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生物质静电纺丝纤维素支架的生物学性能。

Biological properties of electrospun cellulose scaffolds from biomass.

机构信息

a Post Graduate Program in Materials for Engineering, Federal University of Itajubá (UNIFEI) , Itajubá-MG , Brazil.

b Physics and Chemistry Institute (IFQ), Federal University of Itajubá (UNIFEI) , Itajubá-MG , Brazil.

出版信息

J Biomater Sci Polym Ed. 2019 Oct;30(15):1399-1414. doi: 10.1080/09205063.2019.1636351. Epub 2019 Jul 9.

Abstract

Nowadays the development of sustainable technologies for the effective production of polymeric materials that can be used as biomaterials will be of importance. In this work, cellulose (CEL) was purified from potato peel waste (PPW) and used to produce electrospun nanofibers for tissue engineering applications. The purified CEL was solubilized in copper ethylenediamine (Cuen) and the electrospun nanofibers was produced through electrospinning technique in diameter range of 250-500 nm at electrical field strength of 20 kV. To confirm the applicability of the electrospun CEL scaffolds in tissue engineering, in vitro BALB-3T3 fibroblastic cell adhesion and cell proliferation tests were employed in this study. Cell viability was evaluated by staining with ethidium bromide (EtBr) and acridine orange (AO) to evaluate the possible effects of cytotoxicity of the CNF scaffolds. Fluorescence studies confirmed that BALB-3T3 viable cells attached and spread throughout the CEL scaffold. The attachment and spreading of viable cells suggests that electrospun CEL scaffolds support growth of BALB-3T3 fibroblasts cells and suggests that PPW can be a useful source of raw material for the production of scaffolds for tissue engineering.

摘要

如今,开发可持续的技术以有效生产可用于生物材料的聚合物材料将变得尤为重要。在这项工作中,从马铃薯皮废弃物(PPW)中纯化纤维素(CEL),并将其用于生产用于组织工程应用的电纺纳米纤维。纯化的 CEL 在铜乙二胺(Cuen)中溶解,并通过电纺技术在 20 kV 的电场强度下生产出直径为 250-500nm 的电纺纳米纤维。为了确认电纺 CEL 支架在组织工程中的适用性,本研究采用体外 BALB-3T3 成纤维细胞黏附和增殖试验。通过用溴化乙锭(EtBr)和吖啶橙(AO)染色来评估 CNF 支架的细胞毒性的可能影响,从而评估细胞活力。荧光研究证实 BALB-3T3 存活细胞附着并在 CEL 支架上扩散。存活细胞的附着和扩散表明电纺 CEL 支架支持 BALB-3T3 成纤维细胞的生长,并表明 PPW 可以成为用于组织工程支架生产的有价值的原料来源。

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