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Engineered Glucose Oxidase Capable of Quasi-Direct Electron Transfer after a Quick-and-Easy Modification with a Mediator. | LitMetric

AI Article Synopsis

  • Glucose oxidase (GOx) is commonly used to monitor blood sugar levels due to its effectiveness and specificity for glucose, but it struggles with direct electron transfer (DET), which is crucial for precise measurements in third-generation sensors.
  • Researchers created an engineered version of GOx that allows for easy modification with a redox mediator called phenazine ethosulfate (PES), enabling a quasi-DET response when glucose is added.
  • The findings from this study aim to enhance glucose monitoring technologies for better management of glycemic levels in diabetes care.

Article Abstract

Glucose oxidase (GOx) has been widely utilized for monitoring glycemic levels due to its availability, high activity, and specificity toward glucose. Among the three generations of electrochemical glucose sensor principles, direct electron transfer (DET)-based third-generation sensors are considered the ideal principle since the measurements can be carried out in the absence of a free redox mediator in the solution without the impact of oxygen and at a low enough potential for amperometric measurement to avoid the effect of electrochemically active interferences. However, natural GOx is not capable of DET. Therefore, a simple and rapid strategy to create DET-capable GOx is desired. In this study, we designed engineered GOx, which was made readily available for single-step modification with a redox mediator (phenazine ethosulfate, PES) on its surface via a lysine residue rationally introduced into the enzyme. Thus, PES-modified engineered GOx showed a quasi-DET response upon the addition of glucose. This strategy and the obtained results will contribute to the further development of quasi-DET GOx-based glucose monitoring dedicated to precise and accurate glycemic control for diabetic patient care.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7036908PMC
http://dx.doi.org/10.3390/ijms21031137DOI Listing

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