1.中国科学院上海应用物理研究所 上海 201800
徐冬梅,女,1980年1月出生,中国科学院上海应用物理研究所2004 级在读博士,无机化学专业
姚思德
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徐冬梅, 余家会, 刘永彪, 等. 光化学法合成高基因转染效率的聚乙烯亚胺[J]. 辐射研究与辐射工艺学报, 2005,23(2):81.
XU Dongmei, YU Jiahui, LIU Yongbiao, et al. Photochemistry synthesis of PEI for gene delivery with high transfection efficiency[J]. Journal of Radiation Research and Radiation Processing, 2005,23(2):81.
基因转染载体主要分为病毒类载体和非病毒类载体两大类。聚阳离子型纳米凝胶属于非病毒类载体,与病毒类载体相比,其具有低毒、低免疫反应、无基因插入片断大小限制、制备方便、保存容易等优点;和脂质体等非病毒类载体相比,其价格较低,且粒径大小及表面电荷等可由化学反应控制。另外,其转染效率及体内转染的靶向性有可能更好。目前,开展该类载体合成方法的研究越来越多,[1-3],,但很多合成方法须使用有一定毒性的表面活性剂或引发剂,且制备出的聚阳离子化合物粒径较大。鉴此,本工作尝试用光化学法制备聚阳离子纳米凝胶。
In this paper, we report a novel method to synthesize polyethylenimine (PEI) nanogels in the range of 80—200nm with narrow size distribution by photo-chemistry at room temperature in aqueous solution. The nanogels’ size, size distributions and zeta potential were determined by photo correlation spectroscopy (PCS). Spherical morphology of the nanogels was characterized by scanning electron microscopy (SEM) and confirmed by atomic force microscopy (AFM). The nanogels are of high stability, low toxicity and low immunogenicity, as having been confirmed in ,in vivo, tests with mice as animal model, and ,in vitro, tests with human lung and liver cancer cells as well. Efforts are being made for further studies on synthesis and applications of the nanogels.
聚乙烯亚胺光化学基因转染
PolyethyleniminePhotochemistryGene delivery
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