene carrier to achieve sustained gene expression in the CNS.Gene Therapy (2004) 11, 109-114. doi:10.1038/sj.gt.3302135
机译:基于聚阳离子/质粒DNA复合物的非血流基因递送系统迅速获得识别,作为病毒基因载体的替代方案,用于避免病毒系统中固有的免疫原性和毒性问题。我们研究了该研究,研究使用基于DNA的受控释放系统与最近开发的聚合物基因载体,聚氨基乙基丙烯磷酸酯(PPE-EA)络合,以达到大脑中的基因转移。该基因递送系统的独特特征是PPE-EA的生物降解性,其可以根据聚合物与DNA的电荷比以不同的速率提供持续释放的DNA。 PPE-EA / DNA复合物,裸DNA和与聚乙基菊氨酸(PEI)复合的DNA,一种已知是有效基因载体的非阳离阳离子聚合物,在小鼠脑脊液中注射到小鼠脑脊液中。由裸DNA介导的转基因表达主要检测到脑干中,靠近注射部位的区域。用PPE-EA或PEI作为载体,可以在脑皮质,基础神经节和Diencephalons中检测更高水平的基因表达。通过PPE-EA / DNA复合物介导的脑中的脑中的转基因表达持续至少4周,其在4周的裸粒子DNA或PEI / DNA产生显着较高水平时间点。此外,与PEI相比,PPE-EA在培养的神经细胞中显示出大得多的毒性,并且在中枢神经系统(CNS)中没有引起可检测的病理变化。结果建立了PPE-EA作为一种新的和生物相容性基因载体,以实现CNS.gene治疗(2004)11,109-114中的持续基因表达。 DOI:10.1038 / sj.gt.3302135

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