Sweat‐Permeable, Microbiota‐Preserving, Mechanically Antibacterial Patch for Long‐Term Interfacing with Perspiring Skin

接口 材料科学 纳米技术 期限(时间) 皮肤屏障 皮肤病科 医学 计算机科学 物理 量子力学 计算机硬件
作者
Yujiao Wu,Xinyu Li,Peiying He,Jiarui Zou,Changgeng Zhuang,Xiaofeng Li,Qin Jin,Tao Peng,Xinlei Zhang,Dengwen Zheng,Feng Peng,Shuang He,Lieshuang Zhong,Kaiwei Tang,Xiufeng Wang
出处
期刊:Advanced Functional Materials [Wiley]
标识
DOI:10.1002/adfm.202416129
摘要

Abstract The prolonged health monitoring using wearable technology faces challenges stemming from perspiration, including bacterial proliferation, compromised adhesion, signal quality deterioration, and user discomfort. Notably, excessive sweat fosters bacterial colonization, escalating infection risks, and compromising biomarker analysis. Existing antibacterial approaches, unfortunately, risk disrupting the delicate balance of skin microbiota. To address this, a Janus patch featuring Zn‐Al layered double hydroxide (LDH) modification is developed, which exhibits sustained antibacterial properties while preserving the epidermal microecology. It integrates a hydrophilic LDH fabric that mechanically eradicates bacteria via a nanoknife effect, and a laser‐engraved medical adhesive with microholes for unidirectional sweat transport. This innovative design not only enhances adhesion stability but also safeguards the skin microbiome by preventing direct contact with Zn‐Al LDH. Moreover, the patch seamlessly interfaces with sweat‐monitoring technologies like microfluidic paper‐based analytical devices (uPADs) sensors, ensuring 100% antibacterial efficacy and efficient sweat redirection for reliable detection while prioritizing user comfort. It can serve as a durable bridge between perspiring skin and epidermal sensors, revolutionizing the realm of long‐term health monitoring.
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