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Wearable Vertical Graphene-Based Microneedle Biosensor for Real-Time Ketogenic Diet Management
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    Wearable Vertical Graphene-Based Microneedle Biosensor for Real-Time Ketogenic Diet Management
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    • Qiyu Wang
      Qiyu Wang
      School of Biomedical Engineering, Institute for Advanced Study, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, P. R. China
      More by Qiyu Wang
    • Qingzhou Liu*
      Qingzhou Liu
      Guangdong Laboratory of Artificial Intelligence and Digital Economy (SZ), Shenzhen University, Shenzhen 518060, China
      *[email protected]
      More by Qingzhou Liu
    • Geng Zhong
      Geng Zhong
      School of Biomedical Engineering, Institute for Advanced Study, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, P. R. China
      More by Geng Zhong
    • Tailin Xu*
      Tailin Xu
      School of Biomedical Engineering, Institute for Advanced Study, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, P. R. China
      *[email protected]
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    • Xueji Zhang
      Xueji Zhang
      School of Biomedical Engineering, Institute for Advanced Study, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, P. R. China
      More by Xueji Zhang
    Other Access OptionsSupporting Information (1)

    Analytical Chemistry

    Cite this: Anal. Chem. 2024, 96, 21, 8713–8720
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    https://doi.org/10.1021/acs.analchem.4c00960
    Published May 14, 2024
    Copyright © 2024 American Chemical Society

    Abstract

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    Ketogenic diets have attracted substantial interest in the treatment of chronic diseases, but there are health risks with long-term regimes. Despite the advancements in diagnostic and therapeutic methods in modern medicine, there is a huge gap in personalized health management of this dietary strategy. Hence, we present a wearable microneedle biosensor for real-time ketone and glucose monitoring. The microneedle array possesses excellent mechanical properties, allowing for consistent sampling of interstitial biomarkers while reducing the pain associated with skin puncture. Vertical graphene with outstanding electrical conductivity provides the resulting sensor with a high sensitivity of 234.18 μA mM–1 cm–2 and a low limit detection of 1.21 μM. When this fully integrated biosensor was used in human volunteers, it displayed an attractive analytical capability for tracking the dynamic metabolite levels. Moreover, the results of the on-body evaluation established a significant correlation with commercial blood measurements. Overall, this cost-effective and efficient sensing platform can accelerate the application of a ketogenic diet in personal nutrition and wellness management.

    Copyright © 2024 American Chemical Society

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    Supporting Information

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    • The CV response of TBO-mediated detection; element distribution characterizations of the vertical graphene-based electrode; morphology, dimensions, insertion performance, and material parameters of microneedle arrays; photograph and schematic diagram of the portable electrochemical workstation; on-body decentralized measurements of dual metabolites; electrochemical performances of vertical graphene-based biosensors in PBS. (PDF)

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    Analytical Chemistry

    Cite this: Anal. Chem. 2024, 96, 21, 8713–8720
    Click to copy citationCitation copied!
    https://doi.org/10.1021/acs.analchem.4c00960
    Published May 14, 2024
    Copyright © 2024 American Chemical Society

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