Mushtaq Fizza, Ashfaq Madeeha, Anwar Fareeha, Ayesha Badarqa Tul, Latif Hafiz Shahid, Khalil Sadia, Sarwar Hafiz Shoaib, Khan Muhammad Imran, Sohail Muhammad Farhan, Maqsood Iram
Riphah International University (R.I.U.), Riphah Institute of Pharmaceutical Sciences (RIPS), Lahore, Punjab 54000, Pakistan.
Fatima Jinnah Medical University, Lahore 54000, Pakistan.
ACS Omega. 2023 Dec 29;9(2):2145-2160. doi: 10.1021/acsomega.3c04346. eCollection 2024 Jan 16.
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 -NH 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.
伤口愈合,尤其是对于难以治疗的伤口,是一个严重的威胁,可能会导致并发症。目前可用的敷料缺乏粘膜粘附性、安全性、有效性,最重要的是缺乏患者依从性。在此,我们开发了一种独特、简单且廉价的可注射壳聚糖-甲氧基聚乙二醇(壳聚糖-mPEG)杂化水凝胶,其具有可调节的物理化学和机械性能,用于伤口愈合。壳聚糖-mPEG水凝胶的详细物理化学和流变学表征揭示了壳聚糖的可用-NH基团与mPEG酸的-COOH基团之间的化学相互作用,在我们看来,与单独的壳聚糖或PEG水凝胶相比,这种相互作用增强了杂化壳聚糖和mPEG水凝胶的机械性能和伤口愈合性能。通过引入mPEG,水凝胶的伤口愈合能力由于其抗菌特性而协同提高,同时壳聚糖在止血和伤口闭合方面具有固有作用。在大鼠模型中研究了壳聚糖-mPEG水凝胶的详细止血和伤口闭合潜力,证实其显著加速了伤口愈合并最终实现了伤口闭合。总之,所开发的壳聚糖-mPEG水凝胶符合所有要求的规格,可开发成为一种有前途的止血材料,特别是伤口管理材料,也是伤口愈合应用的优秀候选材料。