Joseph J. Barbi, Ph.D. - Publications

Affiliations: 
2008 Microbiology Ohio State University, Columbus, Columbus, OH 
Area:
Immunology

32 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2024 Yu H, Nishio H, Barbi J, Mitchell-Flack M, Vignali PDA, Zheng Y, Lebid A, Chang KY, Fu J, Higgins M, Huang CT, Zhang X, Li Z, Blosser L, Tam A, et al. Neurotrophic factor Neuritin modulates T cell electrical and metabolic state for the balance of tolerance and immunity. Biorxiv : the Preprint Server For Biology. PMID 38352414 DOI: 10.1101/2024.01.31.578284  0.32
2021 Qiao G, Chen M, Mohammadpour H, MacDonald CR, Bucsek MJ, Hylander BL, Barbi JJ, Repasky EA. Chronic adrenergic stress contributes to metabolic dysfunction and an exhausted phenotype in T cells in the tumor microenvironment. Cancer Immunology Research. PMID 33762351 DOI: 10.1158/2326-6066.CIR-20-0445  0.333
2020 Yang J, Wei P, Barbi J, Huang Q, Yang E, Bai Y, Nie J, Gao Y, Tao J, Lu Y, Xie C, Hou X, Ren J, Wu X, Meng J, et al. The deubiquitinase USP44 promotes Treg function during inflammation by preventing FOXP3 degradation. Embo Reports. e50308. PMID 32644293 DOI: 10.15252/Embr.202050308  0.418
2019 Ni X, Kou W, Gu J, Wei P, Wu X, Peng H, Tao J, Yan W, Yang X, Lebid A, Park BV, Chen Z, Tian Y, Fu J, Newman S, ... ... Barbi J, et al. TRAF6 directs FOXP3 localization and facilitates regulatory T-cell function through K63-linked ubiquitination. The Embo Journal. PMID 30886050 DOI: 10.15252/Embj.201899766  0.434
2018 Ni X, Tao J, Barbi J, Chen Q, Park BV, Li Z, Zhang N, Lebid A, Ramaswamy A, Wei P, Zheng Y, Zhang X, Wu X, Vignali PDA, Yang C, et al. YAP is essential for Treg mediated suppression of anti-tumor immunity. Cancer Discovery. PMID 29907586 DOI: 10.1158/2159-8290.Cd-17-1124  0.408
2017 Lu L, Barbi J, Pan F. The regulation of immune tolerance by FOXP3. Nature Reviews. Immunology. PMID 28757603 DOI: 10.1038/Nri.2017.75  0.306
2016 Yang HY, Barbi J, Wu CY, Zheng Y, Vignali PD, Wu X, Tao JH, Park BV, Bandara S, Novack L, Ni X, Yang X, Chang KY, Wu RC, Zhang J, et al. MicroRNA-17 Modulates Regulatory T Cell Function by Targeting Co-regulators of the Foxp3 Transcription Factor. Immunity. 45: 83-93. PMID 27438767 DOI: 10.1016/J.Immuni.2016.06.022  0.362
2015 Tao JH, Barbi J, Pan F. Effect of hypoxia on T cell differentiation. A Review in the Theme: Cellular Responses to Hypoxia. American Journal of Physiology. Cell Physiology. ajpcell.00204.2015. PMID 26354751 DOI: 10.1152/Ajpcell.00204.2015  0.382
2015 Barbi J, Pardoll DM, Pan F. Ubiquitin-dependent regulation of Foxp3 and Treg function. Immunological Reviews. 266: 27-45. PMID 26085205 DOI: 10.1111/Imr.12312  0.413
2014 Pan F, Barbi J. Ubiquitous points of control over regulatory T cells. Journal of Molecular Medicine (Berlin, Germany). 92: 555-69. PMID 24777637 DOI: 10.1007/S00109-014-1156-Z  0.439
2014 Barbi J, Pardoll D, Pan F. Treg functional stability and its responsiveness to the microenvironment. Immunological Reviews. 259: 115-39. PMID 24712463 DOI: 10.1111/Imr.12172  0.375
