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Method of manufacturing nanostructure with improved cell adhesive ability containing fucoidan and nanostructure with improved cell adhesive ability containing fucoidan manufactured thereby

机译:具有改进的含有FUCOINON和纳米结构的细胞粘合能力的制造纳米结构的方法,其具有含有抗FUCOOPAN的细胞粘合能力

摘要

The present invention relates to a method of manufacturing a polycaprolactone nanostructure with improved cell adhesive ability containing fucoidan according to the present invention comprises dissolving fucoidan in glacial acetic acid as a solvent to obtain fucoidan-glacial acetic acid solution, mixing polycaprolactone with the fucoidan-glacial acetic acid solution to obtain a polycaprolactone-mixed solution, and manufacturing a nanostructure from the polycaprolactone-mixed solution by an electrospinning method. Therefore, a polycaprolactone nanostructure with improved cell adhesive ability containing fucoidan manufactured by the method according to the present invention exhibits characteristics of preventing fucoidan from being released from nanofibers by uniformly distributing fucoidan in the polycaprolactone nanostructure. Accordingly, the fucoidan-containing polycaprolactone nanostructure exhibits an effect capable of controlling cell activity while culturing adhered cells by facilitating adhesion of various types of cells.
机译:本发明涉及一种制造具有根据本发明的含有FUCOOINAN的细胞粘合能力的多己内酯纳米结构的方法,包括溶解在冰醋酸中的粘合剂作为溶剂,得到粘合剂 - 冰醋酸溶液,将聚己内酯与岩藻糖酸酯混合乙酸溶液获得聚己内酯混合溶液,并通过静电纺丝法从聚己内酯混合溶液中制造纳米结构。因此,具有通过根据本发明的方法制造的含有FUCOOINAN的具有改进的细胞粘合能力的聚己内酯纳米结构表现出通过在聚己内酯纳米结构中均匀分布FUCOOINON来预防uCOOINONE从纳米纤维释放的特征。因此,含岩藻酮的多己内酯纳米结构表现出能够通过促进各种类型细胞的粘附来控制粘附细胞的同时控制细胞活性的效果。

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