Gao Yu, Gu Wangwen, Chen Lingli, Xu Zhenghong, Li Yaping
Institute of Materia Medica, Shanghai Institute for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.
J Control Release. 2007 Apr 23;118(3):381-8. doi: 10.1016/j.jconrel.2007.01.006. Epub 2007 Jan 20.
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.
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。