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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The use of polyethylenimine-modified graphene oxide as a nanocarrier for transferring hydrophobic nanocrystals into water to produce water-dispersible hybrids for use in drug delivery
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The use of polyethylenimine-modified graphene oxide as a nanocarrier for transferring hydrophobic nanocrystals into water to produce water-dispersible hybrids for use in drug delivery

机译:聚乙烯亚胺改性的氧化石墨烯作为纳米载体的用途,用于将疏水性纳米晶体转移到水中以生产水分散性杂合体,用于药物递送

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摘要

In order to produce water-dispersible nanocrystals, including upconversion nanoparticles (UCNPs) which are the new generation fluorophores and magnetic nanoparticles (Fe3O4), a polyethylenimine-modified graphene oxide (PEI-GO) was used as a nanocarrier of nanocrystals, and PEI-GO-nanocrystal hybrids were prepared by transferring hydrophobic nanocrystals from an organic phase to water. Nanocrystals were anchored onto the hydrophobic plane of PEI-GO, which was confirmed by atomic force microscopy and electron microscopy. Molecular dynamics simulation further showed that hydrophobic interaction between PEI-GO and oleic acid molecules coated on the surface of the nanocrystals was the major driving force in the transfer process. The resulting hybrids had high stability in both water and physiological solutions, and combined the functionalities of the nanocrystals and PEI-GO, such as luminescence, superparamagnetism and drug delivery capability. Through π-π stacking interaction between PEI-GO-UCNP and an aromatic drug, PEI-GO-UCNP was able to load a water-insoluble anticancer drug, doxorubicin (DOX), with a superior loading capacity of 100 wt.%. In addition, PEI-GO-UCNP did not exhibit toxicity on the human endothelial cells and PEI-GO-UCNP-DOX showed a high potency of killing cancer cells in uitro.
机译:为了生产水可分散的纳米晶体,包括作为新一代荧光团的上转换纳米颗粒(UCNP)和磁性纳米颗粒(Fe3O4),使用了聚乙烯亚胺改性的氧化石墨烯(PEI-GO)作为纳米晶体的纳米载体,PEI-通过将疏水性纳米晶体从有机相转移到水中来制备GO纳米晶体杂化物。纳米晶体被锚定在PEI-GO的疏水平面上,这已经通过原子力显微镜和电子显微镜得到了证实。分子动力学模拟进一步表明,PEI-GO与包覆在纳米晶体表面的油酸分子之间的疏水相互作用是转移过程中的主要驱动力。所得杂化物在水和生理溶液中均具有高稳定性,并且结合了纳米晶体和PEI-GO的功能,例如发光,超顺磁性和药物递送能力。通过PEI-GO-UCNP与芳香族药物之间的π-π堆积相互作用,PEI-GO-UCNP能够负载水不溶性抗癌药物阿霉素(DOX),具有100 wt。%的出色负载能力。此外,PEI-GO-UCNP对人内皮细胞没有毒性,PEI-GO-UCNP-DOX在体外杀死癌细胞的能力很高。

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