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Photocurable O-Carboxymethyl Chitosan Derivatives for Biomedical Applications: Synthesis, In vitro Biocompatibility, and Their Wound Healing Effects

机译:生物医学应用的光固化邻羧甲基壳聚糖衍生物:合成,体外生物相容性及其伤口愈合作用

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摘要

In this work, photocurable water-soluble chitosan derivatives were prepared for biomedical applications by modifying water-soluble O-carboxymethyl chitosan (O-CMC) derivatives with furfuryl glycidyl ether (O-CMC/ FGE). Successful derivatization of chitosan to the final product (O-CMC/FGE) was verified by UV and JH NMR spectral analysis. The degree of photo-crosslinking was measured by a flow distance experiment after exposure to visible light for a certain period of time. The degree of crosslinking increased linearly in proportion to exposure time. The in vitro ceil viability test revealed a lack of cytotoxicity of O-CMC/FGE against mouse 3T3 fibroblasts. However, poor cell attachment was observed for the cells seeded onto the photocured O-CMC/FGE; this is likely due to the anionic nature of this material. O-CMC/FGE displayed wound healing effects in an in vivo animal experiment using a burn wound model. Due to its good biocompatibility, wound healing effect, and mild cross-linking condition, together with an inhibitory effect on cell attachment, O-CMC/FGE would be a promising candidate as an anti-adhesion material for biomedical applications.
机译:在这项工作中,通过用糠基缩水甘油醚(O-CMC / FGE)修饰水溶性O-羧甲基壳聚糖(O-CMC)衍生物,制备了可光固化的水溶性壳聚糖衍生物用于生物医学。通过UV和1H NMR光谱分析验证了壳聚糖成功衍生化为最终产物(O-CMC / FGE)。在暴露于可见光一定时间后,通过流动距离实验测量光交联度。交联度与曝光时间成线性比例增加。体外细胞活力测试表明,O-CMC / FGE对小鼠3T3成纤维细胞缺乏细胞毒性。但是,对于接种到光固化的O-CMC / FGE上的细胞,观察到不良的细胞附着性。这可能是由于该材料的阴离子性质。 O-CMC / FGE在使用烧伤创面模型的体内动物实验中显示出创面愈合效果。由于其良好的生物相容性,伤口愈合作用和温和的交联条件,以及对细胞附着的抑制作用,O-CMC / FGE将成为有前途的候选物作为生物医学应用的抗粘连材料。

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