Electrochemical Biosensors Based on Enzyme Inhibition Effect.
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[1] Jingrong Li,et al. Recent advances in enzyme inhibition based-electrochemical biosensors for pharmaceutical and environmental analysis , 2023, Talanta.
[2] R. Worden,et al. Electrochemical Biosensor for Markers of Neurological Esterase Inhibition , 2021, Biosensors.
[3] S. Dzyadevych,et al. Enzyme biosensor based on pH‐sensitive field‐effect transistors for assessment of total indole alkaloids content in tissue culture of Rauwolfia serpentina , 2021, Electrochemical Science Advances.
[4] A. Khosla,et al. Recent Advances in Electrochemical Biosensors: Applications, Challenges, and Future Scope , 2021, Biosensors.
[5] S. Kurbanoglu,et al. Fabrication of poly(3,4-ethylenedioxythiophene)-iridium oxide nanocomposite based Tyrosinase biosensor for the dual detection of catechol and azinphos methyl , 2020 .
[6] B. Casetta,et al. Enzyme-Based Electrochemical Biosensor for Therapeutic Drug Monitoring of Anticancer Drug Irinotecan. , 2018, Analytical chemistry.
[7] Aziz Amine,et al. Recent Advances in Electrochemical Biosensors Based on Enzyme Inhibition for Clinical and Pharmaceutical Applications , 2018, Sensors.
[8] David K. Daniel,et al. Progress in enzyme inhibition based detection of pesticides , 2018, Engineering in life sciences.
[9] A. El'skaya,et al. Conductometric enzyme biosensor for patulin determination , 2017 .
[10] M. Ananth,et al. Basal Forebrain Cholinergic Circuits and Signaling in Cognition and Cognitive Decline , 2016, Neuron.
[11] Fabio Mavelli,et al. Enzymatic reactions in confined environments. , 2016, Nature nanotechnology.
[12] G. Palleschi,et al. Recent advances in biosensors based on enzyme inhibition. , 2016, Biosensors & bioelectronics.
[13] N. Jaffrezic‐Renault,et al. Development of novel enzyme potentiometric biosensor based on pH-sensitive field-effect transistors for aflatoxin B1 analysis in real samples. , 2015, Talanta.
[14] Nishant Verma,et al. Alkaline phosphatase inhibition based conductometric biosensor for phosphate estimation in biological fluids. , 2015, Biosensors & bioelectronics.
[15] O. Lockridge. Review of human butyrylcholinesterase structure, function, genetic variants, history of use in the clinic, and potential therapeutic uses. , 2015, Pharmacology & therapeutics.
[16] A. Soldatkin,et al. Feasibility of application of conductometric biosensor based on acetylcholinesterase for the inhibitory analysis of toxic compounds of different nature. , 2015, Analytica chimica acta.
[17] N. Jaffrezic‐Renault,et al. Bi-Enzymatic Conductometric Biosensor for Detection of Heavy Metal Ions and Pesticides in Water Samples Based on Enzymatic Inhibition in Arthrospira platensis , 2014 .
[18] B. Akata,et al. Urease-based ISFET biosensor for arginine determination. , 2014, Talanta.
[19] A. Soldatkin,et al. Acetylcholinesterase-based conductometric biosensor for determination of aflatoxin B1 , 2013 .
[20] A. Soldatkin,et al. Biosensors. A quarter of a century of R&D experience , 2013 .
[21] A. Soldatkin,et al. A novel biosensor method for surfactant determination based on acetylcholinesterase inhibition , 2012 .
[22] N. Jaffrezic‐Renault,et al. Novel conductometric biosensor based on three-enzyme system for selective determination of heavy metal ions. , 2012, Bioelectrochemistry.
[23] S. Dzyadevych,et al. Investigation of Stability of the pH-Sensitive Field-Effect Transistor Characteristics , 2011 .
[24] G. Bottegoni,et al. Irreversible protein kinase inhibitors. , 2011, Current medicinal chemistry.
[25] J. Sussman,et al. Acetylcholinesterase: from 3D structure to function. , 2010, Chemico-biological interactions.
