Capacitance electrochemical biosensor based on silicon nitride transducer for TNF-α cytokine detection in artificial human saliva: Heart failure (HF).
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[1] Sylis C. Nicolas,et al. Inflammation Predicts Decision-Making Characterized by Impulsivity, Present Focus, and an Inability to Delay Gratification , 2019, Scientific Reports.
[2] P Yáñez-Sedeño,et al. Pushing the limits of electrochemistry toward challenging applications in clinical diagnosis, prognosis, and therapeutic action. , 2019, Chemical communications.
[3] Abdelhamid Elaissari,et al. Ultrasensitive Immunosensor Array for TNF-α Detection in Artificial Saliva using Polymer-Coated Magnetic Microparticles onto Screen-Printed Gold Electrode , 2019, Sensors.
[4] A. Amine,et al. Ultrasound assisted magnetic imprinted polymer combined sensor based on carbon black and gold nanoparticles for selective and sensitive electrochemical detection of Bisphenol A , 2018, Sensors and Actuators B: Chemical.
[5] A. C. Motta,et al. Cytokines, cortisol, and nitric oxide as salivary biomarkers in oral lichen planus: a systematic review. , 2018, Brazilian oral research.
[6] Dimitrios I. Fotiadis,et al. A novel chronoamperometric immunosensor for rapid detection of TNF-α in human saliva , 2018, Sensors and Actuators B: Chemical.
[7] D. Brennan,et al. Flexible substrate sensors for multiplex biomarker monitoring , 2018, MRS Communications.
[8] Peter Kolominsky-Rabas,et al. Cost-of-illness studies in heart failure: a systematic review 2004–2016 , 2018, BMC Cardiovascular Disorders.
[9] María Pedrero,et al. Electrochemical affinity biosensors for fast detection of gene-specific methylations with no need for bisulfite and amplification treatments , 2018, Scientific Reports.
[10] R. Elosua,et al. Prediction of coronary disease incidence by biomarkers of inflammation, oxidation, and metabolism , 2018, Scientific Reports.
[11] M. K. Sezgintürk,et al. A highly sensitive immunosensor based on ITO thin films covered by a new semi-conductive conjugated polymer for the determination of TNFα in human saliva and serum samples. , 2017, Biosensors & bioelectronics.
[12] D. Fotiadis,et al. Electrochemical biosensor platform for TNF-α cytokines detection in both artificial and human saliva: Heart failure , 2017 .
[13] A. Errachid,et al. Fabrication of new polypyrrole/silicon nitride hybrid materials for potential applications in electrochemical sensors: Synthesis and characterization , 2017 .
[14] A. Errachid,et al. Silicon Nitride Capacitive Chemical Sensor for Phosphate Ion Detection Based on Copper Phthalocyanine - Acrylate-polymer , 2017 .
[15] P. Yáñez‐Sedeño,et al. Electrochemical immunosensor for simultaneous determination of interleukin-1 beta and tumor necrosis factor alpha in serum and saliva using dual screen printed electrodes modified with functionalized double-walled carbon nanotubes. , 2017, Analytica chimica acta.
[16] Nicole Jaffrezic-Renault,et al. Development of a novel capacitance electrochemical biosensor based on silicon nitride for ochratoxin A detection , 2016 .
[17] I. Palchetti,et al. Strategies for the development of an electrochemical bioassay for TNF-alpha detection by using a non-immunoglobulin bioreceptor. , 2016, Talanta: The International Journal of Pure and Applied Analytical Chemistry.
[18] A. Elaissari,et al. Magnetic particles: From preparation to lab-on-a-chip, biosensors, microsystems and microfluidics applications , 2016 .
[19] Abdelhamid Errachid,et al. A flexible electrochemical micro lab-on-chip: application to the detection of interleukin-10 , 2016, Microchimica Acta.
[20] Özlem Biçen Ünlüer,et al. Nano anti-tumor necrosis factor-alpha based potentiometric sensor for tumor necrosis factor-alpha detection , 2015 .
[21] Piotr Ponikowski,et al. Heart failure: preventing disease and death worldwide , 2014, ESC heart failure.
[22] Naoki Sato,et al. The global health and economic burden of hospitalizations for heart failure: lessons learned from hospitalized heart failure registries. , 2014, Journal of the American College of Cardiology.
[23] David F. Lappin,et al. Saliva and serum levels of B-cell activating factors and tumor necrosis factor-α in patients with periodontitis. , 2014, Journal of periodontology.
