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首页> 外文期刊>Acta biomaterialia >A high poly(ethylene glycol) density on graphene nanomaterials reduces the detachment of lipid-poly(ethylene glycol) and macrophage uptake
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A high poly(ethylene glycol) density on graphene nanomaterials reduces the detachment of lipid-poly(ethylene glycol) and macrophage uptake

机译:石墨烯纳米材料上的高聚乙二醇密度可减少脂质-聚乙二醇的分离和巨噬细胞的摄取

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Amphiphilic lipid-poly(ethylene glycol) (LPEG) is widely used for the noncovalent functionalization of graphene nanomaterials (GNMs) to improve their dispersion in aqueous solutions for biomedical applications. However, not much is known about the detachment of LPEGs from GNMs and macrophage uptake of dispersed GNMs in relation to the alkyl chain coverage, the PEG coverage, and the linker group in LPEGs. In this study we examined these relationships using single walled carbon nanohorns (SWCNHs). The high coverage of PEG rather than that of alkyl chains was dominant in suppressing the detachment of LPEGs from SWCNHs in protein-containing physiological solution. Correspondingly, the quantity of LPEG-covered SWCNHs (LPEG-SWCNHs) taken up by macrophages decreased at a high PEG coverage. Our study also demonstrated an effect of the ionic group in LPEG on SWCNH uptake into macrophages. A phosphate anionic group in the LPEG induced lower alkyl chain coverage and easy detachment of the LPEG, however, the negative surface charge of LPEG-SWCNHs reduced the uptake of SWCNHs by macrophages.
机译:两亲脂质-聚乙二醇(LPEG)被广泛用于石墨烯纳米材料(GNM)的非共价官能化,以改善其在生物医学应用水溶液中的分散性。但是,关于LPEG中的烷基链覆盖率,PEG覆盖率和连接基团,关于LPEG与GNM的分离以及巨噬细胞对分散的GNM的摄取知之甚少。在这项研究中,我们使用单壁碳纳米角(SWCNHs)检验了这些关系。 PEG而不是烷基链的高覆盖度在抑制LPEG从含蛋白质的生理溶液中从SWCNHs脱离方面占主导地位。相应地,在高PEG覆盖率下,巨噬细胞吸收的LPEG覆盖的SWCNHs(LPEG-SWCNHs)的数量减少。我们的研究还证明了LPEG中的离子基团对SWCNH摄入巨噬细胞的影响。 LPEG中的磷酸根阴离子基团诱导较低的烷基链覆盖度和LPEG的容易分离,但是,LPEG-SWCNHs的负表面电荷降低了巨噬细胞对SWCNHs的吸收。

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