2014 Lezama-Dávila CM, Pan L, Isaac-Márquez AP, Terrazas C, Oghumu S, Isaac-Márquez R, Pech-Dzib MY, Barbi J, Calomeni E, Parinandi N, Kinghorn AD, Satoskar AR. Pentalinon andrieuxii root extract is effective in the topical treatment of cutaneous leishmaniasis caused by Leishmania mexicana. Phytotherapy Research : Ptr. 28: 909-16. PMID 24347110 DOI: 10.1002/Ptr.5079  0.72
2013 Chen Z, Barbi J, Bu S, Yang HY, Li Z, Gao Y, Jinasena D, Fu J, Lin F, Chen C, Zhang J, Yu N, Li X, Shan Z, Nie J, et al. The ubiquitin ligase Stub1 negatively modulates regulatory T cell suppressive activity by promoting degradation of the transcription factor Foxp3. Immunity. 39: 272-85. PMID 23973223 DOI: 10.1016/J.Immuni.2013.08.006  0.499
2013 van Loosdregt J, Fleskens V, Fu J, Brenkman AB, Bekker CP, Pals CE, Meerding J, Berkers CR, Barbi J, Gröne A, Sijts AJ, Maurice MM, Kalkhoven E, Prakken BJ, Ovaa H, et al. Stabilization of the transcription factor Foxp3 by the deubiquitinase USP7 increases Treg-cell-suppressive capacity. Immunity. 39: 259-71. PMID 23973222 DOI: 10.1016/J.Immuni.2013.05.018  0.444
2013 Barbi J, Pardoll D, Pan F. Metabolic control of the Treg/Th17 axis. Immunological Reviews. 252: 52-77. PMID 23405895 DOI: 10.1111/Imr.12029  0.426
2012 Pan F, Barbi J, Pardoll DM. Hypoxia-inducible factor 1: A link between metabolism and T cell differentiation and a potential therapeutic target. Oncoimmunology. 1: 510-515. PMID 22754770 DOI: 10.4161/Onci.19457  0.472
2012 Cummings HE, Barbi J, Reville P, Oghumu S, Zorko N, Sarkar A, Keiser TL, Lu B, Rückle T, Varikuti S, Lezama-Davila C, Wewers MD, Whitacre C, Radzioch D, Rommel C, et al. Critical role for phosphoinositide 3-kinase gamma in parasite invasion and disease progression of cutaneous leishmaniasis. Proceedings of the National Academy of Sciences of the United States of America. 109: 1251-6. PMID 22232690 DOI: 10.1073/Pnas.1110339109  0.711
2011 Dang EV, Barbi J, Yang HY, Jinasena D, Yu H, Zheng Y, Bordman Z, Fu J, Kim Y, Yen HR, Luo W, Zeller K, Shimoda L, Topalian SL, Semenza GL, et al. Control of TH17/Treg balance by hypoxia-inducible factor 1 Cell. 146: 772-784. PMID 21871655 DOI: 10.1016/J.Cell.2011.07.033  0.463
2011 Kulkarni MM, Barbi J, McMaster WR, Gallo RL, Satoskar AR, McGwire BS. Mammalian antimicrobial peptide influences control of cutaneous Leishmania infection. Cellular Microbiology. 13: 913-23. PMID 21501359 DOI: 10.1111/J.1462-5822.2011.01589.X  0.636
2009 Pan F, Yu H, Dang EV, Barbi J, Pan X, Grosso JF, Jinasena D, Sharma SM, McCadden EM, Getnet D, Drake CG, Liu JO, Ostrowski MC, Pardoll DM. Eos mediates Foxp3-dependent gene silencing in CD4+ regulatory T cells. Science (New York, N.Y.). 325: 1142-6. PMID 19696312 DOI: 10.1126/Science.1176077  0.408
2009 Barbi J, Snider HM, Bhardwaj N, Lezama-Dávila CM, Durbin JE, Satoskar AR. Signal transducer and activator of transcription 1 in T cells plays an indispensable role in immunity to Leishmania major by mediating Th1 cell homing to the site of infection. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 23: 3990-9. PMID 19641143 DOI: 10.1096/Fj.09-138057  0.708
2008 Barbi J, Brombacher F, Satoskar AR. T cells from Leishmania major-susceptible BALB/c mice have a defect in efficiently up-regulating CXCR3 upon activation. Journal of Immunology (Baltimore, Md. : 1950). 181: 4613-20. PMID 18802063 DOI: 10.4049/Jimmunol.181.7.4613  0.701
