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Antibacterial activity of sustainable composites derived from epoxidized natural rubber/silver-substituted zeolite/poly(lactic acid) blends

机译:环氧化天然橡胶/银沸石/聚(乳酸)共混物衍生的可持续复合材料的抗菌活性

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摘要

Sustainable composites derived from epoxidized natural rubber (ENR)/silver-substituted zeolite (AgZ)/poly(lactic acid) (PLA) blends possessing antibacterial activity were reported. ENR, herein, acted as an antibacterial promoter providing more hydrophilicity to the composites and facilitating water diffusion. Two methodologies were used to prepare composites, including solution casting (S) as well as solution casting followed by roll milling (SR). Both composites were compared in terms of morphology, AgZ dispersion, water absorption, and antibacterial activity. The shift of T-g and tan delta toward lower temperature of PLA composites consistently confirmed the compatibility between ENR and PLA by DSC and DMA results, respectively. The good AgZ distribution was observed in composites-SR, as confirmed by SEM/EDX. The results of agar disk diffusion susceptibility test showed that PLA, AgZ/PLA, and even ENR/AgZ/PLA composites-S showed no or less inhibition zone; meanwhile, ENR/AgZ/PLA composites-SR showed the significant inhibition zone against both Escherichia coli and Staphylococcus aureus. Besides, the antibacterial activity of the composites was required at least 5 wt% of AgZ. More than 98% inhibition of S. aureus growth by the composites-SR was observed during 2-24 h of cultivation, whereas AgZ/PLA provided the highest inhibition of only 75% at 24 h of cultivation. Hence, the incorporation of ENR enhances the bactericidal activity of the composites. In terms of mechanical properties, incorporating ENR into the composites decreased tensile modulus and strength, but increased the impact strength significantly. Therefore, the developed composites could be promising materials in food and biomedical fields in which antibacterial and impact resistance properties are required.
机译:报道了具有抗菌活性的环氧化天然橡胶(ENR)/银沸石(AGZ)/聚(PLA)共混物的可持续复合材料。这里,否定作为抗菌促进剂,为复合材料提供更多的亲水性并促进水分扩散。使用两种方法来制备复合材料,包括溶液浇铸(S)以及溶液铸造,然后滚动研磨(SR)。在形态,agz分散,吸水率和抗菌活性方面进行比较两种复合材料。 T-G和TANδ朝向PLA复合材料的较低温度的偏移始终如一地证实了DSC和DMA结果的eN和PLA之间的相容性。通过SEM / EDX证实,在复合材料-SR中观察到良好的AGZ分布。琼脂盘扩散易感性试验结果表明,PLA,AGZ / PLA和甚至ENR / AGZ / PLA复合材料 - S显示没有或更少的抑制区;同时,ENR / AGZ / PLA Composites-SR显示对eRCherichia Coli和金黄色葡萄球菌的显着抑制区。此外,复合材料的抗菌活性至少需要5重量%的agz。在培养2-24小时期间观察到复合材料-SR的抑制作用于金黄色葡萄球菌生长98%以上,而Agz / PLA在24小时的培养时仅提供75%的最高抑制。因此,eng的掺入增强了复合材料的杀菌活性。就机械性能而言,将ENR进入复合材料降低了拉伸模量和强度,但显着增加了冲击强度。因此,开发的复合材料可能是食物和生物医学领域的有希望的材料,其中需要抗菌和抗冲击性。

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