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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Electrospun Nanofibers Surface-modified with Fluorescent Proteins
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Electrospun Nanofibers Surface-modified with Fluorescent Proteins

机译:用荧光蛋白表面改性的电纺纳米纤维

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Electrospun nanofiber surfaces are modified with proteins to control protein release. A mixture of poly(epslion-caprolactone) (PCL) and PCL-PEG block copolymers is electrospun to prepare amine-terminated block copolymers. The amount of surface exposed amine groups increases as the blend ratio of block copolymer increases. Cell attachments on the nanofibers change according to the ratio of the block copolymer in the blend; this indicates that the PEG moiety plays a significant role in enhancing and decreasing biocompatibility of nanofibers. Fluorescent proteins are immobilized on the surface of nanofibers by conjugating activated carboxylic groups of the protein to the surface exposed amine groups of nanofibers in an aqueous environment. The number of amine groups increases as the ratio of block copolymers increases. Proteins that are chemically associated with the nanofibers show an attenuated release profile while most of the proteins physically associated with the nanofibers are released in 1 day. These results show that the protein-immobilized nanofibers can be potentially applied to tissue engineering scaffolds and wound healing materials with bioactive protein being slowly released over a long period of time.
机译:用蛋白质修饰电纺纳米纤维表面,以控制蛋白质的释放。将聚(ε-己内酯)(PCL)和PCL-PEG嵌段共聚物的混合物进行电纺丝,以制备胺封端的嵌段共聚物。随着嵌段共聚物的共混比的增加,表面暴露的胺基的量增加。纳米纤维上的细胞附着会根据嵌段共聚物在共混物中的比例而变化。这表明PEG部分在增强和降低纳米纤维的生物相容性中起重要作用。通过在水性环境中将蛋白质的活化羧基结合到纳米纤维表面暴露的胺基上,将荧光蛋白固定在纳米纤维的表面上。胺基的数目随着嵌段共聚物的比例增加而增加。与纳米纤维化学缔合的蛋白质表现出减弱的释放特性,而与纳米纤维物理缔合的大多数蛋白质在1天之内被释放。这些结果表明,固定有蛋白质的纳米纤维可潜在地应用于组织工程支架和伤口愈合材料,其中生物活性蛋白质会在很长一段时间内缓慢释放。

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