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首页> 外文期刊>Journal of Materials Science >Rotation-assisted wet-spinning of UV-cured gelatin fibres and nonwovens
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Rotation-assisted wet-spinning of UV-cured gelatin fibres and nonwovens

机译:紫外线固化明胶纤维和非织造织物的旋转辅助旋转

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Photoinduced network formation is an attractive strategy for designing water-insoluble gelatin fibres as medical device building blocks and for enabling late-stage property customisation. However, mechanically competent, long-lasting filaments are still hard to realise with current photoactive, e.g. methacrylated, gelatin systems due to inherent spinning instability and restricted coagulation capability. To explore this challenge, we present a multiscale approach combining the synthesis of 4-vinylbenzyl chloride (4VBC)-functionalised gelatin (Gel-4VBC) with a voltage-free spinning and UV-curing process so that biopolymer networks in the form of either individual fibres or nonwovens could be successfully manufactured. In comparison with state-of-the-art methacrylated gelatin, the mechanical properties of UV-cured Gel-4VBC fibres were readily modulated by adjustment of coagulation conditions, so that an ultimate tensile strength and strain at break of 25 +/- 4-74 +/- 3 MPa and 1.7 +/- 0.3-8.6 +/- 0.5% were measured, respectively. The sequential functionalisation/spinning route proved to be highly scalable, so that one-step spun-laid formation of fibroblast-friendly nonwoven fabrics was successfully demonstrated with wet-spun Gel-4VBC fibres. The presented approach could be exploited to generate a library of gelatin building blocks tuneable from the molecular to the macroscopic level to deliver computer-controlled extrusion of fibres and nonwovens according to defined clinical applications.
机译:光诱导网络形成是设计水不溶性明胶纤维作为医疗器械积木的有吸引力的策略,并用于实现后期财产定制。然而,机械竞争力,持久的长丝仍然很难用目前的光活性实现,例如,难以实现。甲基丙烯酸酯,明胶系统由于固有的纺丝不稳定性和限制凝固能力。为了探讨这一挑战,我们提出了一种多尺度方法,将4-乙烯基苄氯(4VBC) - 官能化明胶(凝胶-4VBC)合成与无电压纺丝和UV固化过程,使得任何个体形式的生物聚合物网络可以成功制造纤维或非织造织物。与最先进的甲基丙烯酸明胶相比,通过调节凝固条件容易地调节UV固化的凝胶-4VBC纤维的机械性能,从而突破25 +/- 4-的最终拉伸强度和菌株测量74 +/- 3MPa和1.7 +/- 0.3-8.6 +/0.5%。顺序官能化/纺丝路线被证明是高度可扩展的,因此用湿式凝胶-4VBC纤维成功地证明了成纤维细胞型无纺布的一步纺装型非织造织物的形成。可以利用所提出的方法,以产生从分子到宏观水平可视的明胶构建块文库,以根据定义的临床应用提供计算机控制的纤维和非织造织物的挤出。

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