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Aroma-Loaded Microcapsules with Antibacterial Activity for Eco-friendly Applications

机译:载有抗菌活性的香精微胶囊,适用于环保应用

摘要

Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation using green materials. Limonene and vanillin microcapsules were produced by complex coacervation using chitosan/gum Arabic as shell materials and tannic acid as hardening agent. The effect of two emulsifiers; Span 85 and polyglycerol polyricinoleate (PGPR), on the encapsulation efficiency (EE %), microcapsule's size and morphology, and cumulative release profiles was studied. The use of Span 85 resulted in mononuclear morphology while PGPR gave rise to polynuclear structures, regardless of the core material (vanillin or limonene). The obtained microcapsules demonstrated a sustained release patter. Grafting of the produced microcapsules onto cotton fabrics through an esterification reaction using citric acid as anon-toxic cross-linker followed by thermofixation and curing, was confirmed by SEM and FTIR spectroscopy. Standard antibacterial assays conducted on both microcapsules alone and impregnated onto the fabrics indicated a sustained antibacterial activity.
机译:使用绿色材料进行微囊化后,赋予棉织物以芬芳和抗菌性能。柠檬烯和香兰素微胶囊是通过壳聚糖/阿拉伯胶作为壳材料,单宁酸作为硬化剂的复合凝聚法制备的。两种乳化剂的作用;研究了Span 85和聚甘油聚蓖麻油酸酯(PGPR)的包封效率(EE%),微胶囊的大小和形态以及累积释放曲线。使用Span 85会导致单核形态,而PGPR会产生多核结构,而与核心材料(香兰素或柠檬烯)无关。所获得的微胶囊表现出持续释放的模式。通过柠檬酸作为阴离子毒性交联剂的酯化反应,然后热固和固化,通过酯化反应将生产的微胶囊接枝到棉织物上,这是通过SEM和FTIR光谱证实的。对两个微囊单独进行并浸渗到织物上的标准抗菌测定表明了持续的抗菌活性。

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