Injectable Chitosan–Methoxy Polyethylene Glycol Hybrid Hydrogel Untangling the Wound Healing Behavior: In Vitro and In Vivo Evaluation

壳聚糖 伤口愈合 聚乙二醇 止血 生物医学工程 自愈水凝胶 体内 PEG比率 伤口敷料 材料科学 化学 医学 外科 高分子化学 复合材料 有机化学 生物技术 生物 财务 经济
作者
Faheim Mushtaq,Madeeha Ashfaq,Fareeha Anwar,Badarqa Tul Ayesha,Hafiz Shahid Latif,Sadia Khalil,Hafiz Shoaib Sarwar,Muhammad Imran Khan,Muhammad Sohail,Iram Maqsood
出处
期刊:ACS omega [American Chemical Society]
被引量:2
标识
DOI:10.1021/acsomega.3c04346
摘要

Wound healing, particularly for difficult-to-treat wounds, presents a serious threat and may lead to complications. Currently available dressings lack mucoadhesion, safety, efficacy, and, most importantly, patient compliance. Herein, we developed a unique, simple, and inexpensive injectable chitosan–methoxy polyethylene glycol (chitosan–mPEG) hybrid hydrogel with tunable physicochemical and mechanical properties for wound healing. The detailed physicochemical and rheological characterization of the chitosan–mPEG hydrogel has revealed chemical interaction between available −NH2 groups of chitosan and −COOH groups of mPEG acid, which, to our perspective, enhanced the mechanical and wound healing properties of hybrid chitosan and mPEG hydrogel compared to solo chitosan or PEG hydrogel. By introducing mPEG, the wound healing ability of hydrogel is synergistically improved due to its antibacterial feature, together with chitosan’s innate role in hemostasis and wound closure. The detailed hemostasis and wound closure potential of the chitosan–mPEG hydrogel were investigated in a rat model, which confirmed a significant acceleration in wound healing and ultimately wound closure. In conclusion, the developed chitosan–mPEG hydrogel met all the required specifications and could be developed as a promising material for hemostasis, especially wound management, and as an excellent candidate for wound healing application.
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