首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Functionalization of poly(amidoamine) dendrimers with hydrophobic chains for improved gene delivery in mesenchymal stem cells
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Functionalization of poly(amidoamine) dendrimers with hydrophobic chains for improved gene delivery in mesenchymal stem cells

机译:具有疏水链的聚(酰胺胺)树状聚合物的功能化,以改善间充质干细胞的基因传递

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摘要

A new family of gene delivery vectors is synthesized consisting of a medium-size generation PAMAM dendrimer (generation 5, with amine termini) core randomly linked at the periphery to hydrophobic chains that vary in length (12 to 16 carbon alkyl chains) and number (from 4.2 to 9.7 in average). The idea subjacent to the present work is to join the advantages of the cationic nature of the dendrimer with the capacity of lipids to interact with biological membranes. Unlike other amphiphilic systems designed for the same purpose, where the hydrophobic and hydrophilic moieties coexist in opposite sides, the present vectors have a hydrophilic interior and a hydrophobic corona. The vectors are characterized in respect to their ability to neutralize, bind and compact plasmid DNA (pDNA). The complexes formed between the vectors and pDNA are analyzed concerning their size, ζ-potential, resistance to serum nucleases, capacity of being internalized by cells and transfection efficiency. These new vectors show a remarkable capacity for mediating the internalization of pDNA with minimum cytotoxicity, being this effect positively correlated with the -CH_2- content present in the hydrophobic corona. Gene expression in MSCs, a cell type with relevancy in the regenerative medicine clinical context, is also enhanced using the new vectors but, in this case, the higher efficiency is shown by the vectors containing the smallest hydrophobic chains.
机译:合成了一个新的基因传递载体家族,其中包括中等大小的PAMAM树状聚合物(第5代,带有胺末端)核心,该核心在外围随机连接至长度(12至16个碳烷基链)和数量(平均为4.2至9.7)。在本工作之后的想法是将树状聚合物的阳离子性质的优点与脂质与生物膜相互作用的能力结合起来。与为相同目的设计的其他两亲系统不同,疏水性和亲水性部分共存于相反的两面,本发明的载体具有亲水性内部和疏水性电晕。关于载体中和,结合和压缩质粒DNA(pDNA)的能力,对载体进行表征。分析载体和pDNA之间形成的复合物的大小,ζ电位,对血清核酸酶的抗性,被细胞内在化的能力和转染效率。这些新载体显示出以最小的细胞毒性介导pDNA内在化的显着能力,因为这种作用与疏水性电晕中的-CH_2-含量正相关。使用新载体还可以增强在MSCs中的基因表达,MSCs是与再生医学临床相关的细胞类型,但是在这种情况下,包含最小疏水链的载体显示出更高的效率。

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