Anahita Izadyar Data-verified
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Associate Professor
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Biography and Research Information
OverviewAI-generated summary
Anahita Izadyar, an Associate Professor at Arkansas State University, researches the development and application of biosensors, particularly for glucose detection. Her work has focused on utilizing recombinant enzymes, such as Mn peroxidase from corn, in conjunction with electrochemical techniques to create sensitive detection platforms. She has published studies detailing the electrocatalytic effects of these enzymes and the construction of nanocomposite biosensors. Collaborations with Elizabeth E. Hood and My Ni Van have been significant in her publication record, with shared work on enzymatic biosensors. Izadyar's research also includes investigations into ion transfer across ionophore-based polymeric membranes using voltammetric methods. Her h-index is 14, with 24 total publications and 723 citations.
Metrics
- h-index: 14
- Publications: 24
- Citations: 731
Selected Publications
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Rapid and Sensitive Glucose Detection Using Recombinant Corn Mn Peroxidase and Advanced Voltammetric Methods (2025)
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Detection of Glucose Using Recombinant Corn Mn Peroxidase with Square Wave and Linear Sweep Voltammetry on Disposable Screen-Printed Electrodes (2025)
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Electrocatalytic effect of recombinant Mn peroxidase from corn on microbiosensors to detect glucose (2022)
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Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn (2022)
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A bienzymatic amperometric glucose biosensor based on using a novel recombinant Mn peroxidase from corn and glucose oxidase with a Nafion membrane (2021)
Collaboration Network
Top Collaborators
- A bienzymatic amperometric glucose biosensor based on using a novel recombinant Mn peroxidase from corn and glucose oxidase with a Nafion membrane
- Electrocatalytic effect of recombinant Mn peroxidase from corn on microbiosensors to detect glucose
- Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn
- Amperometric Biosensor for Glucose Determination Based on a Recombinant Mn Peroxidase from Corn Cross-linked to a Gold Electrode
- Detection of Glucose Using Recombinant Corn Mn Peroxidase with Square Wave and Linear Sweep Voltammetry on Disposable Screen-Printed Electrodes
Showing 5 of 6 shared publications
- A bienzymatic amperometric glucose biosensor based on using a novel recombinant Mn peroxidase from corn and glucose oxidase with a Nafion membrane
- Electrocatalytic effect of recombinant Mn peroxidase from corn on microbiosensors to detect glucose
- Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn
- Amperometric Biosensor for Glucose Determination Based on a Recombinant Mn Peroxidase from Corn Cross-linked to a Gold Electrode
- A bienzymatic amperometric glucose biosensor based on using a novel recombinant Mn peroxidase from corn and glucose oxidase with a Nafion membrane
- Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn
- Amperometric Biosensor for Glucose Determination Based on a Recombinant Mn Peroxidase from Corn Cross-linked to a Gold Electrode
- A bienzymatic amperometric glucose biosensor based on using a novel recombinant Mn peroxidase from corn and glucose oxidase with a Nafion membrane
- Amperometric Biosensor for Glucose Determination Based on a Recombinant Mn Peroxidase from Corn Cross-linked to a Gold Electrode
- Electrocatalytic effect of recombinant Mn peroxidase from corn on microbiosensors to detect glucose
- Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn
- Electrocatalytic effect of recombinant Mn peroxidase from corn on microbiosensors to detect glucose
- Development of a highly sensitive glucose nanocomposite biosensor based on recombinant enzyme from corn
- Detection of Glucose Using Recombinant Corn Mn Peroxidase with Square Wave and Linear Sweep Voltammetry on Disposable Screen-Printed Electrodes
- Rapid and Sensitive Glucose Detection Using Recombinant Corn Mn Peroxidase and Advanced Voltammetric Methods
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