Igor E. Brodsky, Ph.D.
Affiliations: | Stanford University, Palo Alto, CA |
Area:
Bacterial pathogenicityGoogle:
"Igor Brodsky"Parents
Sign in to add mentorStanley Falkow | grad student | 2004 | Stanford | |
(Role of Salmonella virulence genes in bacterial resistance to antimicrobial peptides and systemic disease.) | ||||
Ruslan Medzhitov | post-doc | (Chemistry Tree) |
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Publications
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Matsuda R, Sorobetea D, Zhang J, et al. (2024) A TNF-IL-1 circuit controls Yersinia within intestinal pyogranulomas. The Journal of Experimental Medicine. 221 |
Wertman RS, Go CK, Saller BS, et al. (2023) Sequentially activated death complexes regulate pyroptosis and IL-1β release in response to blockade of immune signaling. Biorxiv : the Preprint Server For Biology |
Herrmann BI, Grayczyk JP, Brodsky IE. (2023) Collab or Cancel? Bacterial Influencers of Inflammasome Signaling. Annual Review of Microbiology. 77: 451-477 |
Zhang J, Brodsky IE, Shin S. (2023) deploys type III-secreted effectors to evade caspase-4 inflammasome activation in human cells. Mbio. e0131023 |
Egan MS, O'Rourke EA, Mageswaran SK, et al. (2023) Inflammasomes primarily restrict cytosolic replication within human macrophages. Biorxiv : the Preprint Server For Biology |
Pollock TY, Vázquez Marrero VR, Brodsky IE, et al. (2023) TNF licenses macrophages to undergo rapid caspase-1, -11, and -8-mediated cell death that restricts Legionella pneumophila infection. Plos Pathogens. 19: e1010767 |
Matsuda R, Sorobetea D, Zhang J, et al. (2023) A TNF-IL-1 circuit controls within intestinal granulomas. Biorxiv : the Preprint Server For Biology |
Sorobetea D, Matsuda R, Peterson ST, et al. (2023) Inflammatory monocytes promote granuloma control of Yersinia infection. Nature Microbiology. 8: 666-678 |
Zhang J, Brodsky IE, Shin S. (2023) Type III-Secreted Effectors Subvert Caspase-4-dependent Inflammasome Activation in Human Cells. Biorxiv : the Preprint Server For Biology |
Chen KW, Brodsky IE. (2022) Yersinia interactions with regulated cell death pathways. Current Opinion in Microbiology. 71: 102256 |