Andrew and Peggy Cherng Department of Medical Engineering, Division of Engineering and Applied Science, California Institute of Technology, Pasadena, CA, USA.
Department of Applied Physics and Materials Science, Division of Engineering and Applied Science, California Institute of Technology, Pasadena, CA, USA.
Nat Biomed Eng. 2022 Nov;6(11):1225-1235. doi: 10.1038/s41551-022-00916-z. Epub 2022 Aug 15.
Wearable non-invasive biosensors for the continuous monitoring of metabolites in sweat can detect a few analytes at sufficiently high concentrations, typically during vigorous exercise so as to generate sufficient quantity of the biofluid. Here we report the design and performance of a wearable electrochemical biosensor for the continuous analysis, in sweat during physical exercise and at rest, of trace levels of multiple metabolites and nutrients, including all essential amino acids and vitamins. The biosensor consists of graphene electrodes that can be repeatedly regenerated in situ, functionalized with metabolite-specific antibody-like molecularly imprinted polymers and redox-active reporter nanoparticles, and integrated with modules for iontophoresis-based sweat induction, microfluidic sweat sampling, signal processing and calibration, and wireless communication. In volunteers, the biosensor enabled the real-time monitoring of the intake of amino acids and their levels during physical exercise, as well as the assessment of the risk of metabolic syndrome (by correlating amino acid levels in serum and sweat). The monitoring of metabolites for the early identification of abnormal health conditions could facilitate applications in precision nutrition.
可穿戴式无创生物传感器可用于连续监测汗液中的代谢物,能以足够高的浓度检测少数分析物,通常是在剧烈运动时,以产生足够数量的生物流体。在这里,我们报告了一种可穿戴式电化学生物传感器的设计和性能,该传感器可在运动和休息时连续分析汗液中的痕量多种代谢物和营养素,包括所有必需氨基酸和维生素。该生物传感器由石墨烯电极组成,这些电极可以在现场重复再生,功能化有代谢物特异性抗体样分子印迹聚合物和氧化还原活性报告纳米粒子,并与基于电渗流的汗液诱导、微流控汗液采样、信号处理和校准以及无线通信模块集成在一起。在志愿者中,该生物传感器能够实时监测氨基酸的摄入及其在运动过程中的水平,以及评估代谢综合征的风险(通过相关的氨基酸水平在血清和汗液)。代谢物的监测有助于早期发现异常健康状况,可应用于精准营养。