Duan Haowei, Peng Shuhua, He Shuai, Tang Shi-Yang, Goda Keisuke, Wang Chun H, Li Ming
School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney, NSW, 2052, Australia.
Department of Chemistry, The University of Tokyo, Tokyo, 113-0033, Japan.
Adv Sci (Weinh). 2025 Jan;12(2):e2411433. doi: 10.1002/advs.202411433. Epub 2024 Nov 26.
Recent advancements in wearable electrochemical biosensors have opened new avenues for on-body and continuous detection of biomarkers, enabling personalized, real-time, and preventive healthcare. While glucose monitoring has set a precedent for wearable biosensors, the field is rapidly expanding to include a wider range of analytes crucial for disease diagnosis, treatment, and management. In this review, recent key innovations are examined in the design and manufacturing underpinning these biosensing platforms including biorecognition elements, signal transduction methods, electrode and substrate materials, and fabrication techniques. The applications of these biosensors are then highlighted in detecting a variety of biochemical markers, such as small molecules, hormones, drugs, and macromolecules, in biofluids including interstitial fluid, sweat, wound exudate, saliva, and tears. Additionally, the review also covers recent advances in wearable electrochemical biosensing platforms, such as multi-sensory integration, closed-loop control, and power supply. Furthermore, the challenges associated with critical issues are discussed, such as biocompatibility, biofouling, and sensor degradation, and the opportunities in materials science, nanotechnology, and artificial intelligence to overcome these limitations.
可穿戴电化学生物传感器的最新进展为生物标志物的体表连续检测开辟了新途径,实现了个性化、实时和预防性医疗保健。虽然血糖监测为可穿戴生物传感器树立了先例,但该领域正在迅速扩展,以涵盖对疾病诊断、治疗和管理至关重要的更广泛分析物。在本综述中,将研究这些生物传感平台在设计和制造方面的近期关键创新,包括生物识别元件、信号转导方法、电极和基底材料以及制造技术。然后重点介绍这些生物传感器在检测生物流体(包括组织间液、汗液、伤口渗出液、唾液和眼泪)中的各种生化标志物(如小分子、激素、药物和大分子)方面的应用。此外,该综述还涵盖了可穿戴电化学生物传感平台的最新进展,如多感官集成、闭环控制和电源。此外,还讨论了与关键问题相关的挑战,如生物相容性、生物污垢和传感器降解,以及材料科学、纳米技术和人工智能克服这些限制的机遇。