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用于伤口敷料的纤维素基纳米纤维

Cellulose-Based Nanofibers in Wound Dressing.

作者信息

Masoud Abdul Razak, Velisdeh Zeinab Jabbari, Bappy Mohammad Jabed Perves, Pandey Gaurav, Saberian Elham, Mills David K

机构信息

Molecular Science and Nanotechnology, Louisiana Tech University, Ruston, LA 71272, USA.

Micro and Nanoscale Systems Engineering, Louisiana Tech University, Ruston, LA 71272, USA.

出版信息

Biomimetics (Basel). 2025 May 23;10(6):344. doi: 10.3390/biomimetics10060344.

Abstract

Wound dressings have a significant role in managing trauma-related injuries, chronic lacerations, as well as post-operative complications, by preventing infections and promoting tissue regeneration. Conventional methods using sutures and gauze often pose constraints in healing effectiveness and cost. Emerging materials, particularly cellulose-based nanofibers, offer a favorable choice due to their biodegradability, biocompatibility, and structural similarity to the extracellular matrix. Cellulose, being an abundant, naturally available biopolymer, forms the basis for modern materials for wound dressing. It is a very resourceful material due to its capability to be processed into films, fibers, and membranes with tailored properties. Surface modification of cellulose membranes with nanoparticles or bioactive compounds assists in enhancing the antimicrobial properties and supports sustained drug release, essential in chronic wound infections. Electrospinning and other modern fabrication techniques allow for controlling the fiber morphology and drug-delivery characteristics. This review highlights the properties, fabrication techniques, surface functionalization, and biomedical applications of cellulose-based materials in wound care. With increasing demand for effective and cost-effective wound treatments, cellulose nanofibers stand out as a sustainable, multifunctional platform for cutting-edge wound dressings, offering improved healing, reduced scarring, and potential for amalgamation with several drug delivery and tissue engineering approaches.

摘要

伤口敷料在处理创伤相关损伤、慢性撕裂伤以及术后并发症方面发挥着重要作用,通过预防感染和促进组织再生来实现。使用缝线和纱布的传统方法在愈合效果和成本方面常常存在限制。新兴材料,特别是基于纤维素的纳米纤维,由于其生物可降解性、生物相容性以及与细胞外基质的结构相似性,提供了一个有利的选择。纤维素作为一种丰富的天然生物聚合物,构成了现代伤口敷料材料的基础。由于它能够被加工成具有定制特性的薄膜、纤维和膜,所以是一种非常有用的材料。用纳米颗粒或生物活性化合物对纤维素膜进行表面改性有助于增强抗菌性能并支持持续药物释放,这在慢性伤口感染中至关重要。静电纺丝和其他现代制造技术能够控制纤维形态和药物递送特性。本综述重点介绍了基于纤维素的材料在伤口护理中的特性、制造技术、表面功能化以及生物医学应用。随着对有效且经济高效的伤口治疗需求不断增加,纤维素纳米纤维作为前沿伤口敷料的可持续多功能平台脱颖而出,具有改善愈合、减少疤痕以及与多种药物递送和组织工程方法融合的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7066/12190566/78cc97ed1263/biomimetics-10-00344-g001.jpg

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