http://scholars.ntou.edu.tw/handle/123456789/26803| 標題: | Plasma-engineered chitosan couples red-light bioenergetics to diabetic wound regeneration through programmable microenvironments | 作者: | Rethi, Lekshmi Chau, Hoa Duc Febriani, Erlina Chen, Yan-Ting Tung, Szu-Yu Jheng, Pei-Ru Tseng, Yu-Wen Li, Rou Tsai, Min-Lang Chang, Chun-Chi Pham, Van Khiet Nguyen, Hieu Trung Chuang, Andrew E. -Y. |
關鍵字: | Chitosan;Cold atmospheric plasma;Microalgae;Diabetic wound;Bioenergetics;Mitophagy | 公開日期: | 2026 | 出版社: | ELSEVIER SCI LTD | 卷: | 388 | 起(迄)頁: | 14 | 來源出版物: | CARBOHYDRATE POLYMERS | 摘要: | Diabetic wounds remain trapped in a non-healing loop driven by oxidative stress, impaired bioenergetics, and persistent inflammation. Here, we report a cold atmospheric plasma (CAP)-engineered chitosan-microalgae (CS-CHL) photobioactive dressing that converts a carbohydrate matrix into a programmable photosynthetic interface for wearable 660-nm activation. CAP remodeled the CS microenvironment in a duration-dependent manner, as verified by FTIR/XRD/NMR, and yielded a distinct optimum at 30 s with the most favorable polymer reorganization and coupling to CHL. This just-right" window tuned photochemical branching under red light showing the strongest oxygen-sensitive response as reflected by the lowest O-2 quenching index (similar to 66.3% indicating the greatest probe quenching and thus higher O-2 availability) while simultaneously enhancing reductive bioenergetic outputs including hydrogen production (similar to 117.6%) and MPP-Production (similar to 116.4%) accompanied by the strongest light-responsive electrochemical signal. In an STZ-induced diabetic full-thickness wound model CS-CHL + 660 nm accelerated macroscopic wound closure versus wound-only and CS controls while systemic hematological indices remained comparable across groups. Mechanistic tissue profiling further supported coordinated inflammation suppression angiogenic/regenerative recovery ROS reduction mitochondrial functional restoration and activation of mitophagy/autophagy-associated pathways. Collectively CAP-tuned carbohydrate microenvironments provide a powerful route to program microalgal photobioenergetics and enable light-assisted diabetic wound repair." |
URI: | http://scholars.ntou.edu.tw/handle/123456789/26803 | ISSN: | 0144-8617 | DOI: | 10.1016/j.carbpol.2026.125521 |
| 顯示於: | 食品科學系 |
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