Point-of-care electrochemical testing of biomarkers involved in inflammatory and inflammatory-associated medical conditions
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[1] R. Saber,et al. AuNP-based biosensors for the diagnosis of pathogenic human coronaviruses: COVID-19 pandemic developments , 2022, Analytical and Bioanalytical Chemistry.
[2] Gemilang Khusnurrokhman,et al. Tumor-promoting inflammation in lung cancer: A literature review , 2022, Annals of medicine and surgery.
[3] G. Marrazza,et al. DNA sensing technology a useful food scanning tool , 2022, TrAC Trends in Analytical Chemistry.
[4] W. Goddard,et al. Performance of electrochemical immunoassays for clinical diagnostics of SARS-CoV-2 based on selective nucleocapsid N protein detection: Boron-doped diamond, gold and glassy carbon evaluation , 2022, Biosensors and Bioelectronics.
[5] N. Jaffrezic‐Renault,et al. Spatially hierarchical nano-architecture for real time detection of Interleukin-8 cancer biomarker. , 2022, Talanta.
[6] A. Erdem,et al. Amperometric immunosensor developed for sensitive detection of SARS-CoV-2 spike S1 protein in combined with portable device , 2022, Talanta.
[7] J. Orozco,et al. SARS-CoV-2 electrochemical immunosensor based on the spike-ACE2 complex , 2022, Analytica Chimica Acta.
[8] P. Solanki,et al. Fabrication of alkoxysilane substituted polymer-modified disposable biosensing platform: Towards sperm protein 17 sensing as a new cancer biomarker. , 2022, Talanta.
[9] Bidhan C. Dhar. Diagnostic assay and technology advancement for detecting SARS-CoV-2 infections causing the COVID-19 pandemic , 2022, Analytical and Bioanalytical Chemistry.
[10] E. Carrilho,et al. Electrochemical immunosensors using electrodeposited gold nanostructures for detecting the S proteins from SARS-CoV and SARS-CoV-2 , 2022, Analytical and Bioanalytical Chemistry.
[11] Amelia Carolina Sparavigna,et al. Bacterial ligands as flexible and sensitive detectors in rapid tests for antibodies to SARS-CoV-2 , 2022, Analytical and Bioanalytical Chemistry.
[12] J. Dear,et al. Towards quantitative point of care detection using SERS lateral flow immunoassays , 2022, Analytical and Bioanalytical Chemistry.
[13] D. Galimberti,et al. Salivary biomarkers of neurodegenerative and demyelinating diseases and biosensors for their detection , 2022, Ageing Research Reviews.
[14] S. Muthukumar,et al. An observational study for detection and quantification of interferon- γ in sweat toward inflammation monitoring , 2022, Biosensors and Bioelectronics: X.
[15] Yanli Zhou,et al. Target-induced silver nanocluster generation for highly sensitive electrochemical aptasensor towards cell-secreted interferon-γ. , 2022, Biosensors & bioelectronics.
[16] F. Paulovich,et al. Low-cost bacterial nanocellulose-based interdigitated biosensor to detect the p53 cancer biomarker. , 2022, Materials science & engineering. C, Materials for biological applications.
[17] M. Correa‐Duarte,et al. Development of a biosensor for phosphorylated Tau 181 protein detection in Early-Stage Alzheimer's disease. , 2022, Bioelectrochemistry.
[18] A. Mendes,et al. An all-in-one approach for self-powered sensing: a methanol fuel cell modified with a molecularly imprinted polymer for cancer biomarker detection , 2022, Journal of Electroanalytical Chemistry.
[19] J. van der Naalt,et al. Blood-based biomarkers of inflammation in mild traumatic brain injury: A systematic review , 2021, Neuroscience & Biobehavioral Reviews.
[20] D. Janigro,et al. Inflammation in pediatric epilepsies: Update on clinical features and treatment options , 2021, Epilepsy & Behavior.
[21] N. Jaffrezic‐Renault,et al. Direct ultrasensitive electrochemical detection of breast cancer biomarker-miRNA-21 employing an aptasensor based on a microgel nanoparticle composite , 2022, Sensors and Actuators B: Chemical.
[22] X. Qiao,et al. PSA detection electrochemical immunosensor based on MOF-235 nanomaterial adsorption aggregation signal amplification strategy , 2021, Microchemical Journal.
