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用于感染伤口治疗的连续可控电纺抗菌铜-海藻酸盐敷料

Continuous and controllable electro-fabrication of antimicrobial copper-alginate dressing for infected wounds treatment.

机构信息

Key Laboratory for Ultrafine Materials of Ministry of Education, Frontiers Science Center for Materiobiology and Dynamic Chemistry, School of material science and engineering, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

J Mater Sci Mater Med. 2021 Nov 24;32(12):143. doi: 10.1007/s10856-021-06619-2.

Abstract

The contamination of chronic wound with bacteria especially methicillin-resistant Staphylococcus aureus (MRSA) is considered as the major factor interferencing normal wound healing. There still remain great challenges in developing safe and effective wound dressings with wide-spectrum antibacterial functions. Alginate hydrogel is a common dressing for wound treatment. Copper is one of the trace elements in human body with inherent antibacterial activity. Traditional methods for preparing a structure-controlled copper-alginate antibacterial matrix are difficult however, due to the fast and uncontrolled gelation between alginate and metal ions. In this work, we report an electrodeposition method for rapid fabrication of copper cross-linked alginate antibacterial films (Cu-Alg) with controlled structure and copper content, which is relied on an electrical signal controlled release of copper ions from the reaction of insoluble salt Cu(OH)CO and the generated protons via water electrolysis on anode. The results prove that the physical structure and chemical composition of the electrodeposited Cu-Alg films can be continuously modulated by the imposed charges during electrodeposition. In vitro tests demonstrate the film has Cu content-dependent bactericidal activities. Film's cytocompatibility is well controlled by the imposed charges for Cu-Alg fabrication. The MRSA infected wound model in vivo also indicates that Cu-Alg film can effectively eliminate bacterial infection and suppress host inflammatory responses. We believe this study demonstrates a convenient and controllable strategy to fabricate alginate antibacterial dressings with potential applications for infected wound treatment. More broadly, our work reveals electrodeposition is a general and simple platform to design alginate films with versatile functions.

摘要

慢性创面被细菌,尤其是耐甲氧西林金黄色葡萄球菌(MRSA)污染,被认为是干扰正常创面愈合的主要因素。开发具有广谱抗菌功能且安全有效的创面敷料仍然面临巨大挑战。海藻酸钠水凝胶是一种常见的创面处理敷料。铜是人体必需微量元素之一,具有固有抗菌活性。然而,由于海藻酸钠与金属离子之间快速且不受控制的凝胶化,传统制备结构可控的铜-海藻酸钠抗菌基质的方法具有很大的难度。在这项工作中,我们报告了一种电沉积方法,可快速制备具有受控结构和铜含量的交联海藻酸钠抗菌膜(Cu-Alg),该方法依赖于不溶性盐 Cu(OH)CO 与通过阳极水解析出的质子之间的反应,通过电信号控制铜离子的释放。结果证明,在电沉积过程中施加的电荷可以连续调节电沉积 Cu-Alg 膜的物理结构和化学组成。体外测试表明,该膜的杀菌活性与铜含量有关。通过施加电荷来控制 Cu-Alg 制备的膜的细胞相容性。体内 MRSA 感染创面模型也表明,Cu-Alg 膜可有效消除细菌感染并抑制宿主炎症反应。我们相信这项研究展示了一种方便且可控的策略,可以制备具有潜在感染性创面治疗应用的海藻酸钠抗菌敷料。更广泛地说,我们的工作揭示了电沉积是设计具有多种功能的海藻酸钠膜的通用且简单的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20cb/8613166/a31d5cb55b48/10856_2021_6619_Sch1_HTML.jpg

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