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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Hyaluronan biofilms reinforced with partially deacetylated chitin nanowhiskers: Extraction, fabrication, in-vitro and antibacterial properties of advanced nanocomposites
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Hyaluronan biofilms reinforced with partially deacetylated chitin nanowhiskers: Extraction, fabrication, in-vitro and antibacterial properties of advanced nanocomposites

机译:透明质酸生物膜用部分脱乙酰纳米肽纳米须须增强:先进纳米复合材料的提取,制造,体外和抗菌性能

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摘要

Fabrication of nanocomposite biofilms with enhanced mechanical and antibacterial properties was successfully achieved from hyaluronan (HA) and partially deacetylated chitin nanowhiskers (ChNWs) by a casting-evaporation method. The hydrolysis process of chitin showed an important role in the dimensions, stability, and the crystallinity of extracted ChNWs in a time-dependent manner. The volume fraction of ChNWs nanofiller varying from (0.001 to 0.5) exhibited a great influence on the mechanical properties of the biofilms (young modulus, strength) was enhanced by the high load-bearing capacity of NWs compared with net HA film. The antibacterial activity of the nanocomposite biofilms exhibited significant bactericidal activity against different types of bacteria (- / + gram). HA/ChNWs Nanocomposite biofilms did not show any toxicity against normal human dermal fibroblasts (NHDF) and human primary osteogenic sarcoma (Saos-2) cell lines. The new biofilms with unique properties like edibleness, environmental friendliness, high mechanical properties, antibacterial performance, and non-cytotoxicity that could be used in skin tissue regenerations, and drug delivery applications.
机译:通过倒蒸发法从透明质酸(HA)和部分脱乙酰的丁蛋白纳米须(CHNW)成功地实现了具有增强的机械和抗菌性质的纳米复合型生物膜的制备。甲壳菌素的水解过程在尺寸,稳定性和以时间依赖性的方式提取的CHNWs的结晶度表现出重要作用。与净HA薄膜相比,CHNWS纳米填充物的体积分数对生物膜(幼苗,强度)的力学性能产生了很大的影响,通过NW的高承载能力提高了Biofilms(杨氏模量,强度)。纳米复合物生物膜的抗菌活性表现出针对不同类型的细菌( - / +克)的显着杀菌活性。 HA / CHNWS纳米复合物生物膜未显示针对正常人类皮肤成纤维细胞(NHDF)和人初级骨质骨质肉瘤(SAOS-2)细胞系的任何毒性。新的生物膜具有独特的性质,如EDIBLENCE,环境友好性,高机械性能,抗菌性能和非细胞毒性,可用于皮肤组织再生和药物递送应用。

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