Insights

Pediatric septic shock patients often have low serum zinc (Zn) levels. A new point-of-care device enables rapid electrochemical measurement of Zn in serum, aiding therapeutic monitoring.

Area of Science:

  • Biomedical Engineering
  • Clinical Chemistry
  • Pediatric Critical Care

Background:

  • Pediatric septic shock is a significant health concern with a high mortality rate.
  • Low serum zinc (Zn) levels are common in pediatric septic shock, suggesting supplementation as a potential therapy.
  • Current methods for serum Zn monitoring are time-consuming, limiting therapeutic application.

Purpose of the Study:

  • To develop a rapid, point-of-care (POC) device for electrochemical measurement of serum zinc (Zn).
  • To enable timely monitoring of Zn levels for safe and effective supplementation in pediatric septic shock patients.

Main Methods:

  • Development of a novel three-electrode electrochemical sensor based on copper (Cu).
  • Utilized Anodic Stripping Voltammetry (ASV) for sensitive Zn detection.
  • Integrated the sensor with a custom-built reader using embedded systems and analog circuitry.

Main Results:

  • The POC device provides quantitative results for serum Zn levels in approximately 6 minutes.
  • The developed electrochemical sensor demonstrates potential for rapid and accurate Zn quantification.
  • This technology facilitates timely clinical decisions regarding Zn supplementation.

Conclusions:

  • The developed point-of-care device offers a rapid solution for monitoring serum zinc levels.
  • This innovation can improve the clinical management of pediatric septic shock by enabling timely Zn supplementation.
  • Real-time Zn monitoring minimizes risks associated with heavy metal toxicity from over-supplementation.

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