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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Sugar-cane bagasse derived cellulose enhances performance of polylactide and polydioxanone electrospun scaffold for tissue engineering
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Sugar-cane bagasse derived cellulose enhances performance of polylactide and polydioxanone electrospun scaffold for tissue engineering

机译:糖蔗渣衍生的纤维素增强聚物和聚二氧基电纺架支架用于组织工程的性能

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摘要

Bagasse is a waste product of sugar extraction from sugar-cane with approximately 30% cellulose content. Cellulose was successfully extracted from sugar-cane bagasse using a modified mercerization-bleaching approach with a 40% yield. Extracted cellulose was converted to cellulose acetate for enhanced electrospinnability and blended with poly-L-Lactide or polydioxanone before solution electrospinning. Physico-chemical evaluation of the electrospun mats showed variable miscibility of blends. In vitro cell studies with L929 mouse fibroblast cells was quite conclusive as regards the biocompatibility of the blended mats with proliferative behavior of cells, extracellular matrix deposition and characteristic features of healthy cellular response. MTT assay indicated that the cellulose blended mats induced higher cell densities than the controls. Cellulose content influenced parameters such as fiber diameter, porosity and cell-matrix interaction of mats impacting on cell growth and behavior. Preliminary assessment of biomineralization potential of the mats by SEM showed nanohydroxyapatite deposits on the electrospun fibers.
机译:Bagasse是糖提取的废物,来自糖甘蔗,纤维素含量约为30%。使用具有40%收率的改性的丝光漂白方法从糖甘蔗泡沫成功萃取纤维素。将提取的纤维素转化为乙酸纤维素,以提高电型能力,并在溶液静电纺丝之前与聚-L-丙交酯或多二氧基混合。电纺垫的物理化学评价显示混合物的可变混溶性。在体外细胞研究与L929小鼠成纤维细胞的研究是相当得出的,如混合垫的生物相容性,细胞增殖行为,细胞外基质沉积和健康细胞反应的特征特征。 MTT测定表明,纤维素混合垫诱导比对照更高的细胞密度。纤维素含量影响参数,如纤维直径,孔隙率和细胞基质的相互作用影响细胞生长和行为。 SEM在静电纺丝纤维上显示纳米羟基磷灰石沉积物对垫子的生物碳化势潜力的初步评估。

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