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Fabrication of water-resistant, thermally stable, and antibacterial fibers through in situ multivalent crosslinking

机译:通过原位多价交联制造防水、热稳定和抗菌纤维

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摘要

Fibers are emerging materials for biomedical applications, including drug delivery, sensing, tissue engineering, and wound dressing. However, fibers produced from water-soluble polymers usually lose their morphology and quickly dissolve after exposure to water. Here, we developed a combined strategy of using multivalent crosslinkers along with in situ crosslinking to synthesize water-resistant and thermally stable hybrid fibers. In our design, polyvinyl alcohol (PVA), aldehyde-modified polyxylitol sebacate-co-polyethylene glycol (Ald_PXS-co-PEG, APP), and neomycin (Neo) were mixed to fabricate hybrid fibers through electrospinning. Several crosslinking chemistries were occurred in the hybrid fibers of PVA/APP/Neo, including the acetal bonds between PVA and APP, imine bonds between APP and Neo, and hydrogen bonds between PVA, APP, and Neo. These multiple chemical bonds allowed the PVA/APP/Neo fibers to maintain their fiber morphology after the immersion in the PBS solution, preserving the advantages of fibers (e.g., large surface-to-volume ratio and porosity) for applications in aqueous media. Particularly, the presence of Neo also provided the hybrid fibers with antimicrobial ability. Taken together, the in situ multivalent crosslinking has been demonstrated as a promising strategy to prepare stable and functional fibers for advanced applications.
机译:纤维是用于生物医学应用的新兴材料,包括药物输送、传感、组织工程和伤口敷料。然而,由水溶性聚合物制成的纤维在暴露于水后通常会失去形态并迅速溶解。在这里,我们开发了一种使用多价交联剂和原位交联来合成防水和热稳定的杂化纤维的组合策略。在我们的设计中,将聚乙烯醇(PVA)、醛改性聚木糖醇癸二酸酯-co-聚乙二醇(Ald_PXS-co-PEG,APP)和新霉素(Neo)混合,通过静电纺丝制造杂化纤维。PVA/APP/Neo杂化纤维中发生了几种交联化学反应,包括PVA与APP之间的缩醛键、APP与Neo之间的亚胺键以及PVA、APP与Neo之间的氢键。这些多重化学键使PVA/APP/Neo纤维在浸入PBS溶液后仍能保持其纤维形态,从而保留了纤维在水性介质中应用的优势(例如,较大的表体积比和孔隙率)。特别是,Neo的存在也为杂化纤维提供了抗菌能力。综上所述,原位多价交联已被证明是一种很有前途的策略,可以为高级应用制备稳定和功能性纤维。

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