A skin-interfaced microfluidic platform supports dynamic sweat biochemical analysis during human exercise

  • Cho, Soongwon; 
  • Shaban, Samy M.; 
  • Song, Ruihao; 
  • Zhang, Haohui; 
  • Yang, Dasom; 
  • 외 23명
Citations

WEB OF SCIENCE

65
Citations

SCOPUS

60

초록

Blood lactate concentration is an established circulating biomarker for measuring muscle acidity and can be evaluated for monitoring endurance, training routines, or athletic performance. Sweat is an alternative biofluid that may serve similar purposes and offers the advantage of noninvasive collection and continuous monitoring. The relationship between blood lactate and dynamic sweat biochemistry for wearable engineering applications in physiological fitness remains poorly defined. Here, we developed a microfluidic wearable band with an integrated colorimetric timer and biochemical assays that temporally captures sweat and measures pH and lactate concentration. A colorimetric silver nanoplasmonic assay was used to measure the concentration of lactate, and dye-conjugated SiO2 nanoparticle-agarose composite materials supported dynamic pH analysis. We evaluated these sweat biomarkers in relation to blood lactate in human participant studies during cycling exercise of varying intensity. Iontophoresis-generated sweat pH from regions of actively working muscles decreased with increasing heart rate during exercise and was negatively correlated with blood lactate concentration. In contrast, sweat pH from nonworking muscles did not correlate with blood lactate concentration. Changes in sweat pH and blood lactate were observed in participants who did not regularly exercise but not in individuals who regularly exercised, suggesting a relationship to physical fitness and supporting further development for noninvasive, biochemical fitness evaluations.

키워드

Agarose; Maltodextrin; Polyethylene Terephthalate; Lactic Acid; Biomarkers; Lactic Acid; Bruker Neo 600; Emo 80; Eos 6d; Gear 4 250xl Upright Bike; Lactate Pro 2 Lt 1730; Origin Pro Version 2022; Agarose; Biological Marker; Maltodextrin; Polyethylene Terephthalate; Silica Nanoparticle; Lactic Acid; Article; Athlete; Athletic Performance; Bicycle Exercise Test; Bioassay; Biochemical Analysis; Biochemistry; Chemical Composition; Colorimetry; Correlation Analysis; Correlation Coefficient; Dynamics; Energy Dispersive X Ray Spectroscopy; Engineering; Exercise; Finite Element Analysis; Fitness; Fluorescence Imaging; Heart Rate; Human; Human Experiment; Image Processing; Iontophoresis; Lactate Blood Level; Microfluidic Analysis; Microfluidics; Monitoring; Muscle Contraction; Nanofabrication; Non Invasive Procedure; Normal Human; Nuclear Magnetic Resonance; Nuclear Magnetic Resonance Spectroscopy; Ph; Photography; Physiological Fitness; Physiology; Sample Size; Scanning Electron Microscopy; Silver Nanoplasmonic Assay; Skin Irritation; Sweat; Training; Ultrasound; Ultraviolet Visible Spectroscopy; Wearable Engineering; Adult; Blood; Chemistry; Female; Male; Metabolism; Procedures; Skin; Wearable Computer; Adult; Biomarkers; Exercise; Female; Humans; Hydrogen-ion Concentration; Lactic Acid; Male; Microfluidics; Skin; Sweat; Wearable Electronic Devices; HYDROGEN-PEROXIDE; LACTATE; PH; MUSCLE; IODINE; THERMODYNAMICS; AGGREGATION; AMYLOSE; SENSORS; BLOOD
제목
A skin-interfaced microfluidic platform supports dynamic sweat biochemical analysis during human exercise
저자
Cho, Soongwon; Shaban, Samy M.; Song, Ruihao; Zhang, Haohui; Yang, Dasom; Kim, Min-Jae; Xiong, Yirui; Li, Xiuyuan; Madsen, Kenneth; Wapnick, Sarena; Zhang, Shifan; Chen, Ziyu; Kim, Jiwon; Guinto, Gianna; Li, Michelle; Lee, Minkyu; Nuxoll, Ravi F.; Shajari, Shaghayegh; Wang, Jin; Son, Seongeun; Shin, Jihoon; Aranyosi, Alexander J.; Wright, Donald E.; Kim, Tae-Il; Ghaffari, Roozbeh; Huang, Yonggang; Kim, Dong-Hwan; Rogers, John A.
DOI
10.1126/scitranslmed.ado5366
발행일
2024-09
유형
Article
저널명
Science Translational Medicine
권
16
호
763