生物电子学
伤口愈合
伤口敷料
生物医学工程
纳米技术
药剂师
材料科学
杰纳斯
再生医学
杰纳斯粒子
生物相容性材料
细菌纤维素
光热治疗
再生(生物学)
生物相容性
伤口处理
人体皮肤
伤口护理
生物加工
人造皮肤
人类健康
作者
Jingwen Zhang,Zeqian Wang,Bingjie Mai,Shuyu Wang,Rui Liu,Zhe Jian,Ziwei Deng
标识
DOI:10.1002/adhm.202505931
摘要
Recent advancements in skin bioelectronics have significantly transformed personalized daily healthcare monitoring and wound management. Consequently, the development of advanced smart wound-dressing systems, such as bioelectronics-integrated wound dressings, has the potential to address numerous clinical challenges associated with effective wound management. Herein, we introduce a versatile Janus film composed of MXene@PEDOT:PSS and bacterial cellulose (designated as MPP/BC), developed as an innovative and adaptable bioelectronics-integrated wound dressing. This material is designed to enhance skin bioelectronics for health monitoring while facilitating accelerated wound healing. The resulting MPP/BC Janus film exhibits remarkable flexibility, high conductivity, photothermal sterilization capabilities, and excellent biocompatibility. These essential characteristics render it suitable for integration into a versatile epidermal sensor capable of real-time monitoring of various human physiological signals. Furthermore, this MPP/BC Janus film-based wound dressing demonstrates significant potential in enhancing therapeutic efficacy to promote wound healing by facilitating epithelial regeneration and increasing collagen deposition. Consequently, this study introduces a promising strategy for developing advanced smart wound-dressing systems aimed at accelerating and optimizing the wound healing process. This bioelectronics-integrated wound dressing holds significant potential for applications in skin bioelectronics, particularly in continuous health monitoring and intelligent wound management.
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