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首页> 外文期刊>Bioconjugate Chemistry >Polyelectrolyte Complexes of Low Molecular Weight PEI and Citric Acid as Efficient and Nontoxic Vectors for in Vitro and in Vivo Gene Delivery
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Polyelectrolyte Complexes of Low Molecular Weight PEI and Citric Acid as Efficient and Nontoxic Vectors for in Vitro and in Vivo Gene Delivery

机译:低分子量PEI和柠檬酸的聚电解质复合物是高效无毒的体外和体内基因传递载体

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Gene transfection mediated by the cationic polymer polyethylenimine (PEI) is considered a standard methodology. However, while highly branched PEIs form smaller polyplexes with DNA that exhibit high transfection efficiencies, they have significant cell toxicity. Conversely, low molecular weight PEIs (LMW-PEIs) with favorable cytotoxicity profiles display minimum transfection activities as a result of inadequate DNA complexation and protection. To solve this paradox, a novel polyelectrolyte complex was prepared by the ionic cross -linking of branched 1.8 kna PEI with citric acid (CA). This system synergistically exploits the good cytotoxicity profile exhibited by LMW-PEI with the high transfection efficiencies shown by highly branched and high molecular weight PEIs. The polyectrolyte complex (1.8 kDa-PEI@CA) was obtained by a simple synthetic protocol based on the microwave irradiation of a solution of 1.8 kDa PEI and CA. Upon complexation with DNA, intrinsic properties of the resulting particles (size and surface charge) were measured and their ability to form stable polyplexes was determined. Compared with unmodified PEIs the new complexes behave as efficient gene vectors and showed enhanced DNA binding capability associated with facilitated intracellular DNA release and enhanced DNA protection from endonuclease degradation. In addition, while transfection values for LMW-PEIs are almost null, transfection efficiencies of the new reagent range from 2.5-to 3.8 -fold to those of Lipofectamine 2000 and 25 kDa PEI in several cell lines in culture such as CHO-kl, FTO2B hepatomas, L6 myoblasts, or NRK cells, simultaneously showing a negligible toxicity. Furthermore, the 1.8 kDa-PEI@CA polyelectrolyte complexes retained the capability to transfect eukaryotic cells in the presence of serum and exhibited the capability to promote in vivo transfection in mouse (as an animal model) with an enhanced efficiency compared to 25 kDa PEI. Results support the polyelectrolyte complex of LMW-PEI and CA as promising generic nonviral gene carriers.
机译:阳离子聚合物聚乙烯亚胺(PEI)介导的基因转染被认为是一种标准方法。然而,尽管高度分支的PEI与具有较高转染效率的DNA形成较小的多链体,但它们具有明显的细胞毒性。相反,由于DNA络合和保护不足,具有良好细胞毒性特征的低分子量PEI(LMW-PEI)显示出最小的转染活性。为了解决这一矛盾,通过分支的1.8 kna PEI与柠檬酸(CA)的离子交联制备了一种新型的聚电解质复合物。该系统协同利用了LMW-PEI表现出的良好的细胞毒性特征,并具有高分支和高分子量PEI所显示的高转染效率。通过简单的合成方案,基于微波辐照1.8 kDa PEI和CA的溶液,获得了多电解质复合物(1.8 kDa-PEI @ CA)。与DNA络合后,测量所得颗粒的固有性质(尺寸和表面电荷),并确定其形成稳定多链体的能力。与未修饰的PEI相比,新复合物可作为有效的基因载体,显示出增强的DNA结合能力,可促进细胞内DNA的释放,并增强了DNA对核酸内切酶降解的保护作用。另外,尽管LMW-PEIs的转染值几乎为零,但在诸如CHO-kl,FTO2B的几种细胞系中,新试剂的转染效率是Lipofectamine 2000和25 kDa PEI的2.5-3.8倍。肝癌,L6成肌细胞或NRK细胞,其毒性可忽略不计。此外,与25 kDa PEI相比,1.8 kDa-PEI @ CA聚电解质复合物在存在血清的情况下仍保留了转染真核细胞的能力,并具有促进小鼠(作为动物模型)体内转染的能力。结果支持LMW-PEI和CA的聚电解质复合物作为有希望的通用非病毒基因载体。

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