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Designing, preparation and evaluation of the antimicrobial activity of biomaterials based on chitosan modified with silver nanoparticles

机译:基于壳聚糖的壳聚糖改性基于壳聚糖的生物材料抗微生物活性的设计,制备和评价

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摘要

Chitosan was chemically modified through a four-step procedure. First, the amino groups of chitosan have reacted with benzaldehyde (Derivative 1); second, hydroxyl groups on C6 of Derivative 1 have reacted with epichlorohydrin (Derivative 2); third, the epoxy groups of Derivative 2 have reacted with 4-aminosalicylic acid (Derivative 3); and fourth, benzaldehyde moieties of Derivative 3 have been removed to retrieve the amino groups (Derivative 4). For further modification, three nano-biocomposites were synthesized via impregnating three different concentrations of silver nanoparticles inside Derivative 4. These derivatives and Derivative 4/AgNP composites were structurally identified using elemental analysis, FTIR, XPS, H-1 NMR, XRD, SEM, EDS and TEM techniques. These derivatives and Derivative 4/AgNP composites have superior antimicrobial activities than virgin chitosan. Some of them have inhibition zone analogous or superior than the utilized reference drugs. Cytotoxic activity of Derivative 4 and Derivative 4/AgNPs-5 composite indicated that these materials are safe on normal human cells. Accordingly, combinations between chitosan and functional groups derived from the different modifiers in addition to AgNPs within a single structure have extraordinarily enhanced the efficiency of chitosan. It might be deemed as a path to attain promising frameworks which are taken as proper competitors for antimicrobial materials in biomedical fields. (C) 2020 Elsevier B.V. All rights reserved.
机译:壳聚糖通过四步骤进行化学改性。首先,壳聚糖的氨基与苯甲醛(衍生物1)反应;第二,衍生物1的C6上的羟基与表氯醇反应(衍生物2);第三,衍生物2的环氧基团与4-氨基水杨酸(衍生物3)反应;第四,已经除去苯甲醛部分3以检索氨基(衍生物4)。为了进一步改性,通过浸渍三种不同浓度的衍生物4.这些衍生物和衍生物4 / AgNP复合材料合成三种纳米生物复合材料,使用元素分析,FTIR,XPS,H-1 NMR,XRD,SEM, EDS和TEM技术。这些衍生物和衍生物4 / AgNP复合材料具有优异的抗微生物活动,而不是维特杀藻烷。其中一些具有抑制区类似或优于使用的参考药物。衍生物4和衍生物4 / AgNPS-5复合材料的细胞毒性活性表明,这些材料在正常人体细胞上是安全的。因此,除了单一结构内的AgNP之外,脱乙酰壳多糖和官能团衍生自不同改性剂的官能团的组合具有极大地提高了壳聚糖的效率。它可能被视为实现有前途的框架的道路,这被视为生物医学领域的抗微生物材料的适当竞争对手。 (c)2020 Elsevier B.v.保留所有权利。

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