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Bacterial cellulose-based materials and medical devices: current state and perspectives

机译:细菌纤维素基材料和医疗设备:现状和展望

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摘要

Bacterial cellulose (BC) is a unique and promising material for use as implants and scaffolds in tissue engineering. It is composed of a pure cellulose nanofiber mesh spun by bacteria. It is remarkable for its strength and its ability to be engineered structurally and chemically at nano-, micro-, and macroscales. Its high water content and purity make the material biocompatible for multiple medical applications. Its biocompatibility, mechanical strength, chemical and morphologic controllability make it a natural choice for use in the body in biomedical devices with broader application than has yet been utilized. This paper reviews the current state of understanding of bacterial cellulose, known methods for controlling its physical and chemical structure (e.g., porosity, fiber alignment, etc.), biomedical applications for which it is currently being used, or investigated for use, challenges yet to be overcome, and future possibilities for BC.
机译:细菌纤维素(BC)是一种独特且有前途的材料,可用作组织工程中的植入物和支架。它由细菌纺成的纯纤维素纳米纤维网组成。它以其强度以及在纳米,微米和宏观尺度上进行结构和化学工程处理的能力而著称。其高水含量和纯度使该材料具有生物相容性,可用于多种医疗应用。它的生物相容性,机械强度,化学和形态可控性使其成为在生物医学装置中用于人体的自然选择,其应用范围比以前更广泛。本文回顾了对细菌纤维素的了解现状,控制其物理和化学结构的已知方法(例如,孔隙率,纤维排列等),目前正在使用或研究使用的生物医学应用所面临的挑战。有待克服,以及卑诗省的未来可能性。

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