[23] Chiye Zhang,et al. Microfluidic electrochemical magnetoimmunosensor for ultrasensitive detection of interleukin-6 based on hybrid of AuNPs and graphene. , 2021, Talanta.
[24] V. Sharoyko,et al. Functionalisation of graphene as a tool for developing nanomaterials with predefined properties , 2021, Journal of Molecular Liquids.
[25] Bowen Zhu,et al. Self-assembled peptides-modified flexible field-effect transistors for tyrosinase detection , 2021, iScience.
[26] P. Solanki,et al. MoS2 nanoflower based electrochemical biosensor for TNF alpha detection in cancer patients , 2021, Electrochimica Acta.
[27] S. Bamrungsap,et al. A gold nanoparticle-dye/poly(3-aminobenzylamine)/two dimensional MoSe2/graphene oxide electrode towards label-free electrochemical biosensor for simultaneous dual-mode detection of cancer antigen 15-3 and microRNA-21. , 2021, Colloids and surfaces. B, Biointerfaces.
[28] José Ilton de Oliveira Filho,et al. Laser-scribed graphene sensor based on gold nanostructures and molecularly imprinted polymers: Application for Her-2 cancer biomarker detection , 2021 .
[29] L. Liv,et al. Electrochemical biosensing platform based on hydrogen bonding for detection of the SARS-CoV-2 spike antibody , 2021, Analytical and Bioanalytical Chemistry.
[30] A. Öpik,et al. Molecularly imprinted polymer based electrochemical sensor for quantitative detection of SARS-CoV-2 spike protein , 2021, Sensors and Actuators B: Chemical.
[31] Ahmed M. Shawky,et al. Signal amplification strategy of label-free ultrasenstive electrochemical immunosensor based ternary Ag/TiO2/rGO nanocomposites for detecting breast cancer biomarker CA 15-3 , 2021 .
[32] C. Henry,et al. Electrochemical Capillary-Flow Immunoassay for Detecting Anti-SARS-CoV-2 Nucleocapsid Protein Antibodies at the Point of Care , 2021, ACS sensors.
[33] P. Solanki,et al. Simple and facile carbon dots based electrochemical biosensor for TNF-α targeting in cancer patient's sample. , 2021, Analytica chimica acta.
[34] María Pedrero,et al. New challenges in point of care electrochemical detection of clinical biomarkers , 2021 .
[35] Can-Peng Li,et al. A novel affinity peptide-antibody sandwich electrochemical biosensor for PSA based on the signal amplification of MnO2-functionalized covalent organic framework. , 2021, Talanta.
[36] Carmen C. Mayorga-Martinez,et al. 3D-printed transmembrane glycoprotein cancer biomarker aptasensor , 2021 .
[37] M. Hasanzadeh,et al. Label-free electrochemical-immunoassay of cancer biomarkers: Recent progress and challenges in the efficient diagnosis of cancer employing electroanalysis and based on point of care (POC) , 2021 .
[38] Bo Liedberg,et al. Point of care testing of sports biomarkers: Potential applications, recent advances and future outlook , 2021 .
[39] Chulhwan Park,et al. Fabrication of electrochemical biosensor composed of multi-functional DNA 4 way junction for TNF-α detection in human serum. , 2021, Bioelectrochemistry.
[40] A. Biankin,et al. Cancer Biomarkers in the era of precision oncology: Addressing the needs of patients and health systems. , 2021, Seminars in cancer biology.
[41] M. Sales,et al. Electrochemical immunosensor for detection of CA 15-3 biomarker in point-of-care , 2021, Sensing and Bio-Sensing Research.
[42] J. Islam,et al. Laser Scribing Fabrication of Graphitic Carbon Biosensors for Label-Free Detection of Interleukin-6 , 2021, Nanomaterials.
[43] N. Voelcker,et al. Electrochemical immunosensor for breast cancer biomarker detection using high-density silicon microneedle array. , 2021, Biosensors & bioelectronics.
[44] V. Mariappan,et al. Potential biomarkers for the early prediction of SARS-COV-2 disease outcome , 2021, Microbial Pathogenesis.
[45] A. Buño,et al. POCT Accreditation ISO 15189 and ISO 22870: Making the Point , 2021, EJIFCC.
[46] Chulhwan Park,et al. Fabrication of an Electrochemical Aptasensor Composed of Multifunctional DNA Three-Way Junction on Au Microgap Electrode for Interferon Gamma Detection in Human Serum , 2021, Biomedicines.
