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纳米纤维素技术:生产、功能化及其在医学和制药领域的应用——综述

Nanocellulose Technologies: Production, Functionalization, and Applications in Medicine and Pharmaceuticals - A Review.

作者信息

Al-Zu'bi Mohammad, Fan Mizi

机构信息

Applied Science Research Center, Applied Science Private University, Amman, Jordan.

Department of Civil and Environmental Engineering, Brunel University of London, London, UK.

出版信息

J Biomed Mater Res B Appl Biomater. 2025 May;113(5):e35585. doi: 10.1002/jbm.b.35585.

Abstract

This review provides a comprehensive analysis of nanocellulose production, characterization, and applications, with a particular focus on its use in membranes and films for healthcare applications. The diverse sources of nanocellulose, including wood-based materials, agricultural byproducts, algae, and bacteria, are explored, highlighting their renewability, environmental benefits, and adaptability for specialized applications. The review also examines various pretreatment and processing methods, such as mechanical, chemical, and enzymatic treatments, outlining their roles in achieving desirable nanocellulose properties. Additionally, surface modification techniques, including amidation and esterification, are discussed for enhancing compatibility, stability, and performance when nanocellulose is integrated into composite materials. A novel mechanochemical approach is highlighted as a sustainable and energy-efficient fibrillation technique that reduces the environmental impact of nanocellulose production. Furthermore, the chemical modification and functionalization of nanocellulose are analyzed to expand its capabilities in advanced biomedical applications, including tissue engineering scaffolds that provide structural support for cell growth, wound dressings that leverage nanocellulose's antimicrobial and moisture-retentive properties, and drug delivery systems that utilize its biocompatibility and tunable release characteristics. The review concludes with future research directions, emphasizing the need for continued optimization of processing techniques, hybrid material development, and stimuli-responsive nanocellulose systems to unlock new biomedical and industrial applications.

摘要

本综述对纳米纤维素的生产、表征及应用进行了全面分析,特别关注其在医疗保健应用的膜和薄膜中的应用。探讨了纳米纤维素的多种来源,包括木质材料、农业副产品、藻类和细菌,强调了它们的可再生性、环境效益以及对特殊应用的适应性。该综述还研究了各种预处理和加工方法,如机械、化学和酶处理,概述了它们在实现所需纳米纤维素性能方面的作用。此外,还讨论了表面改性技术,包括酰胺化和酯化,以提高纳米纤维素与复合材料结合时的相容性、稳定性和性能。一种新型机械化学方法被强调为一种可持续且节能的原纤化技术,可减少纳米纤维素生产对环境的影响。此外,还分析了纳米纤维素的化学改性和功能化,以扩展其在先进生物医学应用中的能力,包括为细胞生长提供结构支持的组织工程支架、利用纳米纤维素抗菌和保湿特性的伤口敷料,以及利用其生物相容性和可调释放特性的药物递送系统。综述最后提出了未来的研究方向,强调需要持续优化加工技术、开发混合材料以及构建刺激响应型纳米纤维素系统,以开拓新的生物医学和工业应用。

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