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Immunology

D-Index
46
Citations
8228
World Ranking
4619
National Ranking
2081

Overview

Gene S. Tan is affiliated with the J. Craig Venter Institute in the United States and has a substantial publication record primarily in the field of Medicine. Their research focuses on Infectious Diseases, Epidemiology, Radiology, Nuclear Medicine and Imaging, Genetics, and Neurology.

The main topics addressed in their work include:

  • SARS-CoV-2 and COVID-19 Research
  • Influenza Virus Research Studies
  • Monoclonal and Polyclonal Antibodies Research
  • Diabetes and associated disorders
  • Long-Term Effects of COVID-19
  • Infectious Encephalopathies and Encephalitis
  • Gut microbiota and health

Key recent papers authored or co-authored by Gene S. Tan are:

  • "Proinflammatory IgG Fc structures in patients with severe COVID-19", 2020, Nature Immunology
  • "SARS-CoV-2 reservoir in post-acute sequelae of COVID-19 (PASC)", 2023, Nature Immunology
  • "Microbiome disturbance and resilience dynamics of the upper respiratory tract during influenza A virus infection", 2020, Nature Communications
  • "Collective interactions augment influenza A virus replication in a host-dependent manner", 2020, Nature Microbiology
  • "Proinflammatory IgG Fc structures in patients with severe COVID-19", 2020, bioRxiv (Cold Spring Harbor Laboratory)

Gene S. Tan frequently publishes in several venues, with multiple articles in each, including:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nature Immunology
  • Nature Communications
  • The Lancet Infectious Diseases
  • Nature Microbiology

The scientist has collaborated extensively with several frequent co-authors in the field, such as:

  • Christopher L. Dupont
  • Saborni Chakraborty
  • Upinder Singh
  • Prasanna Jagannathan
  • Marcelo Freire

Best Publications

  • Broadly neutralizing hemagglutinin stalk–specific antibodies require FcγR interactions for protection against influenza virus in vivo

    David J DiLillo;Gene S Tan;Peter Palese;Jeffrey V Ravetch

  • Vaccination with a synthetic peptide from the influenza virus hemagglutinin provides protection against distinct viral subtypes

    Taia T. Wang;Gene S. Tan;Rong Hai;Natalie Pica

  • Broadly protective monoclonal antibodies against H3 influenza viruses following sequential immunization with different hemagglutinins.

    Taia T. Wang;Gene S. Tan;Rong Hai;Natalie Pica

  • Influenza Viruses Expressing Chimeric Hemagglutinins: Globular Head and Stalk Domains Derived from Different Subtypes

    Rong Hai;Florian Krammer;Gene S. Tan;Natalie Pica

  • Proinflammatory IgG Fc structures in patients with severe COVID-19.

    Saborni Chakraborty;Joseph Gonzalez;Karlie Edwards;Vamsee Mallajosyula

  • Hemagglutinin stalk antibodies elicited by the 2009 pandemic influenza virus as a mechanism for the extinction of seasonal H1N1 viruses

    Natalie Pica;Rong Hai;Florian Krammer;Taia T. Wang

  • Both Neutralizing and Non-Neutralizing Human H7N9 Influenza Vaccine-Induced Monoclonal Antibodies Confer Protection.

    Carole J. Henry Dunand;Paul E. Leon;Min Huang;Angela Choi

  • Hemagglutinin Stalk-Based Universal Vaccine Constructs Protect against Group 2 Influenza A Viruses

    I. Margine;F. Krammer;R. Hai;N. S. Heaton

  • Vaccination with Adjuvanted Recombinant Neuraminidase Induces Broad Heterologous, but Not Heterosubtypic, Cross-Protection against Influenza Virus Infection in Mice

    Teddy John Wohlbold;Raffael Nachbagauer;Raffael Nachbagauer;Haoming Xu;Gene S. Tan

  • Anti-HA Glycoforms Drive B Cell Affinity Selection and Determine Influenza Vaccine Efficacy

    Taia T. Wang;Jad Maamary;Gene S. Tan;Stylianos Bournazos

  • A carboxy-terminal trimerization domain stabilizes conformational epitopes on the stalk domain of soluble recombinant hemagglutinin substrates.

    Florian Krammer;Irina Margine;Gene S. Tan;Natalie Pica

  • Epitope specificity plays a critical role in regulating antibody-dependent cell-mediated cytotoxicity against influenza A virus

    Wenqian He;Gene S. Tan;Caitlin E. Mullarkey;Amanda J. Lee

  • A Pan-H1 Anti-Hemagglutinin Monoclonal Antibody with Potent Broad-Spectrum Efficacy In Vivo

    Gene S. Tan;Florian Krammer;Dirk Eggink;Alita Kongchanagul

  • The dynein light chain 8 binding motif of rabies virus phosphoprotein promotes efficient viral transcription.

    Gene S. Tan;Mirjam A. R. Preuss;John C. Williams;Matthias J. Schnell

  • Alveolar macrophages are critical for broadly-reactive antibody-mediated protection against influenza A virus in mice

    Wenqian He;Chi-Jene Chen;Caitlin E. Mullarkey;Jennifer R. Hamilton

  • In Vivo Bioluminescent Imaging of Influenza A Virus Infection and Characterization of Novel Cross-Protective Monoclonal Antibodies

    Nicholas S. Heaton;Victor H. Leyva-Grado;Gene S. Tan;Dirk Eggink

  • Broadly-Reactive Neutralizing and Non-neutralizing Antibodies Directed against the H7 Influenza Virus Hemagglutinin Reveal Divergent Mechanisms of Protection.

    Gene S. Tan;Paul E. Leon;Randy A. Albrecht;Irina Margine

  • Preexisting human antibodies neutralize recently emerged H7N9 influenza strains

    Carole J. Henry Dunand;Paul E. Leon;Kaval Kaur;Gene S. Tan

  • Assessment of influenza virus hemagglutinin stalk-based immunity in ferrets

    Florian Krammer;Rong Hai;Mark Yondola;Gene S. Tan

  • Attenuation of Rabies Virulence: Takeover by the Cytoplasmic Domain of Its Envelope Protein

    Christophe Préhaud;Nicolas Wolff;Elouan Terrien;Mireille Lafage

  • Symptomatic SARS-CoV-2 infections display specific IgG Fc structures

    Saborni Chakraborty;Joseph Gonzalez;Karlie Edwards;Vamsee Mallajosyula

Frequent Co-Authors

Kari C. Nadeau
Kari C. Nadeau Harvard University
Catherine A. Blish
Catherine A. Blish Stanford University
Scott D. Boyd
Scott D. Boyd Stanford University
Benjamin A. Pinsky
Benjamin A. Pinsky Stanford University
Patrick C. Wilson
Patrick C. Wilson Cornell University
Atul J. Butte
Atul J. Butte University of California, San Francisco
Bryan Greenhouse
Bryan Greenhouse University of California, San Francisco
Jeffery K. Taubenberger
Jeffery K. Taubenberger National Institutes of Health
Christopher W. Woods
Christopher W. Woods Duke University
Miriam Merad
Miriam Merad Icahn School of Medicine at Mount Sinai

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