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首页> 外文期刊>RSC Advances >Specific capture of glycosylated graphene oxide by an asialoglycoprotein receptor: a strategic approach for liver-targeting
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Specific capture of glycosylated graphene oxide by an asialoglycoprotein receptor: a strategic approach for liver-targeting

机译:AsialoglycoLotein受体的糖基化的石墨烯氧化物的特异性捕获:一种肝脏靶向的战略方法

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In this work, we report the evaluation of lactosylated graphene oxide (GO-AL) as a potential drug carrier targeted at an asialoglycoprotein receptor (ASGPR) from hepatic cancer cells. Structural-modification, safety evaluation, and functional analysis of GO-AL were performed. The structure and morphology of the composite were analyzed by scanning electron microscopy (SEM) and atomic force microscopy (AFM), while Raman and FTIR spectroscopy were used to track the chemical modification. For the safe application of GO-AL, an evaluation of the cytotoxic effect, hemolytic properties, and specific interactions of the glycoconjugate were also studied. SEM and AFM analysis of the GO showed graphene sheets with a layer size of 2-3 nm, though a few of them reached 4 nm. The Raman spectra presented characteristic peaks of graphene oxide at 1608 cm(-1) and 1350 cm(-1), corresponding to G and D bands, respectively. Besides, Si-O peaks for the APTES conjugates of GO were identified by FTIR spectroscopy. No cytotoxic or hemolytic effects were observed for GO samples, thus proving their biocompatibility. The interaction of Ricinus communis lectin confirmed that GO-AL has a biorecognition capability and an exposed galactose structure. This biorecognition capability was accompanied by the determination of the specific absorption of lactosylated GO by HepG2 cells mediated through the asialoglycoprotein receptor. The successful conjugation, hemolytic safety, and specific recognition described here for lactosylated GO indicate its promise as an efficient drug-delivery vehicle to hepatic tissue.
机译:在这项工作中,我们报告了乳糖基化的石墨烯氧化物(GO-A1)作为鉴于肝癌细胞的亚喹癌蛋白受体(ASGPR)靶向的潜在药物载体的评价。进行了Go-Al的结构改性,安全评估和功能分析。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)分析复合材料的结构和形态,而拉曼和FTIR光谱用于跟踪化学改性。对于GO-A1的安全施用,还研究了对细胞毒性效应,溶血性和糖凝胶缀合物的特异性相互作用的评估。 SEM和AFM分析GO显示的石墨烯片具有2-3nm的层尺寸,尽管其中一些达到4nm。拉曼光谱分别在1608cm(-1)和1350cm(-1),对应于G和D带的1608cm(-1)和1350cm(-1)的特征峰。此外,通过FTIR光谱识别出APTES缀合物的Si-O峰。对于去样品没有观察到细胞毒性或溶血作用,从而证明了它们的生物相容性。 Ricinus Communis凝集素的相互作用证实GO-A1具有生物释认能力和暴露的半乳糖结构。这种生物识别能力伴随着通过亚硫代糖苷受体介导的HepG2细胞的乳糖基化的比测定。此处为乳糖基化的成功缀合,溶血安全性和具体识别表明其作为肝组织的有效药物输送载体的承诺。

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