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Polyamidoamine Dendrimer and Oleic Acid-Functionalized Graphene as Biocompatible and Efficient Gene Delivery Vectors

机译:聚酰胺胺树状大分子和油酸功能化的石墨烯作为生物相容和高效的基因传递载体。

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摘要

Functionalized graphene has good potential in biomedical applications. To address a better and multiplex design of graphene-based gene vectors, the graphene-oleate-polyamidoamine (PAMAM) dendrimer hybrids were synthesized by the oleic acid adsorption and covalent linkage of PAMAM dendrimers. The micromorphology, electrical charge property, and amount of free amine groups of the graphene-oleate-PAMAM hybrids were characterized, and the peripheral functional groups were identified. The PAMAM dendrimers could be tethered onto graphene surface in high density. The graphene-oleate-PAMAM hybrids exhibit relatively good dispersity and stability in aqueous solutions. To evaluate the potential application of the hybrids in gene delivery vectors, cytotoxicity to HeLa and MG-63 cells and gene (plasmid DNA of enhanced green fluorescent protein) transfection capacity of the hybrids were investigated in detail. The graphene-oleate-PAMAM hybrids show mammalian cell type-and dose-dependent in vitro cytotoxicity. Under the optimal condition, the hybrids possess good biocompatibility and gene transfection capacity. The surface modification of graphene with oleic acid and PAMAM improves the gene transfection efficiency 13 times in contrast to the ultrasonicated graphene. Moreover, the hybrids show better transfection efficiency than the graphene oxide-PAMAM without the oleic acid modification.
机译:功能化石墨烯在生物医学应用中具有良好的潜力。为了解决基于石墨烯的基因载体的更好和多重设计,通过油酸吸附和PAMAM树状聚合物的共价键合成了石墨烯-油酸酯-聚酰胺-胺(PAMAM)树状聚合物杂化物。表征了石墨烯-油酸酯-PAMAM杂化物的微观形貌,电荷性质和游离胺基的数量,并鉴定了外围官能团。 PAMAM树状聚合物可以高密度地束缚在石墨烯表面。石墨烯-油酸酯-PAMAM杂化物在水溶液中表现出相对良好的分散性和稳定性。为了评估杂种在基因传递载体中的潜在应用,详细研究了其对HeLa和MG-63细胞的细胞毒性以及基因(增强绿色荧光蛋白的质粒DNA)的转染能力。石墨烯-油酸酯-PAMAM杂种显示出哺乳动物细胞类型和剂量依赖性的体外细胞毒性。在最佳条件下,杂种具有良好的生物相容性和基因转染能力。与超声石墨烯相比,用油酸和PAMAM对石墨烯进行表面修饰可将基因转染效率提高13倍。此外,杂种显示出比没有油酸修饰的氧化石墨烯-PAMAM更好的转染效率。

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