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重新审视聚乙烯亚胺(PEI)与DNA的络合作用——如何制备具有可控链长和结构的低细胞毒性且高效的PEI基因转染非病毒载体?

Revisit the complexation of PEI and DNA - how to make low cytotoxic and highly efficient PEI gene transfection non-viral vectors with a controllable chain length and structure?

作者信息

Deng Rui, Yue Yanan, Jin Fan, Chen Yangchao, Kung Hsiang-Fu, Lin Marie C M, Wu Chi

机构信息

Department of Chemistry, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong.

出版信息

J Control Release. 2009 Nov 16;140(1):40-6. doi: 10.1016/j.jconrel.2009.07.009. Epub 2009 Jul 19.

Abstract

The commercially available branched polyethyleneimine (PEI) with a molar mass of 25 kD (PEI-25K) is an effective in vitro vector to transfer genes, but its cytotoxicity limits its applications in bio-related research. To solve such an efficiency-versus-cytotoxicity catch-22 problem, the disulfide bond has been previously used to link less toxic short PEI chains (2 kD), but previous literature results are controversial. Recently, we found that it is vitally important to remove both carbon dioxide and water in the linking reaction as well as to control the structure of the resultant chains linked by dithiobis(succinimidyl propionate) (DSP). Under a programmable mixing of PEI and DSP, we can use laser light scattering (LLS) to in-situ monitor the linking reaction kinetics in DMSO in terms of the change of the average molar mass (M(w)). Therefore, we were able to withdraw a series of linked PEI chains with different molar masses from one reaction mixture. Two such linked PEI samples (M(w) approximately 7 kD, PEI-7K-L and approximately 400 kD, PEI-400K-L) were used to illustrate the effect of the sample preparation and the chain structure on the in vitro gene transfection and cytotoxicity. Our results reveal that PEI-7K-L is less cytotoxic and more effective in the gene transfection than both PEI-25K and Lipofectamine 2000 in the in vitro gene transfection. However, PEI-400K-L has no gene transfection efficiency even though it is non-toxic.

摘要

市售的摩尔质量为25 kD的支链聚乙烯亚胺(PEI)(PEI-25K)是一种有效的体外基因转移载体,但其细胞毒性限制了它在生物相关研究中的应用。为了解决这种效率与细胞毒性的两难问题,二硫键此前已被用于连接毒性较小的短PEI链(2 kD),但先前的文献结果存在争议。最近,我们发现,在连接反应中去除二氧化碳和水以及控制由二硫代双(琥珀酰亚胺丙酸酯)(DSP)连接的所得链的结构至关重要。在PEI和DSP的可编程混合条件下,我们可以利用激光光散射(LLS)根据平均摩尔质量(M(w))的变化原位监测二甲基亚砜(DMSO)中的连接反应动力学。因此,我们能够从一个反应混合物中提取出一系列具有不同摩尔质量的连接PEI链。使用两个这样的连接PEI样品(M(w)约为7 kD,PEI-7K-L;和约为400 kD,PEI-400K-L)来说明样品制备和链结构对体外基因转染和细胞毒性的影响。我们的结果表明,在体外基因转染中,PEI-7K-L的细胞毒性较小,且在基因转染方面比PEI-25K和Lipofectamine 2000都更有效。然而,PEI-400K-L尽管无毒,但没有基因转染效率。

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