[47] J. Sempionatto,et al. Wearable and Mobile Sensors for Personalized Nutrition. , 2021, ACS sensors.
[48] Jane Ru Choi,et al. Emerging point-of-care biosensors for rapid diagnosis of COVID-19: current progress, challenges, and future prospects , 2021, Analytical and Bioanalytical Chemistry.
[49] M. del Valle,et al. Molecularly imprinted polymers - towards electrochemical sensors and electronic tongues , 2021, Analytical and Bioanalytical Chemistry.
[50] L. Tian,et al. Stretchable and Transparent Electrochemical Sensor Based on Nanostructured Au on Carbon Nanotube Networks for Real-Time Analysis of H2O2 Release from Cells. , 2021, Analytical chemistry.
[51] Xiliang Luo,et al. Eco-friendly one-pot aqueous synthesis of ultra-thin AuPdCu alloyed nanowire-like networks for highly sensitive immunoassay of creatine kinase-MB , 2021 .
[52] M. Bergamini,et al. A complete lab-made point of care device for non-immunological electrochemical determination of cortisol levels in salivary samples , 2021 .
[53] Xueji Zhang,et al. An electrochemical aptasensor based on AuPt alloy nanoparticles for ultrasensitive detection of amyloid-β oligomers. , 2021, Talanta.
[54] Li Wang,et al. Electrochemical biosensors for measurement of colorectal cancer biomarkers , 2021, Analytical and Bioanalytical Chemistry.
[55] Kuldeep Mahato,et al. Lab under the Skin: Microneedle Based Wearable Devices , 2021, Advanced healthcare materials.
[56] K. Salama,et al. Gold nanostructured laser-scribed graphene: A new electrochemical biosensing platform for potential point-of-care testing of disease biomarkers. , 2021, Biosensors & bioelectronics.
[57] S. Campuzano,et al. Anticipating metastasis through electrochemical immunosensing of tumor hypoxia biomarkers , 2021, Analytical and Bioanalytical Chemistry.
[58] Oana Hosu,et al. Aptamers in biomedicine: Selection strategies and recent advances , 2021 .
[59] R. Boukherroub,et al. The role of the surface ligand on the performance of electrochemical SARS-CoV-2 antigen biosensors , 2021, Analytical and Bioanalytical Chemistry.
[60] Mei Chen,et al. A novel biosensor for the ultrasensitive detection of the lncRNA biomarker MALAT1 in non-small cell lung cancer , 2021, Scientific Reports.
[61] Liliana A. A. N. A. Truta,et al. Electrochemical Point-of Care (PoC) Determination of Interleukin-6 (IL-6) Using a Pyrrole (Py) Molecularly Imprinted Polymer (MIP) on a Carbon-Screen Printed Electrode (C-SPE) , 2021 .
[62] D. Almeida,et al. Perceived stress is linked to heightened biomarkers of inflammation via diurnal cortisol in a national sample of adults , 2021, Brain, Behavior, and Immunity.
[63] A. Öpik,et al. Development of a portable MIP-based electrochemical sensor for detection of SARS-CoV-2 antigen , 2021, Biosensors and Bioelectronics.
[64] M. K. Sezgintürk,et al. A novel electrochemical immunosensor based on acetylene black/epoxy-substituted-polypyrrole polymer composite for the highly sensitive and selective detection of interleukin 6. , 2021, Talanta.
[65] S. Kelley,et al. Detection of SARS-CoV-2 Viral Particles Using Direct, Reagent-Free Electrochemical Sensing , 2020, Journal of the American Chemical Society.
[66] A. O'Mullane,et al. Rapid electrochemical detection of coronavirus SARS-CoV-2 , 2020, Nature communications.
[67] D. Moscone,et al. Magnetic beads combined with carbon black-based screen-printed electrodes for COVID-19: A reliable and miniaturized electrochemical immunosensor for SARS-CoV-2 detection in saliva , 2020, Biosensors and Bioelectronics.
[68] C. Henry,et al. Flow control in a laminate capillary-driven microfluidic device. , 2020, The Analyst.
[69] N. Jaffrezic‐Renault,et al. A Novel Electrochemical Immunosensor for Ultrasensitive Detection of Tumor Necrosis Factor α Based on Polystyrene - PAMAM Dendritic Polymer Blend Nanofibers , 2021, SSRN Electronic Journal.
[70] G. Forloni,et al. Inflammation and Parkinson's disease pathogenesis: Mechanisms and therapeutic insight. , 2021, Progress in molecular biology and translational science.
