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首页> 外文期刊>Pharmaceutical research >Identification of novel superior polycationic vectors for gene delivery by high-throughput synthesis and screening of a combinatorial library.
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Identification of novel superior polycationic vectors for gene delivery by high-throughput synthesis and screening of a combinatorial library.

机译:通过高通量合成和筛选组合文库,鉴定用于基因递送的新型优良聚阳离子载体。

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摘要

PURPOSE: Low efficiency and toxicity are two major drawbacks of current non-viral gene delivery vectors. Since DNA delivery to mammalian cells is a multi-step process, generating and searching combinatorial libraries of vectors employing high-throughput synthesis and screening methods is an attractive strategy for the development of new improved vectors because it increases the chance of identifying the most overall optimized vectors. MATERIALS AND METHODS: Based on the rationale that increasing the effective molecular weight of small PEIs, which are poor vectors compared to the higher molecular weight homologues but less toxic, raises their transfection efficiency due to better DNA binding, we synthesized a library of 144 biodegradable derivatives from two small PEIs and 24 bi- and oligo-acrylate esters. A 423-Da linear PEI and its 1:1 (w/w) mixture with a 1.8-kDa branched PEI were cross-linked with the acrylates at three molar ratios in DMSO. The resulting polymers were screened for their efficiency in delivering a beta-galactosidase expressing plasmid to COS-7 monkey kidney cells. Selected most potent polymers from the initial screen were tested for toxicity in A549 human lung cancer cells, and in vivo in a systemic gene delivery model in mice employing a firefly luciferase expressing plasmid. RESULTS: Several polycations that exhibited high potency and low toxicity in vitro were identified from the library. The most potent derivative of the linear 423-Da PEI was that cross-linked with tricycle-[5.2.1.0]-decane-dimethanol diacrylate (diacrylate 14), which exhibited an over 3,600-fold enhancement in efficiency over the parent. The most potent mixed PEI was that cross-linked with ethylene glycol diacrylate (diacrylate 4) which was over 850-fold more efficient than the physically mixed parent PEIs. The relative efficiencies of these polymers were even up to over twice as high as that of the linear 22-kDa PEI, considered the "gold standard" for in vitro and systemic gene delivery. The potent cross-linked polycations identified were also less toxic than the 22-kDa PEI. The optimal vector in vivo was the mixed PEI cross-linked with propylene glycol glycerolate diacrylate (diacrylate 7); it mediated the highest gene expression in the lungs, followed by the spleen, with the expression in the former being 53-fold higher compared to the latter. In contrast, the parent PEIs mediated no gene expression at all under similar conditions, and injection of the polyplexes of the 22-kDa PEI at its optimal N/P of 10 prepared under identical conditions killed half of the mice injected. CONCLUSIONS: High-throughput synthesis and transfection assay of a cross-linked library of biodegradable PEIs was proven effective in identifying highly transfecting vectors. The identified vectors exhibited dramatically superior efficiency compared to their parents both in vitro and in an in vivo systemic gene delivery model. The majority of these vectors mediated preferential gene delivery to the lung, and their in vivo toxicity paralleled that in vitro.
机译:目的:低效率和毒性是当前非病毒基因递送载体的两个主要缺点。由于将DNA传递到哺乳动物细胞是一个多步骤的过程,因此,使用高通量合成和筛选方法生成和搜索载体的组合库是开发新的改良载体的有吸引力的策略,因为它增加了鉴定总体最优化的机会向量。材料与方法:基于以下原理,即与较高分子量的同系物相比,较弱的载体,较小的PEI的有效分子量有所提高,这归因于更好的DNA结合,从而提高了其转染效率,我们合成了144个可生物降解的文库两种小型PEI和24种丙烯酸低聚酯的衍生物。在DMSO中,将423-Da线性PEI及其与1.8-kDa支链PEI的1:1(w / w)混合物与丙烯酸酯进行交联。筛选所得聚合物将β-半乳糖苷酶表达质粒递送至COS-7猴肾细胞的效率。测试了从初始筛选中选择的最有效的聚合物在A549人肺癌细胞中的毒性,并在使用萤火虫荧光素酶表达质粒的小鼠体内的全身基因传递模型中进行了体内毒性测试。结果:从文库中鉴定出几种在体外表现出高效能和低毒性的聚阳离子。线性423-Da PEI的最有效衍生物是与三环-[5.2.1.0]-癸烷-二甲醇二丙烯酸酯(二丙烯酸酯14)交联的化合物,其效率比母体提高了3600倍。最有效的混合PEI是与乙二醇二丙烯酸酯(二丙烯酸4)交联的,其效率比物理混合母体PEI高850倍以上。这些聚合物的相对效率甚至高达线性22-kDa PEI的两倍,后者被认为是体外和全身基因递送的“金标准”。鉴定出的强效交联聚阳离子的毒性也低于22 kDa PEI。体内最佳载体是与丙二醇甘油酸酯二丙烯酸酯(二丙烯酸酯7)交联的混合PEI。它介导了肺中最高的基因表达,其次是脾脏,前者的表达是后者的53倍。相反,亲本PEI在相似条件下根本不介导基因表达,并且在相同条件下以其最佳N / P为10的最佳条件注射22-kDa PEI多聚体杀死了一半的注射小鼠。结论:高通量合成和可生物降解的PEIs的交联文库的转染测定已被证明可有效鉴定高转染载体。在体外和体内系统基因递送模型中,与它们的亲本相比,鉴定出的载体表现出显着优越的效率。这些载体大多数介导优先向肺的基因传递,其体内毒性与体外相似。

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