Comprehensive wound healing using ETN@Fe7S8 complex by positively regulating multiple programmed phases.

IF 10.6 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Mengxia Chen, Ting Liu, Xiaonan Wang, Lizeng Gao, Yunqing Cheng, Jing Jiang, Jinhua Zhang
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引用次数: 0

Abstract

Wound healing requires coordinated progression through multiple programmed phases including hemostasis, infection control, inflammatory resolution, proliferation, and tissue remodeling. Many nanomaterials have shown great potential to promote wound healing, however, most of them only address partial aspects of these processes, making a recovery hard with adequate effects. In this study, we prepared a complex of nano-iron sulfide integrated with erythrocyte-templated nanozyme (ETN) (ETN@Fe7S8) for comprehensive treatment of wounds. Firstly, ETN served as a mediator to confine iron sulfide to form Fe7S8 nanocomposite in a solvothermal reaction. Secondly, the ETN@Fe7S8 demonstrated bactericidal effects against methicillin-resistant Staphylococcus aureus (MRSA) by releasing ferrous iron and polysulfide to induce ferroptosis-like cell death. Thirdly, ferrous iron along with polysulfide exerted anti-inflammatory effects by inhibiting the activation of the NF-κB signaling pathway, while the polysulfide also contributed to angiogenesis by promoting the activation of vascular endothelial growth factor A (VEGFA), initiated phosphorylation-mediated activation of the PI3K/AKT signaling pathway, a master regulatory cascade governing endothelial cell survival, migration, and angiogenesis. When employed for wound, ETN@Fe7S8 showed the ability to prevent infection, reduce inflammation, promote angiogenesis, enhance cell proliferation, and remodel keratinocytes. Along with the hemostatic effect, ETN@Fe7S8 thus performed comprehensive effects for wound healing in the whole recovery stages. Therefore, our findings provide a multifunctional candidate of ETN and nano-iron sulfide complex which is capable of regulating and promoting wound healing.

利用ETN@Fe7S8复合物积极调节多个程序化阶段,实现全面伤口愈合。
伤口愈合需要多个程序化阶段的协调进展,包括止血、感染控制、炎症消退、增殖和组织重塑。许多纳米材料已经显示出促进伤口愈合的巨大潜力,然而,它们中的大多数只涉及这些过程的部分方面,使得恢复很难有足够的效果。在这项研究中,我们制备了纳米硫化铁与红细胞模板纳米酶(ETN) (ETN@Fe7S8)的配合物,用于伤口的综合治疗。首先,ETN作为介质限制硫化铁在溶剂热反应中生成Fe7S8纳米复合材料;其次,ETN@Fe7S8通过释放亚铁铁和多硫化物诱导铁中毒样细胞死亡,对耐甲氧西林金黄色葡萄球菌(MRSA)具有杀菌作用。第三,亚铁和多硫化物通过抑制NF-κB信号通路的激活发挥抗炎作用,而多硫化物还通过促进血管内皮生长因子A (VEGFA)的激活,启动磷酸化介导的PI3K/AKT信号通路的激活,从而促进血管生成,PI3K/AKT信号通路是内皮细胞存活、迁移和血管生成的主要调控级联。当用于伤口时,ETN@Fe7S8显示出预防感染、减少炎症、促进血管生成、增强细胞增殖和重塑角化细胞的能力。与止血作用一起,ETN@Fe7S8在整个恢复阶段对伤口愈合有综合效果。因此,我们的研究结果提供了一种多功能的ETN和纳米硫化铁复合物,能够调节和促进伤口愈合。
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来源期刊
Journal of Nanobiotechnology
Journal of Nanobiotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
13.90
自引率
4.90%
发文量
493
审稿时长
16 weeks
期刊介绍: Journal of Nanobiotechnology is an open access peer-reviewed journal communicating scientific and technological advances in the fields of medicine and biology, with an emphasis in their interface with nanoscale sciences. The journal provides biomedical scientists and the international biotechnology business community with the latest developments in the growing field of Nanobiotechnology.
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