[71] M. Zourob,et al. Development of a Low-Cost Cotton-Tipped Electrochemical Immunosensor for the Detection of SARS-CoV-2. , 2020, Analytical chemistry.
[72] Md. Azahar Ali,et al. Sensing of COVID‐19 Antibodies in Seconds via Aerosol Jet Nanoprinted Reduced‐Graphene‐Oxide‐Coated 3D Electrodes , 2020, Advanced materials.
[73] O. Chailapakul,et al. Paper-based electrochemical biosensor for diagnosing COVID-19: Detection of SARS-CoV-2 antibodies and antigen , 2020, Biosensors and Bioelectronics.
[74] Om Krishan Singh,et al. Cerium oxide nanofiber based electroanalytical sensor for TNF-α detection: Improved interfacial stability with Nafion. , 2020, Bioelectrochemistry.
[75] A. Fabro,et al. Pulmonary pathology of ARDS in COVID-19: A pathological review for clinicians , 2020, Respiratory Medicine.
[76] M. Gholivand,et al. Label-free electrochemical immunosensor for sensitive HER2 biomarker detection using the core-shell magnetic metal-organic frameworks , 2020 .
[77] Münteha Nur Sonuç Karaboğa,et al. Analysis of Tau-441 protein in clinical samples using rGO/AuNP nanocomposite-supported disposable impedimetric neuro-biosensing platform: Towards Alzheimer's disease detection. , 2020, Talanta.
[78] Antara Vaidyanathan,et al. Flexible and wearable electrochemical biosensors based on two-dimensional materials: Recent developments , 2020, Analytical and Bioanalytical Chemistry.
[79] P. Moitra,et al. Rapid, Ultrasensitive, and Quantitative Detection of SARS-CoV-2 Using Antisense Oligonucleotides Directed Electrochemical Biosensor Chip , 2020, ACS nano.
[80] Amit L. Sharma,et al. Advancement in biosensors for inflammatory biomarkers of SARS-CoV-2 during 2019–2020 , 2020, Biosensors and Bioelectronics.
[81] Harry B. Rossiter,et al. SARS-CoV-2 RapidPlex: A Graphene-Based Multiplexed Telemedicine Platform for Rapid and Low-Cost COVID-19 Diagnosis and Monitoring , 2020, Matter.
[82] C. Shanmugam,et al. COVID-2019 – A comprehensive pathology insight , 2020, Pathology - Research and Practice.
[83] P. Kara,et al. Aptamer-based electrochemical biosensing strategy toward human non-small cell lung cancer using polyacrylonitrile/polypyrrole nanofibers , 2020, Analytical and Bioanalytical Chemistry.
[84] Fenglin Liu,et al. Ultrasensitive supersandwich-type electrochemical sensor for SARS-CoV-2 from the infected COVID-19 patients using a smartphone , 2020, Sensors and Actuators B: Chemical.
[85] M. Misra,et al. Functionalized TiO2 Nanotube-Based Electrochemical Biosensor for Rapid Detection of SARS-CoV-2 , 2020, medRxiv.
[86] Jingkun Xu,et al. Label-free electrochemical immunosensor for the detection of prostate specific antigen based three-dimensional Au nanoparticles/MoS2-graphene aerogels composite , 2020 .
[87] S. Dong,et al. Co-embedded N-doped hierarchical carbon arrays with boosting electrocatalytic activity for in situ electrochemical detection of H2O2 , 2020 .
[88] F. Hakimian,et al. Ultrasensitive electrochemical biosensor for detection of microRNA-155 as a breast cancer risk factor. , 2020, Analytica chimica acta.
[89] V. Sintchenko,et al. The Antibody Response to SARS-CoV-2 Infection , 2020, Open forum infectious diseases.
[90] M. K. Sezgintürk,et al. The development of an ultra-sensitive electrochemical immunosensor using a PPyr-NHS functionalized disposable ITO sheet for the detection of interleukin 6 in real human serums , 2020, New Journal of Chemistry.
[91] Stuart J. Williams,et al. Rapid detection of SARS-CoV-2 antibodies using electrochemical impedance-based detector , 2020, Biosensors and Bioelectronics.
[92] S. Pearton,et al. Rapid Electrochemical Detection for SARS-CoV-2 and Cardiac Troponin I Using Low-Cost, Disposable and Modular Biosensor System , 2020, 2020 IEEE Research and Applications of Photonics in Defense Conference (RAPID).
