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Electroanalysis of Infection with Methyl Pyruvate
Michael Bekhit1, Waldemar Gorski1
1Department of Chemistry , University of Texas at San Antonio , One UTSA Circle , San Antonio , Texas 78249 , United States.
A new electroanalytical method detects leukocyte esterase (LE) in human biofluids using methyl pyruvate and alcohol oxidase. This rapid assay offers a less laborious alternative to ELISA for LE quantification.
Area of Science:
- Electrochemistry
- Biochemistry
- Analytical Chemistry
Background:
- Leukocyte esterase (LE) is an infection enzyme relevant in human biofluids.
- Existing methods for LE detection, like ELISA, can be time-consuming and laborious.
Purpose of the Study:
- To develop a novel electroanalytical method for quantifying leukocyte esterase (LE) in human biofluids.
- To couple the LE-catalyzed hydrolysis of methyl pyruvate (MP) with an electrochemical detection system.
- To establish kinetic and analytical parameters for the developed method.
Main Methods:
- Coupling LE + MP reaction with alcohol oxidase to produce hydrogen peroxide.
- Electrochemical reduction of hydrogen peroxide at a nitrogen-doped carbon nanotube electrode.
- Kinetic analysis using turnover rate (kcat) and specificity constant (kcat/Km).
- Immuno-electroanalysis using immunosorption with internally calibrated amperometry.
Main Results:
- The method demonstrated fast enzyme kinetics with kcat = 15 s−1 and kcat/Km = 2.3 × 10^6 M−1 s−1.
- Analytical assays were rapid (5 min) with LE quantification in the clinically relevant range (22–300 μg L−1).
- Immuno-electroanalysis detected picomole quantities of LE, showing matrix independence and high spike-and-recovery rates (99–104%).
- Reduced incubation time from 4 h (ELISA) to 30 min (immuno-electroanalysis).
Conclusions:
- The developed electroanalytical method provides a sensitive, rapid, and less laborious approach for LE detection in biofluids.
- The method exhibits excellent kinetic properties and analytical performance, suitable for clinical relevance.
- The proposed immunosorption and amperometry combination is versatile for determining other enzymes forming active immune complexes.
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