2008 Barbi J, Cummings HE, Lu B, Oghumu S, Rückle T, Rommel C, Lafuse W, Whitacre CC, Satoskar AR. PI3Kgamma (PI3Kgamma) is essential for efficient induction of CXCR3 on activated T cells. Blood. 112: 3048-51. PMID 18658026 DOI: 10.1182/Blood-2008-02-135715  0.711
2008 Flores M, Saavedra R, Bautista R, Viedma R, Tenorio EP, Leng L, Sánchez Y, Juárez I, Satoskar AA, Shenoy AS, Terrazas LI, Bucala R, Barbi J, Satoskar AR, Rodriguez-Sosa M. Macrophage migration inhibitory factor (MIF) is critical for the host resistance against Toxoplasma gondii. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 22: 3661-71. PMID 18606868 DOI: 10.1096/Fj.08-111666  0.663
2008 Lezama-Dávila CM, Isaac-Márquez AP, Barbi J, Cummings HE, Lu B, Satoskar AR. Role of phosphatidylinositol-3-kinase-gamma (PI3Kgamma)-mediated pathway in 17beta-estradiol-induced killing of L. mexicana in macrophages from C57BL/6 mice. Immunology and Cell Biology. 86: 539-43. PMID 18542100 DOI: 10.1038/Icb.2008.39  0.736
2007 Barbi J, Oghumu S, Lezama-Davila CM, Satoskar AR. IFN-gamma and STAT1 are required for efficient induction of CXC chemokine receptor 3 (CXCR3) on CD4+ but not CD8+ T cells. Blood. 110: 2215-6. PMID 17785588 DOI: 10.1182/Blood-2007-03-081307  0.736
2007 Barbi J, Oghumu S, Rosas LE, Carlson T, Lu B, Gerard C, Lezama-Davila CM, Satoskar AR. Lack of CXCR3 delays the development of hepatic inflammation but does not impair resistance to Leishmania donovani. The Journal of Infectious Diseases. 195: 1713-7. PMID 17471442 DOI: 10.1086/516787  0.762
2007 LEZAMA-DÁVILA C, OGHUMU S, BARBI J, SATOSKAR A, ISAAC-MÁRQUEZ A. 17β-ESTRADIOL INCREASES LEISHMANIA MEXICANA KILLING IN MACROPHAGES FROM DBA/2 MICE BY ENHANCING PRODUCTION OF NITRIC OXIDE BUT NOT PRO-INFLAMMATORY CYTOKINES The American Journal of Tropical Medicine and Hygiene. 76: 1125-1127. DOI: 10.4269/Ajtmh.2007.76.1125  0.707
2006 Rosas LE, Snider HM, Barbi J, Satoskar AA, Lugo-Villarino G, Keiser T, Papenfuss T, Durbin JE, Radzioch D, Glimcher LH, Satoskar AR. Cutting edge: STAT1 and T-bet play distinct roles in determining outcome of visceral leishmaniasis caused by Leishmania donovani. Journal of Immunology (Baltimore, Md. : 1950). 177: 22-5. PMID 16785492 DOI: 10.4049/Jimmunol.177.1.22  0.694
2006 Rosas LE, Satoskar AA, Roth KM, Keiser TL, Barbi J, Hunter C, De Sauvage FJ, Satoskar AR. Interleukin-27R (WSX-1/T-cell cytokine receptor) gene-deficient mice display enhanced resistance to Leishmania donovani infection but develop severe liver immunopathology American Journal of Pathology. 168: 158-169. PMID 16400019 DOI: 10.2353/Ajpath.2006.050013  0.709
2005 Rosas LE, Keiser T, Barbi J, Satoskar AA, Septer A, Kaczmarek J, Lezama-Davila CM, Satoskar AR. Genetic background influences immune responses and disease outcome of cutaneous L. mexicana infection in mice. International Immunology. 17: 1347-57. PMID 16141242 DOI: 10.1093/Intimm/Dxh313  0.673
2005 Rosas LE, Barbi J, Lu B, Fujiwara Y, Gerard C, Sanders VM, Satoskar AR. CXCR3-/- mice mount an efficient Th1 response but fail to control Leishmania major infection. European Journal of Immunology. 35: 515-23. PMID 15668916 DOI: 10.1002/Eji.200425422  0.708
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