[93] M. L. Yola,et al. A novel and ultrasensitive sandwich-type electrochemical immunosensor based on delaminated MXene@AuNPs as signal amplification for prostate specific antigen (PSA) detection and immunosensor validation. , 2020, Talanta.
[94] Ai-Jun Wang,et al. Confining signal probe in porous PdPtCoNi@Pt-skin nanopolyhedra to construct a sandwich-type electrochemical immmunosensor for ultrasensitive detection of creatine kinase-MB , 2020 .
[95] K. Blennow,et al. Neurofilament light as a biomarker in traumatic brain injury , 2020, Neurology.
[96] M. Hasanzadeh,et al. A novel immunosensor for the monitoring of PSA using binding of biotinylated antibody to the prostate specific antigen based on nano-ink modified flexible paper substrate: efficient method for diagnosis of cancer using biosensing technology , 2020, Heliyon.
[97] Paloma Yáñez-Sedeño,et al. Screen-Printed Electrodes: Promising Paper and Wearable Transducers for (Bio)Sensing , 2020, Biosensors.
[98] Shaoying Huang,et al. The cytokine storm and COVID‐19 , 2020, Journal of medical virology.
[99] D. Ragab,et al. The COVID-19 Cytokine Storm; What We Know So Far , 2020, Frontiers in Immunology.
[100] S. Campuzano,et al. An electrochemical immunosensor using gold nanoparticles-PAMAM-nanostructured screen-printed carbon electrodes for tau protein determination in plasma and brain tissues from Alzheimer patients. , 2020, Biosensors & bioelectronics.
[101] P. Yáñez‐Sedeño,et al. Electrochemical immunosensor for the determination of the cytokine interferon gamma (IFN-γ) in saliva. , 2020, Talanta.
[102] M. Tay,et al. The trinity of COVID-19: immunity, inflammation and intervention , 2020, Nature Reviews Immunology.
[103] Sonu Gandhi,et al. eCovSens-Ultrasensitive Novel In-House Built Printed Circuit Board Based Electrochemical Device for Rapid Detection of nCovid-19 antigen, a spike protein domain 1 of SARS-CoV-2 , 2020, bioRxiv.
[104] A. Spanevello,et al. The pivotal link between ACE2 deficiency and SARS-CoV-2 infection , 2020, European Journal of Internal Medicine.
[105] Daeui Park,et al. Rapid Detection of COVID-19 Causative Virus (SARS-CoV-2) in Human Nasopharyngeal Swab Specimens Using Field-Effect Transistor-Based Biosensor , 2020, ACS nano.
[106] Ashish Ranjan Sharma,et al. The Interplay among miRNAs, Major Cytokines, and Cancer-Related Inflammation , 2020, Molecular therapy. Nucleic acids.
[107] Valentina Bianchi,et al. A Self-Calibrating IoT Portable Electrochemical Immunosensor for Serum Human Epididymis Protein 4 as a Tumor Biomarker for Ovarian Cancer , 2020, Sensors.
[108] Lu Lu,et al. Inhibition of SARS-CoV-2 (previously 2019-nCoV) infection by a highly potent pan-coronavirus fusion inhibitor targeting its spike protein that harbors a high capacity to mediate membrane fusion , 2020, Cell Research.
[109] Laís Canniatti Brazaca,et al. Flexible platinum electrodes as electrochemical sensor and immunosensor for Parkinson's disease biomarkers. , 2020, Biosensors & bioelectronics.
[110] Changsheng Zhang,et al. Crystal structure of SARS-CoV-2 nucleocapsid protein RNA binding domain reveals potential unique drug targeting sites , 2020, bioRxiv.
[111] Linshen Xie,et al. Facile incorporation of DNA-templated quantum dots for sensitive electrochemical detection of the oral cancer biomarker interleukin-8 , 2020, Analytical and Bioanalytical Chemistry.
[112] C. Delerue-Matos,et al. Quantum dots as nanolabels for breast cancer biomarker HER2-ECD analysis in human serum. , 2020, Talanta.
[113] A. Novelli,et al. Competitive electrochemical immunosensor for the detection of unfolded p53 protein in blood as biomarker for Alzheimer's disease. , 2020, Analytica chimica acta.
[114] S. Ladame,et al. Diagnostic, prognostic, and predictive biomarkers for cancer , 2020, Bioengineering Innovative Solutions for Cancer.