[24] Guo-Qiang Lo,et al. Highly sensitive Mach–Zehnder interferometer biosensor based on silicon nitride slot waveguide , 2013 .
[25] Q. Javed,et al. Therapeutic potential of tumour necrosis factor-alpha antagonists in patients with chronic heart failure. , 2013, Heart, lung & circulation.
[26] Francesca Campabadal,et al. A novel biosensor based on hafnium oxide: Application for early stage detection of human interleukin-10 , 2012 .
[27] K. Kostner,et al. NT-ProBNP Levels in Saliva and Its Clinical Relevance to Heart Failure , 2012, PloS one.
[28] S. Prauzner-Bechcicki,et al. Spectroscopic and microscopic characterization of biosensor surfaces with protein/amino-organosilane/silicon structure. , 2012, Colloids and surfaces. B, Biointerfaces.
[29] Chandra Shekhar Pundir,et al. An electrochemical sulfite biosensor based on gold coated magnetic nanoparticles modified gold electrode. , 2012, Biosensors & bioelectronics.
[30] Shekhar Bhansali,et al. Lung cancer and its early detection using biomarker-based biosensors. , 2011, Chemical reviews.
[31] D. Wong,et al. Saliva: an emerging biofluid for early detection of diseases. , 2009, American journal of dentistry.
[32] Ahsan Munir,et al. Au NPs-aptamer conjugates as a powerful competitive reagent for ultrasensitive detection of small molecules by surface plasmon resonance spectroscopy. , 2009, Talanta.
[33] L. Patton,et al. Adjunctive techniques for oral cancer examination and lesion diagnosis: a systematic review of the literature. , 2008, Journal of the American Dental Association.
[34] D. Wong,et al. Human Saliva Proteome and Transcriptome , 2006, Journal of dental research.
[35] Guodong Liu,et al. Sensitive immunoassay of a biomarker tumor necrosis factor-alpha based on poly(guanine)-functionalized silica nanoparticle label. , 2006, Analytical chemistry.
[36] Z. Zhang,et al. Determination of recombinant human tumor necrosis factor-α in serum by chemiluminescence imaging , 2005 .
[37] V. Singer,et al. Fluorescence microplate-based assay for tumor necrosis factor activity using SYTOX Green stain. , 2001, Analytical biochemistry.
[38] L. Hofman,et al. Human saliva as a diagnostic specimen. , 2001, The Journal of nutrition.
[39] P. Temple-Boyer,et al. pH, pK and pNa detection properties of SiO2/Si3N4 ISFET chemical sensors , 2000 .
[40] S. Kennel,et al. Analysis for TNF-α using solid-phase affinity capture with radiolabel and MALDI-MS detection , 1999 .
[41] F. Berthier,et al. Evaluation of an Automated Method for Cytokine Measurement Using the Immulite® Immunoassay System , 1999, Clinical chemistry and laboratory medicine.
[42] R. Westendorp,et al. Determination of tumour necrosis factor-alpha and interleukin-10 production in a whole blood stimulation system: assessment of laboratory error and individual variation. , 1998, Journal of immunological methods.
[43] U. Stenman,et al. Determination of human tumour necrosis factor-α (TNF-α) by time-resolved immunofluorometric assay , 1994 .
[44] M. Parkhouse,et al. Effect of intraocular surgery and ketamine on aqueous and serum cytokines , 2007, Molecular vision.
[45] R. Evangelista,et al. Enzyme-amplified lanthanide luminescence for enzyme detection in bioanalytical assays. , 1991, Analytical biochemistry.
[46] H. Fillit,et al. Elevated circulating levels of tumor necrosis factor in severe chronic heart failure. , 1990, The New England journal of medicine.
[47] C. Maury,et al. Radioimmunoassay of tumor necrosis factor in serum. , 1987, Clinical chemistry.
[48] F. Di Francesco,et al. Determination of salivary α-amylase and cortisol in psoriatic subjects undergoing the Trier Social Stress Test , 2018 .
[49] D. Fotiadis,et al. Highly Sensitive Electrochemical BioMEMS for TNF-α Detection in Humansaliva: Heart Failure , 2016 .
[50] A. El-Latif,et al. A Comparison between Serum and Salivary Tumor Necrosis Factor- Alpha in Oral Lichen Planus , 2009 .
[51] M. Kurimoto,et al. A new highly sensitive immunoassay for cytokines by dissociation-enhanced lanthanide fluoroimmunoassay (DELFIA). , 1992, Journal of immunological methods.