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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Mixed-ligand modification of polyamidoamine dendrimers to develop an effective scaffold for maintenance of hepatocyte spheroids
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Mixed-ligand modification of polyamidoamine dendrimers to develop an effective scaffold for maintenance of hepatocyte spheroids

机译:聚酰胺-胺树枝状聚合物的混合配体修饰,以开发有效的支架来维持肝细胞球体

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Compared with a monolayer culture, hepatocyte spheroids are known to maintain liver function for Tong periods. We found that hepatocytes formed spheroids when cultured on polyamidoamine dendrimers modified with fructose. Because galactose is a ligand for the asialoglycoprotein receptor on the hepatocyte cytoplasmic membrane, it was chosen as another ligand for modification in order to maintain adhesion of spheroids for long periods. Simultaneous modification of dendrimers with fructose and galactose had a marked effect on the time length of spheroid adhesion. Suppression of apoptosis and necrosis was observed in hepatocyte spheroids cultured on a dendrimer modified with fructose and galactose (F/G dendrimer). Moreover, the hepatocyte spheroids cultured on the F/G dendrimer had higher activities of liver-specific functions, such as urea synthesis and albumin gene expression, than did those cultured on single-ligand-modified dendrimers. The expression of heat shock protein (HSP) genes was examined to evaluate the stress response of cells to scaffolds. The hepatocytes cultured on the F/G dendrimer had very low expression levels of both HSP60 and HSP70 mRNAs. Thus immobilization of mixed-ligand-modified dendrimers could generate a suitable surface for hepatocyte spheroid formation. These dendrimers could be a powerful tool for generating custom-made scaffolds for cells other than hepatocytes by selecting the ligands suitable for each cell type.
机译:与单层培养相比,已知肝细胞球体可在Tong期维持肝功能。我们发现,在用果糖修饰的聚酰胺胺树枝状大分子上培养时,肝细胞会形成球体。由于半乳糖是肝细胞胞质膜上去唾液酸糖蛋白受体的配体,因此选择半乳糖作为修饰的另一种配体,以长期保持球体的粘附。用果糖和半乳糖同时修饰树枝状聚合物对球体附着的时间长度有显着影响。在用果糖和半乳糖修饰的树状聚合物(F / G树状聚合物)上培养的肝细胞球体中观察到凋亡和坏死的抑制。此外,与在单配体修饰的树状聚合物上培养的肝细胞球体相比,在F / G树状聚合物上培养的肝细胞球体具有更高的肝特异性功能,例如尿素合成和白蛋白基因表达。检查了热休克蛋白(HSP)基因的表达,以评估细胞对支架的应激反应。 F / G树状大分子上培养的肝细胞具有非常低的HSP60和HSP70 mRNA表达水平。因此,混合配体修饰的树状聚合物的固定化可产生适合肝细胞球体形成的表面。通过选择适合每种细胞类型的配体,这些树状大分子可能是生成定制的除肝细胞以外的细胞支架的强大工具。

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