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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
Xin Chen, Jeffrey J. Subleski, Heather Kopf, O. M. Zack Howard, Daniela N. Ma ̈nnel, Joost J. Oppenheim. Expression of TNFR2 defines a maximally suppressive subset of mouse CD4(+)CD25(+)FoxP3(+) T regulatory cells: Applicability to tumor-infiltrating T regulatory cells[J]. JOURNAL OF IMMUNOLOGY, 2008, 180(10), 6467-6471.
Authors:  Xin Chen;  Jeffrey J. Subleski;  Heather Kopf;  O. M. Zack Howard;  Daniela N. Ma ̈nnel; et al.
Favorite | TC[WOS]:268 TC[Scopus]:275  IF:3.6/4.2 | Submit date:2020/01/06
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
Xin Chen, Jeffrey J. Subleski, Heather Kopf, O.M. Zack Howard, Daniela N. Männel, Joost J. Oppenheim. 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[J]. JOURNAL OF IMMUNOLOGY, 2008, 180(10), 6467-6471.
Authors:  Xin Chen;  Jeffrey J. Subleski;  Heather Kopf;  O.M. Zack Howard;  Daniela N. Männel; et al.
Favorite | TC[WOS]:268 TC[Scopus]:275  IF:3.6/4.2 | Submit date:2019/01/14
t Cell  Cytokine Receptor  Tolerance/suppression/anergy  
Rapamycin inhibits differentiation of Th17 cells and promotesgeneration of FoxP3+ T regulatory cells Journal article
Heather Kopf, Gonzalo M. de la Rosa, O.M.Zack Howard, Xin Chen. Rapamycin inhibits differentiation of Th17 cells and promotesgeneration of FoxP3+ T regulatory cells[J]. International Immunopharmacology, 2007, 7(13), 1819-1824.
Authors:  Heather Kopf;  Gonzalo M. de la Rosa;  O.M.Zack Howard;  Xin Chen
Favorite | TC[WOS]:220 TC[Scopus]:224  IF:4.8/5.0 | Submit date:2020/01/07
Rapamycin  cd4+cd25+foxp3+ t Regulatory Cells  Th17 Cells