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细菌纤维素作为烧伤创面的理想潜在治疗方法:综述

Bacterial cellulose as an ideal potential treatment for burn wounds: A comprehensive review.

作者信息

Jabbari Farzaneh, Babaeipour Valiollah

机构信息

Nanotechnology and Advanced Materials Department, Materials and Energy Research Center (MERC), Tehran, Iran.

Faculty of Chemistry and Chemical Engineering, Malek-Ashtar University of Technology, Tehran, Iran.

出版信息

Wound Repair Regen. 2024 May-Jun;32(3):323-339. doi: 10.1111/wrr.13163. Epub 2024 Mar 6.

Abstract

Burn wound regeneration is a complex process, which has many serious challenges such as slow wound healing, secondary infection, and inflammation. Therefore, it is essential to utilise appropriate biomaterials to accelerate and guide the wound healing process. Bacterial cellulose (BC), a natural polymer synthesised by some bacteria, has attracted much attention for wound healing applications due to its unique properties including excellent physicochemical and mechanical properties, simple purification process, three-dimensional (3D) network structure similar to extracellular matrix, high purity, high water holding capacity and significant permeability to gas and liquid. BC's lack of antibacterial activity significantly limits its biomedical and tissue engineering application, but adding antimicrobial agents to it remarkably improves its performance in tissue regeneration applications. Burn wound healing is a complex long-lasting process. Using biomaterials in wound treatment has shown that they can satisfactorily accelerate wound healing. The purpose of this review is to elaborate on the importance of BC-based structures as one of the most widely used modern wound dressings in the treatment of burn wounds. In addition, the combination of various drugs, agents, cells and biomolecules with BC to expand its application in burn injury regeneration is discussed. Finally, the main challenges and future development direction of BC-based structures for burn wound repair are considered. The four most popular search engines PubMed/MEDLINE, Science Direct, Scopus and Google Scholar were used to help us find relevant papers. The most frequently used keywords were bacterial cellulose, BC-based biocomposite, wound healing, burn wound and vascular graft.

摘要

烧伤创面修复是一个复杂的过程,面临着许多严峻挑战,如伤口愈合缓慢、继发感染和炎症等。因此,利用合适的生物材料来加速和引导伤口愈合过程至关重要。细菌纤维素(BC)是由某些细菌合成的一种天然聚合物,因其独特的性能,包括优异的物理化学和机械性能、简单的纯化过程、类似于细胞外基质的三维(3D)网络结构、高纯度、高持水能力以及对气体和液体的显著渗透性,在伤口愈合应用中备受关注。然而,BC缺乏抗菌活性显著限制了其在生物医学和组织工程中的应用,但向其中添加抗菌剂可显著提高其在组织再生应用中的性能。烧伤创面愈合是一个复杂的长期过程。在伤口治疗中使用生物材料已表明它们能够令人满意地加速伤口愈合。本综述的目的是阐述基于BC的结构作为治疗烧伤创面最广泛使用的现代伤口敷料之一的重要性。此外,还讨论了将各种药物、试剂、细胞和生物分子与BC相结合以扩大其在烧伤损伤修复中的应用。最后,考虑了基于BC的结构用于烧伤创面修复的主要挑战和未来发展方向。使用了四个最受欢迎的搜索引擎PubMed/MEDLINE、Science Direct、Scopus和Google Scholar来帮助我们查找相关论文。最常用的关键词是细菌纤维素、基于BC的生物复合材料、伤口愈合、烧伤创面和血管移植物。

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