A ROS/glucose stimulated-responsive ADSCs-derived exosomes-release hydrogel system for diabetic wound healing

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作者
Jing, Yuanxiang [2 ]
Huang, Ting [1 ]
Zhao, Bin [1 ]
Zhao, Li [3 ]
Zhang, Nannan [1 ]
Zhang, Kexin [1 ]
Wang, Keke [1 ]
Wang, Jinyi [1 ]
Hua, Jinlian [2 ]
Tu, Qin [1 ]
机构
[1] College of Chemistry & Pharmacy, Northwest A&F University, Shaanxi, Yangling,712100, China
[2] College of Veterinary Medicine, Northwest A&F University, Shaanxi, Yangling,712100, China
[3] The Hospital of NWAFU, Northwest A&F University, Shaanxi, Yangling,712100, China
关键词
The present study was supported by the Natural Science Foundation of Shaanxi Province of China (2023-JC-YB-131); the Youth Talent Promotion Program of Shaanxi University Association for Science and Technology (20210208); the National Natural Science Foundation of China (22174109); and the Northwest A & F University. Yuanxiang Jingb; 1; Ting Huanga; and Bin Zhao a; 1 contributed equally to this work.The present study was supported by the Natural Science Foundation of Shaanxi Province of China ( 2023-JC-YB-131; 2022JM-545; the Youth Talent Promotion Program of Shaanxi University Association for Science and Technology ( 20210208 ); the National Natural Science Foundation of China ( 21505105 ); and the Northwest A & F University . Yuanxiang Jing b; Ting Huang a; 1 contributed equally to this work;
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摘要
With numerous attempts at chronic wound healing in recent years, significant challenges pertaining to diabetic wound healing have arisen. These challenges result from excessive oxidative stress, vulnerability to bacterial infection, and persistent inflammation during the healing process. In response to the lack of a specific exosomes-sustained release system tailored for diabetic wounds, a reactive oxygen species (ROS)/glucose dual-responsive stimulated exosomes-released self-healing antibacterial antioxidant conductive multifunctional hydrogel has been developed, utilizing a simplistic one-pot method. This innovative hydrogel is constructed from a harmonious blend of polydopamine grafted MXene (PMX), chlorogenic acid (CA), L-ascorbate-2-phosphate trisodium slat (L), and adipose-derived stem cells (ADSCs) derived exosomes (E) with phenylboronic acid modified flaxseed gum (LG-PBA), chemically cross-linked with polyvinyl alcohol (PVA) to generate dynamic phenylboronate ester bond, to obtain P-LP-PMX-CA-L@E hydrogel. It was further demonstrated that the ROS/glucose-responsive exosomes-released P-LP-PMX-CA-L@E hydrogel integrated system could reduce ROS and inflammatory response by repairing the electron transfer chain, thereby facilitating skin damage repair in a mouse type I diabetic model. In conclusion, the multifunctional P-LP-PMX-CA-L@E hydrogel, endowed with stimuli-responsive exosomes release capability, exhibits a promoting effect on the healing of chronic diabetic wounds and offers a localized exosomes dual-response release strategy for the treatment of type I diabetic wounds. © 2024 Elsevier B.V.
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