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在电场作用下均匀高效地生产细菌纳米纤维素-乳铁蛋白-胶原蛋白复合材料,作为促进伤口愈合的基质。

Homogeneous and efficient production of a bacterial nanocellulose-lactoferrin-collagen composite under an electric field as a matrix to promote wound healing.

作者信息

Yuan Haibin, Chen Lin, Hong Feng F

机构信息

Scientific Research Base of Bacterial Nanofiber Manufacturing and Composite Technology (Donghua University), China Textile Engineering Society, Shanghai 201620, China.

Group of Microbiological Engineering and Industrial Biotechnology, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, North Ren Min Road 2999, Shanghai 201620, China.

出版信息

Biomater Sci. 2021 Feb 9;9(3):930-941. doi: 10.1039/d0bm01553a.

DOI:10.1039/d0bm01553a
PMID:33284290
Abstract

BNC was functionalized with collagen (COL) and lactoferrin (LF) to form three different composites: BNC/COL, BNC/LF and BNC/LF/COL using a novel electrophoresis-based technology. The technology is less time-consuming than traditional immersion-adsorption methods and offers the additional advantages of greater protein loading, better homogeneity and a lower requirement for processing solution. Significantly, it has general applicability and great potential for fabricating other similar composites. The water-holding capability and water vapor transmission rate (WVTR) of BNC composites were significantly improved, particularly in the case of BNC/LF/COL, with a WVTR of 2600 g m-2 d-1, indicating that the composite maintains a moderately moist environment over the wound bed, which would enhance epithelial cell migration during the healing process. Compared with BNC and BNC/COL, the LF-impregnated composites mediated a reduction in bacterial viability of at least 77%. Impregnation with COL significantly improved the cytocompatibility of BNC composites to promote the adhesion and proliferation of fibroblast cells. Furthermore, a greater therapeutic effect of BNC/LF/COL was observed in a rat model of wound healing, with a new epithelium formed within 9 days and without any significant adverse reactions. These results suggest that BNC/LF/COL obtained using the electrophoresis method represents a promising wound dressing for use in practical applications.

摘要

采用一种基于电泳的新技术,将细菌纳米纤维素(BNC)与胶原蛋白(COL)和乳铁蛋白(LF)功能化,以形成三种不同的复合材料:BNC/COL、BNC/LF和BNC/LF/COL。该技术比传统的浸泡吸附方法耗时更少,具有更高的蛋白质负载量、更好的均匀性以及对处理溶液的较低要求等额外优势。值得注意的是,它具有普遍适用性,在制备其他类似复合材料方面具有巨大潜力。BNC复合材料的保水能力和水蒸气透过率(WVTR)显著提高,特别是在BNC/LF/COL的情况下,WVTR为2600 g m-2 d-1,这表明该复合材料在伤口床上方保持适度湿润的环境,这将在愈合过程中增强上皮细胞迁移。与BNC和BNC/COL相比,含LF的复合材料使细菌活力降低至少77%。COL浸渍显著改善了BNC复合材料的细胞相容性,促进了成纤维细胞的黏附和增殖。此外,在大鼠伤口愈合模型中观察到BNC/LF/COL具有更大的治疗效果,在9天内形成了新的上皮,且没有任何明显的不良反应。这些结果表明,通过电泳法获得的BNC/LF/COL是一种有前途的伤口敷料,可用于实际应用。

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