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Atomic Absorbance Spectroscopy to Measure Intracellular Zinc Pools in Mammalian Cells
Published on: May 16, 2019
Point-of-Care device for quantification of zinc in serum
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.
Abstract:
With 42,000 cases reported annually in the United States and an approximate 10% mortality rate, [1] pediatric septic shock is a major health problem that is often difficult to treat effectively. Several studies have shown that children experiencing pediatric septic shock often have critically low levels of serum zinc (Zn), suggesting supplementation of Zn to be an effective therapeutic strategy. However, to protect the safety and well-being of the patient, it is extremely important to monitor blood serum concentration of Zn during supplementation in order to ensure that levels remain at or near the physiological norm and thus minimize the risk of heavy metal toxicity from over supplementation. Current methods for quantifying Zn in serum typically require sending serum samples to external laboratory facilities resulting in turnaround times ranging from hours to a few days. Therefore, timely monitoring of Zn levels in serum is often not possible in the clinical setting which ultimately limits the ability to use Zn supplementation as a therapeutic intervention. This paper reports on the development of a Point-of-Care device for rapid electrochemical measurement of Zn in serum. The device is centered on a three electrode sensor which uses Anodic stripping voltammetry (ASV) for sensing Zn levels. The Cu based sensor is read using a reader that has been developed using commercially available embedded system parts in combination with custom analog circuitry that is able to produce quantification results in approximately 6 minutes.

