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Interaction of TNF and TNFR2 stabilizes the phenotype and function of CD4+ FoxP3+ regulatory T cells in the inflammatory environment Meeting Absctact
2016
Authors:  Xin Chen;  Xueqiang Wu;  O.M.Zack Howard;  Joost Oppenheim
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Effective chemoimmunotherapy with anti-TGFβ antibody and cyclophosphamide on a mouse model of breast cancer Journal article
PLOS ONE, 2014,Volume: 9,Issue: 1
Authors:  Xin Chen;  Yuan Yang;  Qiong Zhou;  Jonathan M. Weiss;  OlaMae Zack Howard;  John M. McPherson;  Lalage M. Wakefield;  Joost J. Oppenheim
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In vitro generated Th17 cells support the expansion and phenotypic stability of CD4+ Foxp3+ regulatory T cells in vivo Journal article
CYTOKINE, 2014,Volume: 65,Issue: 1,Page: 56-64
Authors:  Qiong Zhou;  Ya Hu;  O.M. Zack Howard;  Joost J. Oppenheim;  Xin Chen
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Regulatory t Cell  Il-2  Tnf  Tnfr2  Th17  
TNFR2 Is Critical for the Stabilization of the CD4+ Foxp3+ Regulatory T Cell Phenotype in the Inflammatory Environment Journal article
JOURNAL OF IMMUNOLOGY, 2013,Volume: 190,Issue: 3,Page: 1076-1084
Authors:  Xin Chen;  Xueqing Wu;  Qiong Zhou;  O.M. Zack Howard;  Mihai G. Netea;  Joost J. Oppenheim
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IKKalpha is critical for the maintenance of a normal pool of regulatory T cells and for the expansion of both regulatory and effector T cells Meeting Absctact
2013
Authors:  Xin Chen;  Jami Willette-Brown;  Xueqiang Wu;  O.M. Zack Howard;  Yinling Hu;  Joost Oppenheim
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Expression of costimulatory TNFR2 induces resistance of CD4+ FoxP3− conventional T cells to suppression by CD4+ FoxP3+ regulatory T cells Journal article
JOURNAL OF IMMUNOLOGY, 2010,Volume: 185,Issue: 1,Page: 174-182
Authors:  Xin Chen;  Ryoko Hamano;  Jeffrey J. Subleski;  Arthur A. Hurwitz;  O. M. Zack Howard;  Joost J. Oppenheim
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Inhibitory effect of Sheng Qi Formula (SQF) on Gr-1+ CD11b+ myeloid immunosuppressor cells (MIC) in the 4T1 murine mammary cancer model Meeting Absctact
2008
Authors:  Jie Li;  Xin Chen;  Hong Sheng Lin;  Joost J Oppenheim;  O.M.Zack Howard
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Cutting edge: expression of TNFR2 defines a maximally suppressive subset of mouse CD4+ CD25+ FoxP3+ T regulatory cells: applicability to tumor-infiltrating T regulatory cells Journal article
JOURNAL OF IMMUNOLOGY, 2008,Volume: 180,Issue: 10,Page: 6467-6471
Authors:  Xin Chen;  Jeffrey J. Subleski;  Heather Kopf;  O.M. Zack Howard;  Daniela N. Männel;  Joost J. Oppenheim
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t Cell  Cytokine Receptor  Tolerance/suppression/anergy  
Cutting Edge: Expression of TNFR2 defines a maximally suppressive subset of mouse CD4+CD25+FoxP3+ T regulatory cells: Applicability to tumor-infiltrating T regulatory cells Journal article
Journal of Immunology, 2008,Volume: 180,Issue: 10,Page: 6467-6471
Authors:  Chen X.;  Subleski J.J.;  Kopf H.;  Zack Howard O.M.;  Mannel D.N.;  Oppenheim J.J.
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Biological regulators of CD4+CD25+FOXP3+regulatory T-cells Meeting Absctact
2007
Authors:  O.M. Zack Howard;  Joost J. Oppenheim;  Xin Chen
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