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Alexander V. Chervonsky

Alexander V. Chervonsky

D-Index & Metrics

Immunology

D-Index
45
Citations
11674
World Ranking
4673
National Ranking
2106

Overview

Alexander V. Chervonsky is affiliated with the University of Chicago in the United States. Their research primarily focuses on immunology and microbiology, biochemistry, genetics, molecular biology, and medicine with an emphasis on subfields such as immunology, genetics, molecular biology, surgery, and virology.

The scientist's work addresses several main topics, including:

  • Immune Cell Function and Interaction
  • Diabetes and associated disorders
  • Gut microbiota and health
  • T-cell and B-cell Immunology
  • HIV Research and Treatment
  • Pancreatic function and diabetes
  • Tryptophan and brain disorders

Among their recent publications are the following papers:

  • The MHC-II peptidome of pancreatic islets identifies key features of autoimmune peptides, 2020, Nature Immunology
  • Integrated Pancreatic Blood Flow: Bidirectional Microcirculation Between Endocrine and Exocrine Pancreas, 2020, Diabetes
  • Microbiota-mediated skewing of tryptophan catabolism modulates CD4+ T cells in lupus-prone mice, 2022, iScience
  • Innate Immunity in Type 1 Diabetes, 2024, Cold Spring Harbor Perspectives in Medicine
  • Microbiota-dependent proteolysis of gluten subverts diet-mediated protection against type 1 diabetes, 2023, Cell Host & Microbe

Frequent coauthors in their research include:

  • Tatyana V. Golovkina
  • Jean Lee
  • Aly A. Khan
  • Anthony Chang
  • Jessica Spring

Alexander V. Chervonsky's work has appeared regularly in publication venues such as:

  • Nature Immunology
  • The Journal of Immunology
  • Cell Host & Microbe
  • Cell Reports
  • bioRxiv (Cold Spring Harbor Laboratory)

Best Publications

  • Innate immunity and intestinal microbiota in the development of Type 1 diabetes

    Li Wen;Ruth E. Ley;Ruth E. Ley;Pavel Yu. Volchkov;Peter B. Stranges

  • Gender Bias in Autoimmunity Is Influenced by Microbiota

    Leonid Yurkovetskiy;Michael Burrows;Aly A. Khan;Laura Graham

  • The Role of Fas in Autoimmune Diabetes

    Alexander V Chervonsky;Yi Wang;F.Susan Wong;Irene Visintin

  • In Vivo Requirement for Atg5 in Antigen Presentation by Dendritic Cells

    Heung Kyu Lee;Lisa M. Mattei;Benjamin E. Steinberg;Philipp Alberts

  • Rapid fucosylation of intestinal epithelium sustains host–commensal symbiosis in sickness

    Joseph M. Pickard;Corinne F. Maurice;Melissa A. Kinnebrew;Michael C. Abt

  • Successful Transmission of a Retrovirus Depends on the Commensal Microbiota

    Melissa Kane;Laure K. Case;Karyl Kopaskie;Alena Kozlova

  • Elimination of Antigen-Presenting Cells and Autoreactive T Cells by Fas Contributes to Prevention of Autoimmunity

    Peter B. Stranges;Jessica Watson;Cristie J. Cooper;Caroline Morgane Choisy-Rossi

  • Organogenic role of B lymphocytes in mucosal immunity.

    Tatyana V. Golovkina;Mark Shlomchik;Lynn Hannum;Alexander Chervonsky

  • Transgenic mouse mammary tumor virus superantigen expression prevents viral infection.

    Tatyana V. Golovkina;Alexander Chervonsky;Jaquelin P. Dudley;Susan R. Ross

  • Distinct role of surface lymphotoxin expressed by B cells in the organization of secondary lymphoid tissues.

    Alexei V. Tumanov;Alexei V. Tumanov;Dmitry V. Kuprash;Maria A. Lagarkova;Sergei I. Grivennikov

  • Presentation of Antigen by Endothelial Cells and Chemoattraction Are Required for Homing of Insulin-specific CD8+ T Cells

    Alexei Y. Savinov;F. Susan Wong;Austin C. Stonebraker;Alexander V. Chervonsky

  • Intestinal Fucose as a Mediator of Host–Microbe Symbiosis

    Joseph M. Pickard;Alexander V. Chervonsky

  • Influence of microbial environment on autoimmunity.

    Alexander V Chervonsky

  • Subversion of the innate immune system by a retrovirus.

    Brooke A Jude;Yelena Pobezinskaya;Jennifer Bishop;Susannah Parke

  • Deletion of Fas in adipocytes relieves adipose tissue inflammation and hepatic manifestations of obesity in mice

    Stephan Wueest;Reto A. Rapold;Desiree M. Schumann;Julia M. Rytka

  • Microbiota regulates type 1 diabetes through Toll-like receptors.

    Michael P. Burrows;Pavel Volchkov;Koichi S. Kobayashi;Alexander V. Chervonsky

  • Recruitment and Activation of Naive T Cells in the Islets by Lymphotoxin β Receptor-Dependent Tertiary Lymphoid Structure

    Youjin Lee;Robert K. Chin;Peter Christiansen;Yonglian Sun

  • The requirement for DM in class II-restricted antigen presentation and SDS-stable dimer formation is allele and species dependent.

    C C Stebbins;G E Loss;C G Elias;A Chervonsky

  • Regional mucosa-associated microbiota determine physiological expression of TLR2 and TLR4 in murine colon.

    Yunwei Wang;Suzanne Devkota;Mark W. Musch;Bana Jabri

  • Multidrug-resistance phenotype of a subpopulation of T-lymphocytes without drug selection.

    Alexander A. Neyfakh;Anna S. Serpinskaya;Alexander V. Chervonsky;Sergey G. Apasov

  • Role of Fas in Autoimmune Diabetes

    Conchi Mora;Li Wen;Ramon Gomis;E. Allison Green

Frequent Co-Authors

F. Susan Wong
F. Susan Wong Cardiff University
Richard A. Flavell
Richard A. Flavell Yale University
Charles A. Janeway
Charles A. Janeway Yale University
Sergei A. Nedospasov
Sergei A. Nedospasov Lomonosov Moscow State University
Andrea J. Sant
Andrea J. Sant University of Rochester Medical Center
Ruslan Medzhitov
Ruslan Medzhitov Yale University
Li Wen
Li Wen Yale University
Alexander Y. Rudensky
Alexander Y. Rudensky Memorial Sloan Kettering Cancer Center
Susan R. Ross
Susan R. Ross University of Illinois at Chicago
Akiko Iwasaki
Akiko Iwasaki Yale University

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