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Processing and Properties of Nanofibrous Bacterial Cellulose-Containing Polymer Composites: A Review of Recent Advances for Biomedical Applications

机译:纳米纤维细菌纤维素聚合物复合材料的加工和性能:对生物医学应用近期进步的综述

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摘要

Bacterial cellulose (BC) is an extracellular natural polymer produced by many microorganisms and its properties could be tailored via specific fabrication methods and culture conditions. There is a growing interest in BC derived materials due to the main features of BC such as porous fibrous structure, high crystallinity, impressive physico-mechanical properties, and high water content. However, pristine BC lacks some features, limiting its practical use in varied applications. Thus, fabrication of BC composites has been attempted to overcome these constraints. This review article overviews most recent advance in the development of BC composites and their potential in biomedicine including wound dressing, tissue engineering scaffolds, and drug delivery. Special emphasis is placed on the fabrication and applications of BC-containing nanofibrous composites for biomedical usage. It summarizes electrospinning of BC-based nanofibers and their surface modification with an outline on challenges and future perspective.
机译:细菌纤维素(BC)是由许多微生物产生的细胞外天然聚合物,其性能可以通过特异性制备方法和培养条件进行定制。由于BC的主要特征如多孔纤维结构,高结晶度,令人印象深刻的物理机械性能和高含水量,因此对BC衍生材料具有日益增长的兴趣。然而,原始BC缺乏一些功能,限制了在各种应用中的实际应用。因此,已经尝试制造BC复合材料来克服这些约束。本综述文章概述了BC复合材料开发的最新进展及其在生物医学中的潜力,包括伤口敷料,组织工程支架和药物递送。将特殊的重点放在含BC纳米纤维复合材料的制造和应用中,用于生物医学用途。它总结了基于BC的纳米纤维的静电纺丝及其表面改性,概述了挑战和未来的观点。

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