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首页> 外文期刊>Journal of Colloid and Interface Science >Surface grafted glycopolymer brushes to enhance selective adhesion of HepG2 cells
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Surface grafted glycopolymer brushes to enhance selective adhesion of HepG2 cells

机译:表面接枝的糖聚合物刷可增强HepG2细胞的选择性粘附

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This work demonstrates the application of carbohydrate based methacrylate polymer brush, poly(2-lactobionamidoethyl methacrylate), for the purpose of cell adhesion studies. The first part of the work illustrates the effects of the structure of the aminosilane based ATRP initiator layer on the polymerization kinetics of 2-lactobionamidoethyl methacrylate) (LAMA) monomer on thermally oxidized silicon wafer. Both monolayer and multilayered aminosilane precursor layers have been prepared followed by reaction with 2-bromoisobutyrylbromide to form the ATRP initiator layer. It is inferred from the kinetic studies that the rate of termination is low on a multilayered initiator layer compared to a disordered monolayer structure. However both initiator types results in similar graft densities. Furthermore, it is shown that thick comb-like poly(LAMA) brushes can be constructed by initiating a second ATRP process on a previously formed poly(LAMA) brushes. The morphology of human hepatocellular carcinoma cancer cells (HepG2) on the comb-like poly(LAMA) brush layer has been studied. The fluorescent images of the HepG2 cells on the glycopolymer brush surface display distinct protrusions that extend outside of the cell periphery. On the other hand the cells on bare glass substrate display spheroid morphology. Further analysis using ToF-SIMS imaging shows that the HepG2 cells on glycopolymer surfaces is enriched with protein fragment along the cell periphery which is absent in the case of cells on bare glass substrate. It is suggested that the interaction of the galactose units of the polymer brush with the asialoglycoprotein receptor (ASGPR) of HepG2 cells has resulted in the protein enrichment along the cell periphery.
机译:这项工作演示了基于碳水化合物的甲基丙烯酸酯聚合物刷,聚(2-甲基丙烯酸2-乳酸生物酰胺基乙酯)的应用,以用于细胞粘附研究。工作的第一部分说明了基于氨基硅烷的ATRP引发剂层的结构对热氧化硅片上的2-LAM单体的聚合反应动力学的影响。已经制备了单层和多层氨基硅烷前体层,然后与2-溴异丁酰溴化物反应形成ATRP引发剂层。从动力学研究推断,与无序单层结构相比,多层引发剂层的终止速率低。但是,两种引发剂类型都导致相似的接枝密度。此外,示出了可以通过在先前形成的聚(LAMA)刷上启动第二ATRP工艺来构造厚的梳状聚(LAMA)刷。研究了梳状聚(LAMA)刷层上人肝细胞癌细胞(HepG2)的形态。糖聚合物刷表面上的HepG2细胞的荧光图像显示了延伸到细胞外围之外的明显突起。另一方面,裸露玻璃基板上的细胞显示出球状形态。使用ToF-SIMS成像进行的进一步分析显示,糖聚合物表面的HepG2细胞沿细胞周边富集了蛋白质片段,而在裸露玻璃基板上的细胞则不存在。提示聚合物刷的半乳糖单元与HepG2细胞的去唾液酸糖蛋白受体(ASGPR)相互作用已导致沿细胞外围的蛋白质富集。

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