Microfluidic preparation and antibacterial properties of polyvinyl alcohol hydrogel microfibers loaded with MOF microparticles†

IF 3.1 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Ning Zhao, Shi-Yu Liu, Zhuang Liu, Xiao-Jie Ju, Rui Xie, Wei Wang, Da-Wei Pan and Liang-Yin Chu
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引用次数: 0

Abstract

Antimicrobial polyvinyl alcohol (PVA) hydrogel microfibers that contain metal–organic framework microparticles with Ag+ (AMOF) and Zn2+ (ZMOF) and cellulose nanocrystals (CNCs) are controllably and continuously prepared by a microfluidic spinning method. The CNC endows the PVA networks with good mechanical properties via the formation of hydrogen bonds, while the AMOF and ZMOF allow the release of Ag+ and Zn2+ respectively for achieving antibacterial and antioxidant properties. The microfiber size can be flexibly and precisely regulated by adjusting the flow rates of both dispersed and continuous phases. The PVA hydrogel microfibers with both AMOF and ZMOF show tensile strengths of 4.78 MPa, and good stretchability of 768.3%. These microfibers show long-lasting ion release behaviors, with the released concentrations of Ag+ and Zn2+ ions reaching 1.113 mg L−1 and 0.005 mg L−1 within 96 h. Meanwhile, these microfibers exhibit good antimicrobial properties against E. coli O157:H7 and S. aureus within 24 h due to the Ag+ released from the AMOF. Moreover, such microfibers show good antioxidant properties by continuously inhibiting ·OH generation over 12 h due to the Zn2+ released from the ZMOF. This work provides a novel strategy for rational design and creation of hydrogel microfiber materials with good antimicrobial performances.

Abstract Image

载MOF微颗粒聚乙烯醇水凝胶微纤维的微流控制备及其抗菌性能
采用微流控纺丝的方法制备了含有Ag+ (AMOF)和Zn2+ (ZMOF)的金属有机骨架微粒子和纤维素纳米晶(cnc)的抗菌聚乙烯醇(PVA)水凝胶微纤维。CNC通过氢键的形成赋予PVA网络良好的机械性能,而AMOF和ZMOF分别允许Ag+和Zn2+的释放,以实现抗菌和抗氧化性能。通过调节分散相和连续相的流量,可以灵活、精确地调节超细纤维的尺寸。AMOF和ZMOF制备的PVA水凝胶微纤维拉伸强度均为4.78 MPa,拉伸率为768.3%。这些微纤维表现出持久的离子释放行为,在96 h内Ag+和Zn2+离子的释放浓度分别达到1.113 mg L−1和0.005 mg L−1。同时,由于AMOF释放Ag+,这些微纤维在24 h内对大肠杆菌O157:H7和金黄色葡萄球菌具有良好的抗菌性能。此外,由于ZMOF释放的Zn2+,这种微纤维在12 h内连续抑制·OH的生成,表现出良好的抗氧化性能。本研究为合理设计和制备具有良好抗菌性能的水凝胶微纤维材料提供了新的思路。
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来源期刊
Reaction Chemistry & Engineering
Reaction Chemistry & Engineering Chemistry-Chemistry (miscellaneous)
CiteScore
6.60
自引率
7.70%
发文量
227
期刊介绍: Reaction Chemistry & Engineering is a new journal reporting cutting edge research into all aspects of making molecules for the benefit of fundamental research, applied processes and wider society. From fundamental, molecular-level chemistry to large scale chemical production, Reaction Chemistry & Engineering brings together communities of chemists and chemical engineers working to ensure the crucial role of reaction chemistry in today’s world.
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