Nayak Malay, Kumar Vivek, Banerjee Durba, Pradhan Lipi, Kamath Prajwal, Mukherjee Sudip
School of Biomedical Engineering, IIT (BHU), Varanasi, 221005, UP, India.
J Mater Chem B. 2025 Jan 29;13(5):1690-1703. doi: 10.1039/d4tb01699h.
Wound healing can often be delayed due to non-favourable physiological conditions. Current treatment strategies have many limitations, and the development of novel therapeutic patches is urgently required. Herein, we have developed a hydrogel-based wound healing patch containing quercetin nanocrystals to enhance quercetin solubility, leading to sustained release and improved bioactivity. Due to the anti-oxidant properties of quercetin, a sustained release of the drug is highly beneficial for the rapid repair of wounds by reducing oxidative stress. Quercetin nanocrystals with a size of 600-800 nm were synthesized that demonstrated sustained release of quercetin when fabricated in a hydrogel patch. This has been utilized for wound repair in rat and mouse models of skin wounds. Overall, our study demonstrates the usability of a novel therapeutic hydrogel patch containing phytochemical-based nanocrystals for rapid wound healing applications.
由于生理条件不利,伤口愈合常常会延迟。目前的治疗策略存在许多局限性,因此迫切需要开发新型治疗贴剂。在此,我们开发了一种含有槲皮素纳米晶体的水凝胶基伤口愈合贴剂,以提高槲皮素的溶解度,实现持续释放并改善生物活性。由于槲皮素的抗氧化特性,药物的持续释放通过降低氧化应激对伤口的快速修复非常有益。合成了尺寸为600 - 800 nm的槲皮素纳米晶体,当将其制备在水凝胶贴剂中时,显示出槲皮素的持续释放。这已被用于大鼠和小鼠皮肤伤口模型的伤口修复。总体而言,我们的研究证明了一种含有植物化学基纳米晶体的新型治疗水凝胶贴剂在快速伤口愈合应用中的可用性。