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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Composites Containing Fullerenes and Polysaccharides: Green and Facile Synthesis, Biocompatibility, and Antimicrobial Activity
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Composites Containing Fullerenes and Polysaccharides: Green and Facile Synthesis, Biocompatibility, and Antimicrobial Activity

机译:含有富勒烯和多糖的复合材料:绿色和容易合成,生物相容性和抗微生物活性

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摘要

By use of a green and simple ionic liquid, butylmethylimidazolium chloride (BMIm(+)Cl(-)) as a sole solvent, we developed a novel, green, and simple method to synthesize biocompatible composites containing polysaccharides (cellulose (CEL), chitosan (CS), and gamma-cyclodextrin (gamma-TCD)) and fullerene derivatives (amino-C-60 and hydroxy-C-60). The composites obtained (100%CEL, 100%CS, [CEL+gamma-TCD] and [CS+gamma-TCD]) readily adsorb amino-C-60 and hydroxy-C-60. Kinetics and adsorption isotherm results indicate that the fullerene derivatives physically adsorbed onto the surface of the CEL-based composites and subsequently desorbed from the composites when they were soaked in water. Conversely, because both fullerene derivatives strongly adsorbed onto the surface and subsequently diffused into the pores within the matrix of the CS-based composites, it was possible to synthesize (CS+amino-C-60), (CS+hydroxy-C-60), (CS +gamma-TCD+amino-C-60), and (CS+gamma-TCD+hydroxyl-C-60) composites. Microbial assay results show that adding gamma-TCD, amino-C-60, and/or hydroxyl-C-60 to CS substantially increases the composite's ability to reduce the growth of antibiotic-resistant bacteria such as Vancomycin-resistant Enterococcus (VRE). Biocompatibility assays indicate that hydroxy-C-60 and amino-Co are not cytotoxic to humans when encapsulated into CS composites. Taken together, the (CS+gamma-TCD+fullerene) composites are well suited for various applications ranging from dressing to treat chronically infected wounds to nonlinear optics, biosensors, and therapeutic agents.
机译:通过使用绿色和简单的离子液体,丁基甲基咪唑氯化物(Bmim(+)Cl( - ))作为唯一的溶剂,我们开发了一种新颖,绿色和简单的方法,用于合成含有多糖(纤维素(CEL),壳聚糖的生物相容性复合材料(CS)和γ-环糊精(γ-TCD))和富勒烯衍生物(氨基-C-60和羟基-C-60)。获得的复合材料(100%CEL,100%CS,[CEL + GAMMA-TCD]和[CS + Gamma-TCD])容易吸附氨基-C-60和羟基-C-60。动力学和吸附等温线结果表明,富勒烯衍生物物理上吸附在基于丝基复合材料的表面上,随后当它们在水中浸泡时从复合材料中解吸。相反,因为两个富勒烯衍生物都被强烈被吸附在表面上并随后扩散到基于Cs基复合材料的基质内,所以可以合成(Cs +氨基-C-60),(Cs +羟基-C-60 ),(CS +γ-TCD +氨基-C-60),(CS +γ-TCD +羟基-C-60)复合材料。微生物测定结果表明,添加γ-TCD,氨基-C-60和/或羟基-C-60至CS基本上增加了复合材料,降低了减少抗生素抗菌细菌的生长,例如万古霉素抗性肠球菌(VRE)。生物相容性测定表明,当封装到CS复合材料中时,羟基-C-60和氨基-CO不是细胞毒性。占据在一起,(CS + Gamma-TCD +富勒烯)复合材料非常适合于种植以治疗慢性感染的伤的非线性光学,生物传感器和治疗剂的应用。

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