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Effect of Solvent on the Characteristics of Electrospun Regenerated Silk Fibroin Nanofibers

机译:溶剂对电纺再生丝纤维素纳米纤维特性的影响

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Nonwoven nanofiber matrices were prepared by electrospinning a solution of silk fibroin (SF) dissolved either in formic acid or in 1,1,1,3,3,3-hexafluoro-2-isopropyl alcohol (HFIP). The mean diameter of the electrospun nanofibers prepared from SF dissolved in formic acid was 80 nm with a unimodal size distribution, which was smaller than those prepared from HFIP (380 nm). SF nanofibers were then treated with an aqueous methanol solution, and structural changes due to solvent-induced crystallization of SF were investigated using IR and 13{sup left}C solid-state CP/MAS NMR spectroscopy. SF nanofibers prepared from formic acid were found to have a higher proportion of β-sheet conformations than those prepared from HFIP. Methanol treatment provided a fast and effective means to alter the secondary structure of both types of SF nanofibers from a random coil form to a β-sheet form. As demonstrated in the present study, this approach to controlling the dimensions and secondary structure of proteins using various solvents may be useful for the design and tailoring of materials for biomedical applications, especially for tissue engineering applications.
机译:通过静电纺丝素(SF)溶解在甲酸或1,1,1,3,3,3-六氟-2-异丙醇(HFIP)中静电溶液制备非织造纳米纤维族基质。由溶解在甲酸中的SF制备的电纺纳米纤维的平均直径为80nm,具有单倍数分布,尺寸分布小于由HFIP(380nm)制备的尺寸分布。然后用甲醇水溶液处理SF纳米纤维,并使用IR和13 {sup左} C固态Cp / Mas NMR光谱研究引起的Sf的溶剂诱导的SF结晶的结构变化。发现由甲酸制备的SF纳米纤维具有比由氢菲普制备的β-片状构象的比例较高。甲醇处理提供了一种快速且有效的方法,可将两种类型的SF纳米纤维的二次结构从无规卷材形式改变为β-片状。如本研究所示,这种使用各种溶剂控制蛋白质尺寸和二次结构的方法可用于生物医学应用的材料设计和裁缝,尤其适用于组织工程应用。

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