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Recent Trends in the Fabrication of Starch Nanofibers: Electrospinning and Non-electrospinning Routes and Their Applications in Biotechnology

机译:淀粉纳米纤维制备的最新趋势:静电纺丝和非静电纺丝途径及其在生物技术中的应用

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Electrospinning a versatile and the most preferred technique for the fabrication of nanofibers has revolutionized by opening unlimited avenues in biomedical fields. Presently, the simultaneous functionalization and/or post-modification of as-spun nanofibers with biomolecules has been explored, to serve the distinct goals in the aforementioned field. Starch is one of the most abundant biopolymers on the earth. Besides, being biocompatible and biodegradable in nature, it has unprecedented properties of gelatinization and retrogradation. Therefore, starch has been used in numerous ways for wide range of applications. Keeping these properties in consideration, the present article summarizes the recent expansion in the fabrication of the pristine/modified starch-based composite scaffolds by electrospinning along with their possible applications. Apart from electrospinning technique, this review will also provide the comprehensive information on various other techniques employed in the fabrication of the starch-based nanofibers. Furthermore, we conclude with the challenges to be overcome in the fabrication of nanofibers by the electrospinning technique and future prospects of starch-based fabricated scaffolds for exploration of its applications.
机译:通过在生物医学领域的无限宽度开启无限宽度,静电纺丝和最优选的用于制备纳米纤维的技术。目前,已经探讨了具有生物分子的同时官能化和/或后修饰的具有生物分子,以满足上述场中的截然不同的目标。淀粉是地球上最丰富的生物聚合物之一。此外,生物相容性和生物降解的性质上,它具有前所未有的凝胶化和逆转的性质。因此,淀粉已以多种方式用于广泛的应用。考虑到这些性质,本文总结了通过静电纺丝以及可能的应用来制造原始/改性淀粉基复合支架的最近扩展。除了静电纺丝技术外,本综述还将提供关于制备淀粉基纳米纤维的各种其他技术的综合信息。此外,我们通过静电纺丝技术和淀粉的制造支架的耐电纺纱技术和未来前景来结束纳米纤维的挑战,以探索其应用。

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