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首页> 外文期刊>International Journal of Nanomedicine >Immobilization of collagen peptide on dialdehyde bacterial cellulose nanofibers via covalent bonds for tissue engineering and regeneration
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Immobilization of collagen peptide on dialdehyde bacterial cellulose nanofibers via covalent bonds for tissue engineering and regeneration

机译:通过共价键将胶原蛋白肽固定在二醛细菌纤维素纳米纤维上,用于组织工程和再生

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Abstract: Bacterial cellulose (BC) is an alternative nanostructured biomaterial to be utilized for a wide range of biomedical applications. Because of its low bioactivity, which restricted its practical application, collagen and collagen hydrolysate were usually composited into BC. It is necessary to develop a new method to generate covalent bonds between collagen and cellulose to improve the immobilization of collagen on BC. This study describes a facile dialdehyde BC/collagen peptide nanocomposite. BC was oxidized into dialdehyde bacterial cellulose (DBC) by regioselective oxidation, and then composited with collagen peptide (Col-p) via covalent bonds to form Schiff’s base type compounds, which was demonstrated by the results of microstructures, contact angle, Col-p content, and peptide-binding ratio. The peptide-binding ratio was further affected by the degree of oxidation, pH value, and zeta potential. In vitro desorption measurement of Col-p suggested a controlled release mechanism of the nanocomposite. Cell tests indicated that the prepared DBC/Col-p composite was bioactive and suitable for cell adhesion and attachment. This work demonstrates that the DBC/Col-p composite is a promising material for tissue engineering and regeneration.
机译:摘要:细菌纤维素(BC)是一种可供选择的纳米结构生物材料,可广泛用于生物医学领域。由于其生物活性低,限制了其实际应用,通常将胶原蛋白和胶原蛋白水解产物复合到BC中。有必要开发一种在胶原蛋白和纤维素之间产生共价键的新方法,以改善胶原蛋白在BC上的固定性。这项研究描述了一种简便的二醛BC /胶原蛋白肽纳米复合材料。 BC通过区域选择性氧化被氧化成二醛细菌纤维素(DBC),然后通过共价键与胶原肽(Col-p)复合形成席夫氏碱型化合物,这通过微观结构,接触角,Col-p的结果得以证明。含量和肽结合率。肽结合率还受到氧化程度,pH值和ζ电位的影响。 Col-p的体外解吸测量表明了纳米复合材料的控制释放机制。细胞测试表明,所制备的DBC / Col-p复合材料具有生物活性,适用于细胞粘附和附着。这项工作表明,DBC / Col-p复合材料是用于组织工程和再生的有前途的材料。

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