[115] Gangfeng Ouyang,et al. A label-free IFN-γ aptasensor based on target-triggered allosteric switching of aptamer beacon and streptavidin-inorganic hybrid composites. , 2019, Analytica chimica acta.
[116] Rijun Gui,et al. An amplified label-free electrochemical aptasensor of γ-interferon based on target-induced DNA strand transform of hairpin-to-linear conformation enabling simultaneous capture of redox probe and target. , 2019, Biosensors & bioelectronics.
[117] B. Relja,et al. Cytokines in Inflammatory Disease , 2019, International journal of molecular sciences.
[118] S. Ahmad,et al. An Electrochemical Sandwich Immunosensor for the Detection of HER2 using Antibody-Conjugated PbS Quantum Dot as a label. , 2019, Journal of pharmaceutical and biomedical analysis.
[119] J. Ramón‐Azcón,et al. Microphysiological sensing platform for an in-situ detection of tissue-secreted cytokines , 2019, Biosensors & bioelectronics: X.
[120] E. Frangou,et al. An emerging role of neutrophils and NETosis in chronic inflammation and fibrosis in systemic lupus erythematosus (SLE) and ANCA-associated vasculitides (AAV): Implications for the pathogenesis and treatment. , 2019, Autoimmunity reviews.
[121] Subash C B Gopinath,et al. Gold interdigitated triple-microelectrodes for label-free prognosticative aptasensing of prostate cancer biomarker in serum. , 2019, Biosensors & bioelectronics.
[122] Xinke Liu,et al. Salivary Electrochemical Cortisol Biosensor Based on Tin Disulfide Nanoflakes , 2019, Nanoscale Research Letters.
[123] M. Suciu,et al. Impedimetric aptasensor for the label-free and selective detection of Interleukin-6 for colorectal cancer screening. , 2019, Biosensors & bioelectronics.
[124] Giovanna Marrazza,et al. Latest Trends in Electrochemical Sensors for Neurotransmitters: A Review , 2019, Sensors.
[125] C. Cristea,et al. Salivary biomarkers detection: Analytical and immunological methods overview , 2019, TrAC Trends in Analytical Chemistry.
[126] Stephen Lee,et al. Soft, skin-interfaced wearable systems for sports science and analytics , 2019, Current Opinion in Biomedical Engineering.
[127] Jayoung Kim,et al. Wearable biosensors for healthcare monitoring , 2019, Nature Biotechnology.
[128] C. Cristea,et al. Minireview: Smart tattoo, Microneedle, Point-Of-care, and Phone-Based Biosensors for Medical Screening, Diagnosis, and Monitoring , 2019 .
[129] C. Cristea,et al. Functionalized Advanced Hybrid Materials for Biosensing Applications , 2019, Advanced Biosensors for Health Care Applications.
[130] R. Yunus,et al. Synthesis of Carbon Nanomaterials Using Catalytic Chemical Vapor Deposition Technique , 2019, Synthesis, Technology and Applications of Carbon Nanomaterials.
[131] Youngkwan Lee,et al. Curcumin-based electrochemical sensor of amyloid-β oligomer for the early detection of Alzheimer’s disease , 2018, Sensors and Actuators B: Chemical.
[132] Yanli Zhou,et al. A sensitive aptasensor for the detection of β-amyloid oligomers based on metal–organic frameworks as electrochemical signal probes , 2018 .
[133] Ludwig Kappos,et al. Neurofilaments as biomarkers in neurological disorders , 2018, Nature Reviews Neurology.
[134] Dimitrios I. Fotiadis,et al. A novel chronoamperometric immunosensor for rapid detection of TNF-α in human saliva , 2018, Sensors and Actuators B: Chemical.
[135] N. Jaffrezic‐Renault,et al. A novel electrochemical aptamer-antibody sandwich assay for the detection of tau-381 in human serum. , 2018, The Analyst.
[136] Xiliang Luo,et al. Highly sensitive label-free amperometric immunoassay of prostate specific antigen using hollow dendritic AuPtAg alloyed nanocrystals. , 2018, Biosensors & bioelectronics.
[137] N. Alarfaj,et al. New label-free ultrasensitive electrochemical immunosensor-based Au/MoS2/rGO nanocomposites for CA 27-29 breast cancer antigen detection , 2018 .
[138] Dustin K. James,et al. Laser-Induced Graphene. , 2018, Accounts of chemical research.
