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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Low polydispersity (N-ethyl pyrrolidine methacrylamide-co-1-vinylimidazole) linear oligomers for gene therapy applications
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Low polydispersity (N-ethyl pyrrolidine methacrylamide-co-1-vinylimidazole) linear oligomers for gene therapy applications

机译:基因治疗应用中的低多分散性(N-乙基吡咯烷甲基丙烯酰胺-co-1-乙烯基咪唑)线性低聚物

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摘要

Nonviral methods for gene delivery are becoming ever more prevalent along with the need to design new vectors that are highly effective, stable in biological fluids, inexpensive, and facile to produce. Here, we synthesize our previously reported monomer N-ethyl pyrrolidine methacrylamide (EPA) and evaluate its effectiveness in gene vector applications when copolymerized with 1-vinylimidazole (VI). A range of these novel linear cationic copolymers were synthesized via free radical polymerization with low molecular weights (oligomers) and low polydispersities showing two pKa values as the two co-monomers are cationic. DNA-polymer polyplexes had average sizes between 100 and 250 nm and zeta-potentials between 10 and 25 mV, and a strong dependence of composition on the size on the zeta-potential was observed. The cytotoxicity of the homopolymers, oligomers, and polyplexes toward human fibroblasts and 3T3 mouse fibroblasts was evaluated using the MTT and AlamarBlue? assays, proving that formulations could be made with toxicity as low as low molecular weight linear poly (dimethylaminoethyl methacrylate) (PDMAEMA). The transfection capability of the polyplexes measured using the G-luciferase marker gene far superseded PDMAEMA when evaluated in biological conditions. Furthermore, blood compatibility studies showed that these new oligomers exhibit no significant hemolysis or platelet activation above PBS controls. These new EPA based oligomers with low toxicity and ease of scalability show high transfection abilities in serum conditions, and blood compatibility showing its potential for systemic gene delivery applications.
机译:用于基因递送的非病毒方法变得越来越普遍,同时还需要设计高效,在生物流体中稳定,廉价且易于生产的新载体。在这里,我们合成了先前报道的单体N-乙基吡咯烷甲基丙烯酰胺(EPA),并评估了它与1-乙烯基咪唑(VI)共聚时在基因载体应用中的有效性。通过自由基聚合反应以低分子量(低聚物)和低多分散性合成了一系列这些新型线性阳离子共聚物,因为两种共聚单体是阳离子,因此显示出两个pKa值。 DNA聚合物多链体的平均大小在100到250 nm之间,ζ电位在10到25 mV之间,并且观察到组成对大小的依赖性很大。使用MTT和AlamarBlue®评估均聚物,低聚物和多聚体对人成纤维细胞和3T3小鼠成纤维细胞的细胞毒性。实验证明,该制剂可以低至低分子量线性聚(甲基丙烯酸二甲氨基乙基酯)(PDMAEMA)的毒性进行制备。在生物学条件下评估时,使用G-荧光素酶标记基因测量的多链体的转染能力远远取代了PDMAEMA。此外,血液相容性研究表明,与PBS对照相比,这些新的低聚物没有明显的溶血或血小板活化作用。这些基于EPA的新型低聚物具有低毒性和易扩展性,在血清条件下显示出很高的转染能力,而血液相容性则显示出其在系统基因递送应用中的潜力。

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