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Cellulose-Chitosan-Keratin Composite Materials: Synthesis Immunological and Antibacterial Properties

机译:纤维素-壳聚糖-角蛋白复合材料:合成免疫和抗菌性能。

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摘要

Novel composites were synthesized from keratin (KER), cellulose (CEL) and chitosan (CS). The method is recyclable because majority (>88%) of [BMIm+Cl], an ionic liquid (IL), used as the sole solvent, was recovered for reuse. Experimentally, it was confirmed that unique properties of each component remain intact in the composites, namely bactericide (from KER and CS) and anti-inflammatory property (from KER). Specifically, the composites were examined for their anti-inflammatory influence on macrophages. The cells were imaged and immunophenotyped to determine the quantity using the macrophage marker CD11b. The 75:25 [KER+CS] composite was found to have the least amount of CD11b macrophages compared to other composites. Bactericidal assays indicated that all composites, except the 25:75 [KER+CS], substantially reduce the growth of organisms such as vancomycin resistant Enterococcus (VRE) and Eschericia coli. The results clearly indicate that the composites possess all properties needed for effective use as a wound dressing.
机译:由角蛋白(KER),纤维素(CEL)和壳聚糖(CS)合成了新型复合材料。该方法可回收利用,因为回收了用作唯一溶剂的离子液体(IL)[BMIm + Cl -]的大部分(> 88%),可重复使用。实验上证实,每种成分的独特性质在复合材料中均保持不变,即杀菌剂(来自KER和CS)和抗炎性(来自KER)。具体而言,检查复合材料对巨噬细胞的抗炎作用。使用巨噬细胞标记物CD11b对细胞进行成像并免疫表型测定数量。与其他复合材料相比,发现75:25 [KER + CS]复合材料的CD11b巨噬细胞数量最少。杀菌分析表明,除25:75 [KER + CS]外,所有复合材料均会大大降低生物体的生长,例如耐万古霉素肠球菌(VRE)和大肠杆菌。结果清楚地表明,该复合材料具有有效用作伤口敷料所需的所有性能。

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