Cell-Based Platform for Antigen Testing and Its Application for SARS-CoV-2 Infection
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H. Javitz | S. Dandekar | J. Arredondo | P. Bhatnagar | Harikrishnan Radhakrishnan | M. Ssemadaali | Sherri Newmyer
[1] H. Javitz,et al. Antiviral T-cell Biofactory platform for SARS-CoV-2 , 2022, bioRxiv.
[2] D. Low,et al. Assessment of a Smartphone-Based Loop-Mediated Isothermal Amplification Assay for Detection of SARS-CoV-2 and Influenza Viruses , 2022, JAMA network open.
[3] Rommie E. Amaro,et al. GlycoGrip: Cell Surface-Inspired Universal Sensor for Betacoronaviruses , 2021, ACS central science.
[4] Y. Michalakis,et al. SARS-CoV-2 viral RNA levels are not 'viral load' , 2021, Trends in Microbiology.
[5] P. Hsu,et al. Accelerated RNA detection using tandem CRISPR nucleases , 2021, Nature Chemical Biology.
[6] Nicolaas M. Angenent-Mari,et al. Minimally instrumented SHERLOCK (miSHERLOCK) for CRISPR-based point-of-care diagnosis of SARS-CoV-2 and emerging variants , 2021, Science Advances.
[7] D. Iliopoulos,et al. Clinical Application of the Novel Cell-Based Biosensor for the Ultra-Rapid Detection of the SARS-CoV-2 S1 Spike Protein Antigen: A Practical Approach , 2021, Biosensors.
[8] A. Anand,et al. A novel G-quadruplex aptamer-based spike trimeric antigen test for the detection of SARS-CoV-2 , 2021, Molecular Therapy - Nucleic Acids.
[9] H. Javitz,et al. NK-Cell Biofactory as an Off-the-Shelf Cell-based Vector for Targeted In Situ Synthesis of Engineered Proteins. , 2021, Advanced biology.
[10] P. Hsu,et al. Accelerated RNA detection using tandem CRISPR nucleases , 2021, medRxiv.
[11] A. Srivastava,et al. SERS Based Lateral Flow Immunoassay for Point-of-Care Detection of SARS-CoV-2 in Clinical Samples , 2021, ACS applied bio materials.
[12] D. Hazuda,et al. SARS-CoV-2 tropism, entry, replication, and propagation: Considerations for drug discovery and development , 2021, PLoS pathogens.
[13] A. Srivastava,et al. Point-of-Care Biosensor-Based Diagnosis of COVID-19 Holds Promise to Combat Current and Future Pandemics , 2020, ACS applied bio materials.
[14] Maciej Witkoś,et al. Prolonged Positive COVID-19 Test in Recovered Patient , 2020, Journal of medical cases.
[15] Rochelle P. Walensky,et al. Assessment of SARS-CoV-2 Screening Strategies to Permit the Safe Reopening of College Campuses in the United States , 2020, JAMA network open.
[16] D. Sheward,et al. An alpaca nanobody neutralizes SARS-CoV-2 by blocking receptor interaction , 2020, Nature Communications.
[17] N. Callewaert,et al. Structural Basis for Potent Neutralization of Betacoronaviruses by Single-Domain Camelid Antibodies , 2020, Cell.
[18] anonymous,et al. The COVID-19 testing debacle , 2020, Nature Biotechnology.
[19] Amalio Telenti,et al. Cross-neutralization of SARS-CoV-2 by a human monoclonal SARS-CoV antibody , 2020, Nature.
[20] William L. Hamilton,et al. Screening of healthcare workers for SARS-CoV-2 highlights the role of asymptomatic carriage in COVID-19 transmission , 2020, medRxiv.
[21] H. Javitz,et al. Lentivirus Manufacturing Process for Primary T‐Cell Biofactory Production , 2020, Advanced biosystems.
[22] V. Cagno,et al. SARS-CoV-2 cellular tropism , 2020, The Lancet Microbe.
[23] Wei Gu,et al. CRISPR–Cas12-based detection of SARS-CoV-2 , 2020, Nature Biotechnology.
