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The Effect of Poly (Glycerol Sebacate) Incorporation within Hybrid Chitin–Lignin Sol–Gel Nanofibrous Scaffolds

机译:聚(癸二酸甘油酯)在几丁质-木质素溶胶-凝胶纳米纤维支架中的掺入作用

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摘要

Chitin and lignin primarily accumulate as bio-waste resulting from byproducts of crustacean crusts and plant biomass. Recently, their use has been proposed for diverse and unique bioengineering applications, amongst others. However, their weak mechanical properties need to be improved in order to facilitate their industrial utilization. In this paper, we fabricated hybrid fibers composed of a chitin–lignin (CL)-based sol–gel mixture and elastomeric poly (glycerol sebacate) (PGS) using a standard electrospinning approach. Obtained results showed that PGS could be coherently blended with the sol–gel mixture to form a nanofibrous scaffold exhibiting remarkable mechanical performance and improved antibacterial and antifungal activity. The developed hybrid fibers showed promising potential in advanced biomedical applications such as wound care products. Ultimately, recycling these sustainable biopolymers and other bio-wastes alike could propel a “greener” economy.
机译:甲壳素和木质素主要作为生物废料积累,是由甲壳类硬皮和植物生物量的副产品产生的。近来,已经提出将它们的用途用于各种独特的生物工程应用中。然而,需要改善它们的弱机械性能以促进其工业利用。在本文中,我们使用标准的静电纺丝方法制造了由几丁质-木质素(CL)基溶胶-凝胶混合物和弹性体聚癸二酸甘油酯(PGS)组成的杂化纤维。所得结果表明,PGS可以与溶胶-凝胶混合物紧密混合,形成一种纳米纤维支架,该支架具有出色的机械性能并提高了抗菌和抗真菌活性。发达的杂化纤维在先进的生物医学应用(如伤口护理产品)中显示出令人鼓舞的潜力。最终,回收这些可持续性生物聚合物和其他生物废料可以推动“绿色”经济。

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