1. A hydrogen generator composed of poly (lactic-co-glycolic acid) nanofibre membrane loaded iron nanoparticles for infectious diabetic wound repair.
- Author
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Zhang, Xiangqi, Yu, Wei, Zhang, Yihui, Zhang, Wenkai, Wang, Jiayu, Gu, Muge, Cheng, Sulin, Ren, Guogang, Zhao, Bo, and Yuan, Wei-En
- Subjects
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WOUND healing , *REACTIVE oxygen species , *HYDROGEN , *SKIN regeneration , *MATRIX metalloproteinases , *IRON - Abstract
Wound healing performance of sustained release of hydrogen from Fe@PLGA+CA dressing. [Display omitted] Diabetic wound, which is chronic skin disease, poses a significant challenge in clinical practice because of persistent inflammation and impaired angiogenesis. Recently, hydrogen has emerged as a novel therapeutic agent due to its superior antioxidant and anti-inflammatory properties. In this study, we engineered a poly (lactic- co -glycolic acid) (PLGA) electrospun nanofibre membrane loaded with citric acid (CA) and iron (Fe) nanoparticles, referred to as Fe@PLGA + CA. Our in vitro assays demonstrated that the Fe@PLGA + CA membrane continuously generated and released hydrogen molecules via a chemical reaction between Fe and CA in an acidic microenvironment created by CA. We also discovered that hydrogen can ameliorate fibroblast migration disorders by reducing the levels of matrix metalloproteinase 9 (MMP9). Furthermore, we confirmed that hydrogen can scavenge or biochemically neutralise accumulated reactive oxygen species (ROS), inhibit pro-inflammatory responses, and induce anti-inflammatory reactions. This, in turn, promotes vessel formation, wound-healing and accelerates skin regeneration. These findings open new possibilities for using elemental iron in skin dressings and bring us one step closer to implementing hydrogen-releasing biomedical materials in clinical practice. [ABSTRACT FROM AUTHOR]
- Published
- 2024
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