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Surface-Engineered Dendrimers with a Diaminododecane Core Achieve Efficient Gene Transfection and Low Cytotoxicity

机译:具有二氨基十二烷核心的表面工程树枝状聚合物可实现有效的基因转染和低细胞毒性

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Cationic dendrimers are widely used as gene vectors; however, these materials are usually associated with unsatisfied transfection efficiency and biocompatibility. In this study, we used an aliphatic hydrocarbon-cored polyamidoamine (PAMAM) dendrimer as an alternative to traditional cationic PAMAM dendrimers in the design of efficient gene vectors. Diaminodode- cane-cored generation 4 (C12G4) PAMAM dendrimer showed dramatically higher efficacy in luciferase and EGFP gene transfection than diaminoethane- cored generation 4 (C2G4) and diaminohexane-cored generation 4 (C6G4) PAMAM dendrimers. The viability of cells incubated with C12G4 at transfection concentrations is above 90%. The significantly improved gene transfection efficacy of C12G4 is attributed to the hydrophobic core of C12G4 which increases the cellular uptake of dendrimer/DNA polyplexes. Further modification of C12G4 with functional ligands such as arginine, 2,4-diamino- 1,3,5-triazine, and fluprine compounds significantly increase its transfection efficiency on several cell lines. These results suggest that diaminododecane-cored dendrimers can be developed as a versatile scaffold in the design of efficient gene vectors.
机译:阳离子树状聚合物被广泛用作基因载体。然而,这些材料通常与不满意的转染效率和生物相容性有关。在这项研究中,我们在设计有效的基因载体时,使用了脂肪族碳氢键的聚酰胺基胺(PAMAM)树状大分子作为传统阳离子PAMAM树状大分子的替代物。与以二氨基乙烷为核心的第四代(C2G4)和以二氨基己烷为核心的第四代(C6G4)PAMAM树状大分子相比,以二氨基十二烷为核心的第4代(C12G4)PAMAM树状大分子在荧光素酶和EGFP基因转染中的功效显着提高。在转染浓度下与C12G4一起孵育的细胞的活力高于90%。 C12G4的基因转染效率显着提高归因于C12G4的疏水核心,该核心增加了树状聚合物/ DNA复合物的细胞摄取。用功能性配体(如精氨酸,2,4-二氨基-1,3,5-三嗪和氟比林化合物)对C12G4进行进一步修饰,可显着提高其在几种细胞系上的转染效率。这些结果表明,可以将二氨基十二烷为核心的树状聚合物开发为高效基因载体设计中的通用支架。

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