[139] M. Sales,et al. Disposable electrochemical detection of breast cancer tumour marker CA 15-3 using poly(Toluidine Blue) as imprinted polymer receptor. , 2018, Biosensors & bioelectronics.
[140] Yimin Sun,et al. Dual nanoenzyme modified microelectrode based on carbon fiber coated with AuPd alloy nanoparticles decorated graphene quantum dots assembly for electrochemical detection in clinic cancer samples. , 2018, Biosensors & bioelectronics.
[141] Youssef Fares,et al. Salivary biomarkers for the diagnosis and monitoring of neurological diseases , 2018, Biomedical journal.
[142] Cristina Delerue-Matos,et al. Molecularly imprinted electrochemical sensor for the point-of-care detection of a breast cancer biomarker (CA 15-3) , 2018 .
[143] Yimin Sun,et al. Flexible nanohybrid microelectrode based on carbon fiber wrapped by gold nanoparticles decorated nitrogen doped carbon nanotube arrays: In situ electrochemical detection in live cancer cells. , 2018, Biosensors & bioelectronics.
[144] M. Mirzaei,et al. Aptamer-based determination of tumor necrosis factor α using a screen-printed graphite electrode modified with gold hexacyanoferrate , 2018, Microchimica Acta.
[145] Jie Gui,et al. A hydrogel biosensor for high selective and sensitive detection of amyloid-beta oligomers , 2018, International journal of nanomedicine.
[146] Robert M Califf,et al. Biomarker definitions and their applications , 2018, Experimental biology and medicine.
[147] A. Khoshroo,et al. Enhanced performance of label-free electrochemical immunosensor for carbohydrate antigen 15-3 based on catalytic activity of cobalt sulfide/graphene nanocomposite , 2018 .
[148] L Tian,et al. Wearable sensors: modalities, challenges, and prospects. , 2018, Lab on a chip.
[149] Kasarla Ramakrushna Reddy,et al. Development of an electrochemical immunosensor based on gold nanoparticles incorporated chitosan biopolymer nanocomposite film for the detection of prostate cancer using PSA as biomarker. , 2017, Enzyme and microbial technology.
[150] M. Suciu,et al. Label-free electrochemical aptasensor based on gold and polypyrrole nanoparticles for interleukin 6 detection , 2017 .
[151] B. Crulhas,et al. Electrochemical aptamer-based biosensor developed to monitor PSA and VEGF released by prostate cancer cells , 2017, Analytical and Bioanalytical Chemistry.
[152] John G. Bruno,et al. Aptamer-based point-of-care diagnostic platforms , 2017 .
[153] Andreas Demosthenous,et al. Detection of the tau protein in human serum by a sensitive four-electrode electrochemical biosensor. , 2017, Biosensors & bioelectronics.
[154] Mingdang Li,et al. A novel sandwich-type electrochemical immunosensor for PSA detection based on PtCu bimetallic hybrid (2D/2D) rGO/g-C3N4. , 2017, Biosensors & bioelectronics.
[155] Mete Akgün,et al. An integrated lab-on-a-chip-based electrochemical biosensor for rapid and sensitive detection of cancer biomarkers , 2016, Analytical and Bioanalytical Chemistry.
[156] Mamas I. Prodromidis,et al. Electrochemical immunosensors: Critical survey of different architectures and transduction strategies , 2016 .
[157] S. Bhansali,et al. Electrochemical sensing method for point-of-care cortisol detection in human immunodeficiency virus-infected patients , 2015, International journal of nanomedicine.
[158] F. T. Moreira,et al. Novel sensory surface for creatine kinase electrochemical detection. , 2014, Biosensors & bioelectronics.
[159] J. Kong,et al. A Sensitive Microchip‐Based Immunosensor for Electrochemical Detection of Low‐Level Biomarker S100B , 2013 .
[160] E. Schleicher,et al. Inflammation markers in point-of-care testing (POCT) , 2009, Analytical and bioanalytical chemistry.
[161] Y. Leo,et al. Profiles of Antibody Responses against Severe Acute Respiratory Syndrome Coronavirus Recombinant Proteins and Their Potential Use as Diagnostic Markers , 2004, Clinical Diagnostic Laboratory Immunology.
[162] A. Xu,et al. Profile of specific antibodies to the SARS-associated coronavirus. , 2003, The New England journal of medicine.
[163] Eric Bakker,et al. Electrochemical sensors. , 2002, Analytical chemistry.