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A wearable electrochemical biosensor for the monitoring of metabolites and nutrients

  • Minqiang Wang
  • , Yiran Yang
  • , Jihong Min
  • , Yu Song
  • , Jiaobing Tu
  • , Daniel Mukasa
  • , Cui Ye
  • , Changhao Xu
  • , Nicole Heflin
  • , Jeannine S. McCune
  • , Tzung K. Hsiai
  • , Zhaoping Li
  • , Wei Gao*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

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. © 2022, The Author(s), under exclusive licence to Springer Nature Limited.
Original languageEnglish
Pages (from-to)1225-1235
JournalNature Biomedical Engineering
Volume6
Issue number11
Online published15 Aug 2022
DOIs
Publication statusPublished - Nov 2022
Externally publishedYes

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