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Amperometric glucose biosensor based on biocompatible poly(dimethylaminoethyl) methacrylate microparticles
J P Hervás Pérez1, E López-Cabarcos, B López-Ruiz
1Sección Departamental de Química Analítica, Facultad de Farmacia, Universidad Complutense de Madrid, Ciudad Universitaria s/n, Madrid, Spain.
Talanta
|May 6, 2010
Summary
This study developed a glucose biosensor using glucose oxidase (GOx) immobilized in p-DMAEM microparticles. Optimized immobilization yielded a highly sensitive and stable biosensor for glucose detection in human serum.
Area of Science:
- Biochemistry
- Materials Science
- Analytical Chemistry
Background:
- Glucose oxidase (GOx) is crucial for glucose detection.
- Developing stable and sensitive biosensors remains a key challenge.
- Poly(dimethylamino) ethyl methacrylate (p-DMAEM) offers a promising matrix for enzyme immobilization.
Purpose of the Study:
- To immobilize glucose oxidase (GOx) within p-DMAEM microparticles for glucose biosensor fabrication.
- To optimize the immobilization process by varying monomer concentration and cross-linker content.
- To characterize the analytical performance and stability of the developed glucose biosensor.
Main Methods:
- Enzyme immobilization of GOx within p-DMAEM microparticles.
- Optimization of microparticle synthesis parameters (monomer concentration, cross-linker content).
- Characterization of biosensor performance (working potential, pH, temperature, enzyme loading, sensitivity, linear range, response time, detection limit).
Main Results:
- Optimized microparticles synthesized with 1.19M monomer and 0.37% cross-linker content showed the best biosensor response.
- Key analytical properties like sensitivity, linear range, and detection limit were determined.
- The biosensor demonstrated satisfactory performance in analyzing glucose in human serum samples.
- The biosensor exhibited a long useful lifetime of at least 520 days.
Conclusions:
- p-DMAEM microparticles provide an effective matrix for GOx immobilization, leading to a robust glucose biosensor.
- The developed biosensor offers high sensitivity, stability, and a long operational lifetime.
- This approach holds significant potential for accurate glucose monitoring in clinical diagnostics.
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