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一种作为基因递送非病毒载体的多功能纳米装置:体外特性与转染

A multifunctional nano device as non-viral vector for gene delivery: in vitro characteristics and transfection.

作者信息

Gao Yu, Gu Wangwen, Chen Lingli, Xu Zhenghong, Li Yaping

机构信息

Institute of Materia Medica, Shanghai Institute for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.

出版信息

J Control Release. 2007 Apr 23;118(3):381-8. doi: 10.1016/j.jconrel.2007.01.006. Epub 2007 Jan 20.

Abstract

The aim of this work was to design a new multifunctional nano device (MND) for gene delivery. This MND was equipped with folic acid as ligand, which was conjugated to terminal amido of poly(aminopoly(ethylene glycol)cyanoacrylate-co-hexadecyl cyanoacrylate) (poly(H(2)NPEGCA-co-HDCA)) to synthesize poly(Folate-HNPEGCA-co-HDCA), protamine sulfate (PS) as DNA condenser and for nuclear transfer, PEG chain from poly(Folate-HNPEGCA-co-HDCA) for decreasing macrophages recognition and extending half-life, dioleoyl phosphatidylethanolamine (DOPE) for endosomal escape, and we supposed that the latent DOPE fusogenicity could be gently restored along with fast degradation of poly(Folate-HNPEGCA-co-HDCA) in MND membrane within endosome. Our experimental results showed that optimum complexation ( approximately 97%) of DNA was achieved at DNA:PS=1:3 (w/w). The MND showed different loading ratio by lipid film hydration technique with the highest loading ratio about 12%, the particle size range 200-400 nm, surface charge range 8 mV-15 mV. MND1 (poly(Folate-HNPEGCA-co-HDCA)/DOPE, 5:95, molar ratio) exhibited a high burst release effect with 60% of pDNA/PS released within 1 day at PBS (pH 4.5), but with 21.4% and 8.1% pDNA/PS release at PBS with pH 5.8 and 7.4 within 24 h, respectively. However, lesser pDNA/PS release occurred in MND2 (poly(Folate-HNPEGCA-co-HDCA)/DOPE, 10:90, molar ratio) with 46%, 16.9% and 7.8% of pDNA/PS released at PBS with pH 4.5, 5.8 and 7.4 within 24 h, respectively. After 1 day, pDNA/PS displayed a sustained release pattern. The amount of cumulated pDNA/PS release over 3 days was 75% and 51.2% at PBS with pH 4.5 for MND1 and MND2, respectively. The MND loading pDNA/PS showed that luciferase activity was over 0.5 ng luciferase/mg protein in KB cells, in particular, the MND1 showed the highest transfection efficiency (0.66 ng luciferase/mg protein) in KB cells, which was much higher compared with in A549 cells or other formulations such as LipofectAMINE, free pDNA/PS and control multifunctional nano device (CMND), whose lipid film was consisted of poly(H(2)NPEGCA-co-HDCA) and DOPE. In addition, MND also showed good protection during encapsulation and low cytotoxicity. As a result, MND could be a more potential non-viral vector for delivery of DNA.

摘要

本研究旨在设计一种用于基因递送的新型多功能纳米器件(MND)。该MND配备有叶酸作为配体,其与聚(氨基聚(乙二醇)氰基丙烯酸酯 - 共 - 十六烷基氰基丙烯酸酯)(聚(H₂NPEGCA - 共 - HDCA))的末端酰胺基共轭以合成聚(叶酸 - HNPEGCA - 共 - HDCA),硫酸鱼精蛋白(PS)作为DNA凝聚剂和用于核转运,聚(叶酸 - HNPEGCA - 共 - HDCA)的PEG链用于减少巨噬细胞识别并延长半衰期,二油酰磷脂酰乙醇胺(DOPE)用于内体逃逸,并且我们推测随着内体中MND膜内聚(叶酸 - HNPEGCA - 共 - HDCA)的快速降解,潜在的DOPE融合性可以被温和地恢复。我们的实验结果表明,在DNA:PS = 1:3(w/w)时实现了DNA的最佳络合(约97%)。通过脂质膜水合技术,MND显示出不同的负载率,最高负载率约为12%,粒径范围为200 - 400 nm,表面电荷范围为8 mV - 15 mV。MND1(聚(叶酸 - HNPEGCA - 共 - HDCA)/DOPE,摩尔比5:95)在PBS(pH 4.5)中1天内表现出高爆发释放效果,60%的pDNA/PS释放,但在pH 5.8和7.4的PBS中24小时内分别有21.4%和8.1%的pDNA/PS释放。然而,MND2(聚(叶酸 - HNPEGCA - 共 - HDCA)/DOPE,摩尔比10:90)中pDNA/PS释放较少,在pH 4.5、5.8和7.4的PBS中24小时内分别有46%、16.9%和7.8%的pDNA/PS释放。1天后,pDNA/PS呈现持续释放模式。在pH 4.5的PBS中,MND1和MND2在3天内累积的pDNA/PS释放量分别为75%和51.2%。负载pDNA/PS的MND显示在KB细胞中荧光素酶活性超过0.5 ng荧光素酶/mg蛋白,特别是MND1在KB细胞中显示出最高的转染效率(0.66 ng荧光素酶/mg蛋白),与A549细胞或其他制剂如LipofectAMINE、游离pDNA/PS和对照多功能纳米器件(CMND)相比要高得多,CMND的脂质膜由聚(H₂NPEGCA - 共 - HDCA)和DOPE组成。此外,MND在包封过程中也表现出良好的保护作用且细胞毒性低。因此,MND可能是一种更具潜力的DNA递送非病毒载体。

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