Niu Yan, Zhao Ziyao, Yang Lihong, Lv Dan, Sun Rui, Zhang Ting, Li Yuhan, Bao Qianqian, Zhang Mingqing, Wang Lanzhong, Yan Wei, Han Fei, Yan Biwei
Key Laboratory of Agricultural Microbiology in Gansu Province, College of Bioengineering and Biotechnology, Tianshui Normal University, Tianshui 741000, China.
The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
Polymers (Basel). 2025 Jul 6;17(13):1881. doi: 10.3390/polym17131881.
Chronic wounds present clinical challenges due to persistent inflammation, infection, and dysregulated tissue repair, often exacerbated by the passive nature of conventional wound dressings. Recent advancements in hydrogel-based wearable technologies have transformed these biomaterials into multifunctional platforms capable of integrating real-time monitoring and targeted therapy, ushering in a new era of intelligent wound care. In this review, we show innovative diagnostic and therapeutic strategies, including wound-monitoring devices and multifunctional healing-promoted platforms, highlighting integrated closed-loop systems that dynamically adapt treatments to wound microenvironments, thus merging diagnostics and therapeutics. Challenges in fabrication engineering and clinical application are discussed, alongside emerging trends like AI-driven analytics and 3D-bioprinted technology. By bridging fragmented research, this work underscores the potential of hydrogels to enable intelligent wound management.
慢性伤口由于持续的炎症、感染和组织修复失调而带来临床挑战,传统伤口敷料的被动性质往往会加剧这些问题。基于水凝胶的可穿戴技术的最新进展已将这些生物材料转变为能够集成实时监测和靶向治疗的多功能平台,开创了智能伤口护理的新时代。在这篇综述中,我们展示了创新的诊断和治疗策略,包括伤口监测设备和多功能促进愈合平台,重点介绍了能够根据伤口微环境动态调整治疗方案的集成闭环系统,从而将诊断和治疗相结合。文中还讨论了制造工程和临床应用方面的挑战,以及人工智能驱动的分析和3D生物打印技术等新兴趋势。通过整合零散的研究,这项工作强调了水凝胶在实现智能伤口管理方面的潜力。