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Biology and Biochemistry

D-Index
43
Citations
12643
World Ranking
19347
National Ranking
676

Overview

Subash Sad is a researcher affiliated with the University of Ottawa in Canada. Their research primarily focuses on immunology and microbiology, biochemistry, genetics, molecular biology, and medicine. The scientist's work spans various subfields including immunology, molecular biology, pulmonary and respiratory medicine, nutrition and dietetics, and obstetrics and gynecology.

Their main research topics cover areas related to inflammasomes and immune disorders, immune response and inflammation, interferon and immune responses, phagocytosis and immune regulation, immune cell function and interaction, IL-33, ST2, and ILC pathways, as well as T-cell and B-cell immunology.

Subash Sad has authored several recent papers, reflecting their scientific interests and expertise. These publications include:

  • The TNFα/TNFR2 axis mediates natural killer cell proliferation by promoting aerobic glycolysis (2023, Cellular and Molecular Immunology)
  • Impairment in inflammasome signaling by the chronic Pseudomonas aeruginosa isolates from cystic fibrosis patients results in an increase in inflammatory response (2021, Cell Death and Disease)
  • The transcription factor Cdx2 regulates inflammasome activity through expression of the NLRP3 suppressor TRIM31 to maintain intestinal homeostasis (2022, Journal of Biological Chemistry)
  • Tristetraprolin regulates necroptosis during tonic Toll-like receptor 4 (TLR4) signaling in murine macrophages (2020, Journal of Biological Chemistry)
  • RIPK3 and Caspase-1/11 Are Necessary for Optimal Antigen-Specific CD8 T Cell Response Elicited by Genetically Modified Listeria monocytogenes (2020, Frontiers in Immunology)

The venues where Subash Sad frequently publishes include the Journal of Biological Chemistry, Cell Death and Disease, American Journal of Reproductive Immunology, Cellular and Molecular Immunology, and Pediatric Research. They have multiple publications in the Journal of Biological Chemistry and contribute to other specialized journals within immunology and related fields.

Coauthor collaborations are an integral aspect of their research. Frequent coauthors include:

  • Ardeshir Ariana
  • Stephanie Hajjar
  • David Cai
  • Melissa Phuong
  • Rayan El Hamra

Best Publications

  • The expanding universe of T-cell subsets: Th1, Th2 and more

    Tim R. Mosmann;Subash Sad

  • Cytokine-induced differentiation of precursor mouse CD8+ T cells into cytotoxic CD8+ T cells secreting Th1 or Th2 cytokines

    Subash Sad;Rita Marcotte;Tim R. Mosmann

  • Apoptotic vesicles crossprime CD8 T cells and protect against tuberculosis

    Florian Winau;Stephan Weber;Subash Sad;Juana de Diego

  • Type I interferon induces necroptosis in macrophages during infection with Salmonella enterica serovar Typhimurium

    Nirmal Robinson;Scott McComb;Scott McComb;Rebecca Mulligan;Rebecca Mulligan;Rebecca Mulligan;Renu Dudani

  • Single IL-2-secreting precursor CD4 T cell can develop into either Th1 or Th2 cytokine secretion phenotype.

    S Sad;T R Mosmann

  • Functions of CD8 T-cell subsets secreting different cytokine patterns☆

    Tim R. Mosmann;Li Li;Subash Sad

  • Targeting macrophage necroptosis for therapeutic and diagnostic interventions in atherosclerosis

    Denuja Karunakaran;Michele Geoffrion;Lihui Wei;Wei Gan

  • Type-I interferon signaling through ISGF3 complex is required for sustained Rip3 activation and necroptosis in macrophages

    Scott McComb;Erin Cessford;Norah A. Alturki;Julie Joseph

  • cIAP1 and cIAP2 limit macrophage necroptosis by inhibiting Rip1 and Rip3 activation

    S McComb;H H Cheung;H H Cheung;R G Korneluk;R G Korneluk;S Wang

  • CD8Tc1 and Tc2 cells secrete distinct cytokine patterns in vitro and in vivo but induce similar inflammatory reactions.

    L Li;S Sad;D Kägi;T R Mosmann

  • IL-15 regulates CD8+ T cell contraction during primary infection.

    Toshiki Yajima;Kazufumi Yoshihara;Kenji Nakazato;Shino Kumabe

  • Multiple Mechanisms Compensate to Enhance Tumor-Protective CD8+ T Cell Response in the Long-Term Despite Poor CD8+ T Cell Priming Initially: Comparison Between an Acute Versus a Chronic Intracellular Bacterium Expressing a Model Antigen

    Renu Dudani;Yvan Chapdelaine;Henk van Faassen;Dean K. Smith

  • Biochemical Engineering of Surface α2–8 Polysialic Acid for Immunotargeting Tumor Cells

    Tianmin Liu;Zhongwu Guo;Qingling Yang;Subash Sad

  • Reducing the Stimulation of CD8+ T Cells during Infection with Intracellular Bacteria Promotes Differentiation Primarily into a Central (CD62LhighCD44high) Subset

    Henk van Faassen;Marsha Saldanha;Deanna Gilbertson;Renu Dudani

  • Archaeosomes Induce Long-Term CD8+ Cytotoxic T Cell Response to Entrapped Soluble Protein by the Exogenous Cytosolic Pathway, in the Absence of CD4+ T Cell Help

    L Krishnan;S Sad;G B Patel;G D Sprott

  • The Potent Adjuvant Activity of Archaeosomes Correlates to the Recruitment and Activation of Macrophages and Dendritic Cells In Vivo

    L Krishnan;S Sad;G B Patel;G D Sprott

  • VEGF-Mediated Induction of PRD1-BF1/Blimp1 Expression Sensitizes Tumor Vasculature to Oncolytic Virus Infection

    Rozanne Arulanandam;Cory Batenchuk;Fernando A. Angarita;Kathryn Ottolino-Perry

  • Interleukin (IL) 4, in the absence of antigen stimulation, induces an anergy-like state in differentiated CD8+ TC1 cells: loss of IL-2 synthesis and autonomous proliferation but retention of cytotoxicity and synthesis of other cytokines.

    Subash Sad;Tim R. Mosmann

  • Perforin and Fas killing by CD8+ T cells limits their cytokine synthesis and proliferation.

    S Sad;D Kägi;T R Mosmann

  • Cytotoxicity and weak CD40 ligand expression of CD8+ type 2 cytotoxic T cells restricts their potential B cell helper activity.

    Subash Sad;Subash Sad;Lakshmi Krishnan;R. Chris Bleackley;David Kägi

Frequent Co-Authors

Tim R. Mosmann
Tim R. Mosmann University of Rochester Medical Center
Hao Shen
Hao Shen University of Pennsylvania
Robert G. Korneluk
Robert G. Korneluk University of Ottawa
B. Brett Finlay
B. Brett Finlay University of British Columbia
Yasunobu Yoshikai
Yasunobu Yoshikai Kyushu University
John C. Bell
John C. Bell University of Ottawa
Ulf Hedin
Ulf Hedin Karolinska Institute
Earl G. Brown
Earl G. Brown University of Ottawa
Renu Virmani
Renu Virmani CVPath Institute
Harold J. Jennings
Harold J. Jennings National Academies of Sciences, Engineering, and Medicine

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