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具有双重杀菌和促再生功能的纳米防御素包裹水凝胶用于高级伤口治疗。

Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy.

作者信息

Luo Gan, Sun Yaqi, Zhang Jue, Xu Zhipeng, Lu Wuyuan, Wang Hanbin, Zhang Yan, Li Hui, Mao Zhengwei, Ye Shixin, Cheng Baoli, Fang Xiangming

机构信息

Department of Anesthesiology and Intensive Care, The First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou 310003, China.

Key Laboratory of Medical Molecular Virology (MOE/NHC/CAMS), School of Basic Medical Sciences, Fudan University, Shanghai, 200032, China.

出版信息

Theranostics. 2021 Jan 26;11(8):3642-3660. doi: 10.7150/thno.53089. eCollection 2021.

Abstract

Host defense peptides (HDPs) have emerged as a novel therapeutic paradigm for wound management; however, their clinical applications remain a challenge owing to their poor pharmacological properties and lack of suitable pharmaceutical formulations. Nanodefensin (ND), a nanoengineered human α-defensin 5 (HD5), has shown improved pharmacological properties relative to the parent compound. In this study, we engineered a nanodefensin-encased hydrogel (NDEFgel), investigated the effects of NDEFgel on wound healing, and elucidated underlying mechanisms. ND was chemically synthesized and tested functions by antimicrobial and scratch assays and western blotting. Different NDEFgels were evaluated by characterizations including degradation, drug release and antimicrobial activity. In full-thickness excisional murine models, the optimal NDEFgel was directly applied onto wound sites, and the efficacy was assessed. Moreover, the underlying mechanisms of pro-regenerative effect developed by NDEFgel were also explored. Apart from bactericidal effects, ND modulated fibroblast behaviors by promoting migration and differentiation. Among the tested hydrogels, the Pluronic F127 (Plu) hydrogel represented the most desirable carrier for ND delivery owing to its favorable controlled release and compatibility with ND. Local treatment of NDEFgel on the wound bed resulted in accelerated wound regeneration and attenuated bacterial burden. We further demonstrated that NDEFgel therapy significantly upregulated genes related to collagen deposition and fibroblasts, and increased the expression of myofibroblasts and Rac1. We therefore found that Rac1 is a critical factor in the ND-induced modulation of fibroblast behaviors through a Rac1-dependent cytoskeletal rearrangement. Our results indicate that NDEFgel may be a promising dual-action therapeutic option for advanced wound management in the future.

摘要

宿主防御肽(HDPs)已成为伤口管理的一种新型治疗模式;然而,由于其较差的药理学性质以及缺乏合适的药物制剂,它们的临床应用仍然是一项挑战。纳米防御素(ND)是一种纳米工程化的人α-防御素5(HD5),相对于母体化合物,它已显示出改善的药理学性质。在本研究中,我们构建了一种包裹纳米防御素的水凝胶(NDEFgel),研究了NDEFgel对伤口愈合的影响,并阐明了其潜在机制。ND通过化学合成,并通过抗菌和划痕试验以及蛋白质印迹法测试其功能。通过包括降解、药物释放和抗菌活性在内的表征来评估不同的NDEFgel。在全层切除小鼠模型中,将最佳的NDEFgel直接应用于伤口部位,并评估其疗效。此外,还探索了NDEFgel产生促再生作用的潜在机制。除杀菌作用外,ND通过促进迁移和分化来调节成纤维细胞行为。在测试的水凝胶中,普朗尼克F127(Plu)水凝胶因其良好的控释性能以及与ND的相容性,是最理想的ND递送载体。在伤口床局部应用NDEFgel可加速伤口再生并减轻细菌负荷。我们进一步证明,NDEFgel疗法显著上调了与胶原蛋白沉积和成纤维细胞相关的基因,并增加了肌成纤维细胞和Rac1的表达。因此,我们发现Rac1是ND诱导的成纤维细胞行为调节中的关键因子,其通过Rac1依赖性细胞骨架重排发挥作用。我们的结果表明,NDEFgel可能是未来用于高级伤口管理的一种有前景的双作用治疗选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6cb/7914350/6e676e4f8909/thnov11p3642g001.jpg

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