Ira Tabas
Affiliations: | Cellular Physiology and Biophysics | Columbia University, New York, NY |
Area:
Medicine and Surgery, Physiology BiologyGoogle:
"Ira Tabas"Parents
Sign in to add mentorStuart A. Kornfeld | grad student | 1981 | Washington University (Chemistry Tree) |
Alan Tall | post-doc | 1983-1985 | Columbia |
Children
Sign in to add traineeAndrew R. Leventhal | grad student | 2004 | Columbia (Cell Biology Tree) |
Arif Yurdagul, Jr. | post-doc | 2016- | Columbia (Cell Biology Tree) |
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Publications
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Sukka SR, Ampomah PB, Darville LNF, et al. (2024) Efferocytosis drives a tryptophan metabolism pathway in macrophages to promote tissue resolution. Nature Metabolism |
Yalcinkaya M, Liu W, Thomas LA, et al. (2023) BRCC3-Mediated NLRP3 Deubiquitylation Promotes Inflammasome Activation and Atherosclerosis in Clonal Hematopoiesis. Circulation |
Dai W, Zhang H, Lund H, et al. (2023) Intracellular tPA-PAI-1 interaction determines VLDL assembly in hepatocytes. Science (New York, N.Y.). 381: eadh5207 |
Liu W, Yalcinkaya M, Maestre IF, et al. (2023) Blockade of IL-6 signaling alleviates atherosclerosis in -deficient clonal hematopoiesis. Nature Cardiovascular Research. 2: 572-586 |
Schilperoort M, Ngai D, Sukka SR, et al. (2023) The role of efferocytosis-fueled macrophage metabolism in the resolution of inflammation. Immunological Reviews |
Schilperoort M, Ngai D, Katerelos M, et al. (2023) PFKFB2-mediated glycolysis promotes lactate-driven continual efferocytosis by macrophages. Nature Metabolism |
Ampomah PB, Cai B, Sukka SR, et al. (2022) Macrophages use apoptotic cell-derived methionine and DNMT3A during efferocytosis to promote tissue resolution. Nature Metabolism |
Gerlach BD, Ampomah PB, Yurdagul A, et al. (2021) Efferocytosis induces macrophage proliferation to help resolve tissue injury. Cell Metabolism |
Tao W, Yurdagul A, Kong N, et al. (2020) siRNA nanoparticles targeting CaMKIIγ in lesional macrophages improve atherosclerotic plaque stability in mice. Science Translational Medicine. 12 |
Liu L, Fan L, Chan M, et al. (2020) PPARγ Deacetylation Confers the Anti-Atherogenic Effect and Improves Endothelial Function in Diabetes Treatment. Diabetes |