[26] Danila Moscone,et al. Biosensors based on cholinesterase inhibition for insecticides, nerve agents and aflatoxin B1 detection (review) , 2010 .
[27] Danila Moscone,et al. Reversible Enzyme Inhibition–Based Biosensors: Applications and Analytical Improvement Through Diagnostic Inhibition , 2009 .
[28] A. L. Kukla,et al. СЕНСОРНІ МАСИВИ НА ОСНОВІ ДИФЕРЕНЦІЙНИХ ІСПТ-ЕЛЕМЕНТІВ ДЛЯ МОНІТОРИНГУ ТОКСИЧНИХ РЕЧОВИН ПРИРОДНОГО ТА ШТУЧНОГО ПОХОДЖЕННЯ , 2008 .
[29] Antonio Turco,et al. Inhibitive determination of metal ions by an amperometric glucose oxidase biosensor: Study of the effect of hydrogen peroxide decomposition , 2008 .
[30] J. Vörös,et al. Electrochemical Biosensors - Sensor Principles and Architectures , 2008, Sensors.
[31] N. Jaffrezic‐Renault,et al. Kinetics of human and horse sera cholinesterases inhibition with solanaceous glycoalkaloids: Study by potentiometric biosensor , 2006 .
[32] N. Jaffrezic‐Renault,et al. Enzyme biosensors based on ion-selective field-effect transistors. , 2006, Analytica chimica acta.
[33] S. Dzyadevych,et al. Detection of toxic compounds in real water samples using a conductometric tyrosinase biosensor , 2006 .
[34] G. Palleschi,et al. Enzyme inhibition-based biosensors for food safety and environmental monitoring. , 2006, Biosensors & bioelectronics.
[35] Claude Durrieu,et al. A bi-enzymatic whole cell conductometric biosensor for heavy metal ions and pesticides detection in water samples. , 2005, Biosensors & bioelectronics.
[36] Nicole Jaffrezic-Renault,et al. Analysis of the potato glycoalkaloids by using of enzyme biosensor based on pH-ISFETs. , 2005, Talanta.
[37] N. Jaffrezic‐Renault,et al. Potentiometric Biosensors Based on ISFETs and Immobilized Cholinesterases , 2004 .
[38] N. Jaffrezic‐Renault,et al. Application of enzyme field effect transistors for fast detection of total glycoalkaloids content in potatoes , 2004 .
[39] S. Dzyadevych,et al. Conductometric tyrosinase biosensor for the detection of diuron, atrazine and its main metabolites. , 2004, Talanta.
[40] Claude Durrieu,et al. Development of novel conductometric biosensors based on immobilised whole cell Chlorella vulgaris microalgae. , 2004, Biosensors & bioelectronics.
[41] N. Jaffrezic‐Renault,et al. Biosensors based on enzyme field-effect transistors for determination of some substrates and inhibitors , 2003, Analytical and bioanalytical chemistry.
[42] V. Sharma,et al. Mushroom tyrosinase: recent prospects. , 2003, Journal of agricultural and food chemistry.
[43] G. S. Wilson,et al. Electrochemical Biosensors: Recommended Definitions and Classification , 1999, Biosensors & bioelectronics.
[44] A. Soldatkin,et al. Application of urease conductometric biosensor for heavy-metal ion determination , 1995 .
[45] Nicole Jaffrezic-Renault,et al. Conductometric biosensors based on cholinesterases for sensitive detection of pesticides , 1994 .
[46] F. Chu,et al. Inhibition of muscle aldolase by penicillic acid and patulin in vitro. , 1973, Food and cosmetics toxicology.
[47] G. Guilbault,et al. Electrical Determination of Organophosphorous Compounds. , 1962 .
[48] M. Pohanka. Inhibitors of Cholinesterases in the Pharmacology, the Current Trends. , 2019, Mini reviews in medicinal chemistry.
[49] J. Coleman,et al. Structure and mechanism of alkaline phosphatase. , 1992, Annual review of biophysics and biomolecular structure.