Influence of Chitosan Characteristics in the Microencapsulation of Essential Oils

M. Arias, A. Lopez, M. Vilaseca, B. Vallès, R. Prieto, M. Simó, J. A. Valle, R. C. C. R. Valle, F. M. Bezerra, Jordi Puiggalí Bellalta
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引用次数: 5

Abstract

The fight against nosocomial infections in hospitals, has promoted the use of microencapsulated essential oils on medical wearing uniforms. These types of microcapsules can be improved with the use of antimicrobial polymers in the shell structure. Chitosan is one of the most used biopolymers and the effectiveness of the treatment can be increased with the combination of different molecular weight chains of chitosan. This modification in the composition of shell structure allows controlling the rate of hydrolysis and, therefore the amount of its cationic form. The main objective of this work is to define a methodology to get microcapsules with different shell compositions, using surfactants as stabilizers in their first step. Once they have been obtained, these microcapsules will be fixed into textile substrates with the objective to use these tissues as surgical and medical clothes to spread the antibacterial effect, in sanitary staff, as well as in the own patient. In the process of microencapsulation the molecular weight distribution of polymers, influences strongly the delivery mechanisms of the active principle, as well as the chemical characteristics of the textile substrate used in every case. In this work, several chitosan biopolymers have been checked. Structural changes in the stabilization first step and the influence of the cross-linking extension have been related with the final antibacterial effect when fixed on cotton substrates.
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壳聚糖特性对精油微胶囊化的影响
在医院抗击医院感染的斗争中,提倡在医用制服上使用微胶囊精油。这些类型的微胶囊可以通过在外壳结构中使用抗微生物聚合物来改进。壳聚糖是最常用的生物聚合物之一,不同分子量的壳聚糖链的结合可以提高处理的有效性。这种对外壳结构组成的修饰可以控制水解速率,从而控制其阳离子形式的量。这项工作的主要目的是确定一种方法来获得具有不同外壳组成的微胶囊,在第一步中使用表面活性剂作为稳定剂。一旦获得,这些微胶囊将被固定在纺织品基质中,目的是将这些组织用作外科和医疗服,在卫生人员和患者身上传播抗菌效果。在微胶囊化过程中,聚合物的分子量分布强烈影响活性成分的递送机制,以及在各种情况下使用的纺织品基质的化学特性。在这项工作中,已经检查了几种壳聚糖生物聚合物。当固定在棉花基质上时,稳定第一步的结构变化和交联延伸的影响与最终的抗菌效果有关。
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