[24] I. Wilson,et al. A highly conserved cryptic epitope in the receptor binding domains of SARS-CoV-2 and SARS-CoV , 2020, Science.
[25] N. Callewaert,et al. Structural Basis for Potent Neutralization of Betacoronaviruses by Single-Domain Camelid Antibodies , 2020, Cell.
[26] N. Linton,et al. Serial interval of novel coronavirus (COVID-19) infections , 2020, International Journal of Infectious Diseases.
[27] L. Poon,et al. Emergence of a novel human coronavirus threatening human health , 2020, Nature Medicine.
[28] L. Meyers,et al. The serial interval of COVID-19 from publicly reported confirmed cases , 2020, medRxiv.
[29] Yan Bai,et al. Presumed Asymptomatic Carrier Transmission of COVID-19. , 2020, JAMA.
[30] Ting Yu,et al. Epidemiological and clinical characteristics of 99 cases of 2019 novel coronavirus pneumonia in Wuhan, China: a descriptive study , 2020, The Lancet.
[31] H. Javitz,et al. Engineered Ovarian Cancer Cell Lines for Validation of CAR T Cell Function , 2020, Advanced biosystems.
[32] R. Rockne,et al. Mathematical deconvolution of CAR T-cell proliferation and exhaustion from real-time killing assay data , 2020, Journal of the Royal Society Interface.
[33] C. Broder,et al. An antibody against the F glycoprotein inhibits Nipah and Hendra virus infections , 2019, Nature Structural & Molecular Biology.
[34] R. Peeling,et al. Importance of diagnostics in epidemic and pandemic preparedness , 2019, BMJ Global Health.
[35] H. Javitz,et al. Modular Antigen‐Specific T‐cell Biofactories for Calibrated In Vivo Synthesis of Engineered Proteins , 2018, Advanced biosystems.
[36] J. Dye,et al. Structural Basis of Broad Ebolavirus Neutralization by a Human Survivor Antibody , 2019, Nature Structural & Molecular Biology.
[37] Uyen Tran,et al. Rewiring T-cell responses to soluble factors with chimeric antigen receptors , 2018, Nature chemical biology.
[38] J. Meiler,et al. Role of Non-local Interactions between CDR Loops in Binding Affinity of MR78 Antibody to Marburg Virus Glycoprotein. , 2017, Structure.
[39] Stephen P. Luby,et al. A Strategy To Estimate Unknown Viral Diversity in Mammals , 2013, mBio.
[40] A. Fauci,et al. Emerging Infectious Diseases: Threats to Human Health and Global Stability , 2013, PLoS pathogens.
[41] M. Diamond,et al. Structural analyses at pseudo atomic resolution of Chikungunya virus and antibodies show mechanisms of neutralization , 2013, eLife.
[42] N. Craig,et al. Hyperactive piggyBac gene transfer in human cells and in vivo. , 2012, Human gene therapy.
[43] Kate E. Jones,et al. Global trends in emerging infectious diseases , 2008, Nature.
[44] D. Dimitrov,et al. Potent cross-reactive neutralization of SARS coronavirus isolates by human monoclonal antibodies , 2007, Proceedings of the National Academy of Sciences.
[45] T. Oliphant,et al. Structural basis of West Nile virus neutralization by a therapeutic antibody , 2005, Nature.
[46] B. Finsen,et al. Non-invasive method for sampling and extraction of mouse DNA for PCR , 2004, Laboratory animals.
[47] B. Murphy,et al. An efficient method to make human monoclonal antibodies from memory B cells: potent neutralization of SARS coronavirus , 2004, Nature Medicine.
[48] Lin Chen,et al. Transcriptional regulation by calcium, calcineurin, and NFAT. , 2003, Genes & development.
[49] T. H. Rider,et al. A B Cell-Based Sensor for Rapid Identification of Pathogens , 2003, Science.
[50] N. Schoene,et al. Population doubling time, phosphatase activity, and hydrogen peroxide generation in Jurkat cells. , 1999, Free radical biology & medicine.
[51] R. Flavell,et al. T-Cell Activation: Two for T , 1995, Current Biology.