TY - JOUR
T1 - Permeable Liquid Metal-Based Fibrous Patch with Dual-Bond Interconnects for Reliable Sensing and Closed-Loop Wound Care
AU - Tan, Shenxing
AU - Jiang, Yang
AU - Cao, Jinwei
AU - Chen, Wenting
AU - Cai, Wei
AU - Ge, Xueyang
AU - Hou, Lin
AU - Shi, Xuewen
AU - Yan, Ren
AU - Sun, Qizeng
AU - Sun, Wenwu
AU - Wang, Xiuyue
AU - Xu, Tianmin
AU - Li, Run Wei
AU - Liang, Fei
AU - Yu, Hai Dong
N1 - Publisher Copyright:
© 2026 American Chemical Society
PY - 2026/6/16
Y1 - 2026/6/16
N2 - Effective management of infected wounds demands biocompatible and breathable dressings capable of real-time monitoring and autonomous therapeutic regulation, which conventional passive dressings fail to provide. Here, we present a permeable liquid metal (LM)-based fibrous patch (LMFP) that integrates closed-loop temperature–humidity monitoring with on-demand photothermal antibacterial therapy. The LM mechanoelectrical dual-bond interconnects, achieved through graphene oxide (GO) and its oxygen-containing groups, establish a stable and conductive LM–sensor coupling that ensures precise temperature–humidity sensing under humid, dynamic wound environments. Comprehensive in vitro and in vivo evaluations demonstrate its validity of wound monitoring, accelerated healing, and intelligent closed-loop wound management. This work introduces a next-generation intelligent wound patch integrating breathable architecture, adaptive sensing, and responsive therapy, offering substantial advantages for enhanced infection control and tissue regeneration in sensitive and vulnerable skin environments.
AB - Effective management of infected wounds demands biocompatible and breathable dressings capable of real-time monitoring and autonomous therapeutic regulation, which conventional passive dressings fail to provide. Here, we present a permeable liquid metal (LM)-based fibrous patch (LMFP) that integrates closed-loop temperature–humidity monitoring with on-demand photothermal antibacterial therapy. The LM mechanoelectrical dual-bond interconnects, achieved through graphene oxide (GO) and its oxygen-containing groups, establish a stable and conductive LM–sensor coupling that ensures precise temperature–humidity sensing under humid, dynamic wound environments. Comprehensive in vitro and in vivo evaluations demonstrate its validity of wound monitoring, accelerated healing, and intelligent closed-loop wound management. This work introduces a next-generation intelligent wound patch integrating breathable architecture, adaptive sensing, and responsive therapy, offering substantial advantages for enhanced infection control and tissue regeneration in sensitive and vulnerable skin environments.
KW - dual-bond interconnects
KW - liquid metal
KW - photothermal therapy
KW - temperature and humidity sensors
KW - wireless closed-loop control
UR - https://www.scopus.com/pages/publications/105041992112
U2 - 10.1021/acsnano.6c01802
DO - 10.1021/acsnano.6c01802
M3 - 文章
AN - SCOPUS:105041992112
SN - 1936-0851
VL - 20
SP - 16714
EP - 16729
JO - ACS Nano
JF - ACS Nano
IS - 23
ER -