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Modulation of the interface between polyester and spent coffee grounds in polysaccharide membranes: Preparation, cell proliferation, antioxidant activity and tyrosinase activity

机译:多糖膜中聚酯和废咖啡渣之间的界面调节:制备,细胞增殖,抗氧化活性和酪氨酸酶活性

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摘要

The structural, antioxidant and cytocompatibility properties of membranes prepared from polyhydroxyalkanoate (PHA) and spent coffee ground (SCG) blends (PHA/SCG) were studied. Acrylic acid-grafted PHA (PHA-g-AA) was used to enhance the desirable characteristics of these membranes, which had better tensile properties than the corresponding PHA/SCG membranes. The water resistance of the PHA-g-AA/SCG membranes was greater than that of the PHA/SCG membranes, and a cytocompatibility evaluation with mouse normal tail fibroblasts (FBs) indicated that both materials were nontoxic. Cell cycle assays of FBs on PHA/SCG and PHA-g-AA/SCG membrane samples were not affected by the DNA content related to damage. Moreover, SCG enhanced the saccharide and polyphenol contents, and antioxidant properties, of the PHA-g-AA/SCG and PHA/SCG membranes. Therefore. we analysed the effects of these compounds' membranes on melanogenesis in B16-F10 melanoma cells. The results demonstrated that PHA/SCG and PHA-g-AA/SCG membranes reduced cellular tyrosinase activities in vitro.
机译:研究了由聚羟基链烷酸酯(PHA)和废咖啡粉(SCG)共混物(PHA / SCG)制备的膜的结构,抗氧化剂和细胞相容性。丙烯酸接枝的PHA(PHA-g-AA)用于增强这些膜的理想特性,与相应的PHA / SCG膜相比,它们具有更好的拉伸性能。 PHA-g-AA / SCG膜的耐水性大于PHA / SCG膜的耐水性,对小鼠正常尾巴成纤维细胞(FBs)的细胞相容性评估表明,这两种材料均无毒。 PHA / SCG和PHA-g-AA / SCG膜样品上FB的细胞周期测定不受与损伤相关的DNA含量的影响。此外,SCG增强了PHA-g-AA / SCG和PHA / SCG膜的糖和多酚含量以及抗氧化性能。因此。我们分析了这些化合物的膜对B16-F10黑色素瘤细胞黑色素生成的影响。结果表明,PHA / SCG和PHA-g-AA / SCG膜在体外降低了细胞酪氨酸酶的活性。

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