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Preparation of silk fibroin–poly(ethylene glycol) conjugate films through click chemistry

机译:通过点击化学制备丝素蛋白-聚乙二醇共轭膜

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摘要

Azide silk fibroin (azido SF) and alkyne terminal poly(ethylene glycol) (PEG) 2000 (acetylene-terminal PEG 2000) were synthesized. Azido SF was reacted with acetylene-terminal PEG 2000 to produce films via a copper-mediated 1,3-cycloaddition (‘click’ chemistry) generating a triazole linkage as the networking forming reaction. Through click chemistry, novel silk-based films with various weight ratios were prepared and investigated. Fourier transform infrared, X-ray diffraction and differential scanning calorimetry analyses showed that the ordered association of the PEG molecules is strongly constrained by the presence of the SF molecules and crosslinking and that the presence of acetylene-terminal PEG 2000 in the films induced crystallization to a β-sheet of SF chains.Water content and contact angle measurements indicated that the hydrophilicity of the films increased compared with SF. SF–PEG films exhibited smooth and rough structures, depending on degree of crosslinking and on the weight ratio of SF and PEG, as shown by scanning electron microscopy.
机译:合成了叠氮化物丝素蛋白(叠氮基SF)和炔烃末端聚乙二醇(PEG)2000(乙炔末端PEG 2000)。叠氮基SF与乙炔末端PEG 2000反应,通过铜介导的1,3-环加成反应(“点击”化学反应)生成薄膜,生成三唑键作为网络形成反应。通过点击化学,制备并研究了各种重量比的新型丝绸基薄膜。傅里叶变换红外,X射线衍射和差示扫描量热分析表明,PEG分子的有序缔合受到SF分子和交联的强烈限制,并且薄膜中乙炔末端PEG 2000的存在诱导了结晶。 SF链的β折叠。含水量和接触角的测量表明,与SF相比,薄膜的亲水性有所提高。 SF-PEG膜表现出光滑和粗糙的结构,这取决于交联程度以及SF和PEG的重量比,如扫描电子显微镜所示。

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