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August 15, 2025ACS Omega6 citationsOpen Access

Dual Detection of Glucose Using Commercial Potassium Permanganate and Glucose Oxidase: Colorimetric and Absorbance-Based Approaches

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CHChau Nguyen Minh HoangSNSon Hai NguyenMTMai Thi Tran

Key Points

  • The dual-mode glucose sensor achieves a low detection limit of 0.63 mM, enhancing its practical applicability for health monitoring.
  • Recovery rates of glucose in spiked solutions ranged from 84.8% to 104.8%, underscoring the sensor's reliability in various environments.
  • The platform utilizes both colorimetric analysis and absorbance measurement at 400 nm, providing a simple yet effective detection method.
  • High specificity minimizes interference from sugars and acids, showcasing its utility in clinical diagnostics and portable devices.

Abstract

Accurate and accessible glucose detection is essential for clinical diagnostics, point-of-care testing, food safety, and biosensing applications. In this study, we present a simple, scalable, and dual-mode glucose sensor that integrates commercial potassium permanganate (KMnO4) with glucose oxidase to enable sensitive and selective detection in the clinically critical range of 1–5 mM. Leveraging the strong oxidative power and distinct optical characteristics of KMnO4, the sensor operates via both absorbance measurement at 400 nm and visual colorimetric analysis, displaying a clear color change from purple to pink and yellow upon reaction with glucose. The system achieves a low detection limit of 0.63 mM and demonstrates high specificity, effectively minimizing interference from substances such as maltose, sucrose, galactose, citric acid, thiourea, and uric acid. Recovery rates ranging from 84.8% to 104.8% in glucose-spiked solutions and up to 99.6% in artificial saliva validate its reliability and practical applicability. By combining colorimetric simplicity with quantitative absorbance measurements, this platform provides an efficient, eco-friendly, and cost-effective solution for glucose monitoring with strong potential for integration into disposable test strips, portable devices, and wearable biosensors for real-time health tracking.

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Cite This Study

Hoang et al. (2025) studied this question.

synapsesocial.com/papers/68af50a1ad7bf08b1ead8ae3https://doi.org/10.1021/acsomega.5c03564
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