-
CD1-reactive natural killer T cells are required for development of systemic tolerance through an immune-privileged site.
J Exp Med. 1999 Nov 1;190(9):1215-26
PMID: 10544194
-
Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases.
J Immunol. 1995 Aug 1;155(3):1151-64
PMID: 7636184
-
Coupling and uncoupling of tumor immunity and autoimmunity.
J Exp Med. 1999 Dec 6;190(11):1717-22
PMID: 10587362
-
NKT cell-mediated repression of tumor immunosurveillance by IL-13 and the IL-4R-STAT6 pathway.
Nat Immunol. 2000 Dec;1(6):515-20
PMID: 11101874
-
Immune suppression and skin cancer development: regulation by NKT cells.
Nat Immunol. 2000 Dec;1(6):521-5
PMID: 11101875
-
Synergism of cytotoxic T lymphocyte-associated antigen 4 blockade and depletion of CD25(+) regulatory T cells in antitumor therapy reveals alternative pathways for suppression of autoreactive cytotoxic T lymphocyte responses.
J Exp Med. 2001 Sep 17;194(6):823-32
PMID: 11560997
-
Stimulation of CD25(+)CD4(+) regulatory T cells through GITR breaks immunological self-tolerance.
Nat Immunol. 2002 Feb;3(2):135-42
PMID: 11812990
-
Ocular immune privilege and CD1d-reactive natural killer T cells.
Cornea. 2002 Mar;21(2 Suppl 1):S33-8
PMID: 11995808
-
Regulation of tumour immunity by CD25+ T cells.
Immunology. 2002 Sep;107(1):5-9
PMID: 12225357
-
Multiple pathways to tumor immunity and concomitant autoimmunity.
Immunol Rev. 2002 Oct;188:122-35
PMID: 12445286
-
CD4+CD25+ regulatory T cells control Leishmania major persistence and immunity.
Nature. 2002 Dec 5;420(6915):502-7
PMID: 12466842
-
Control of regulatory T cell development by the transcription factor Foxp3.
Science. 2003 Feb 14;299(5609):1057-61
PMID: 12522256
-
Foxp3 programs the development and function of CD4+CD25+ regulatory T cells.
Nat Immunol. 2003 Apr;4(4):330-6
PMID: 12612578
-
A single heteroclitic epitope determines cancer immunity after xenogeneic DNA immunization against a tumor differentiation antigen.
J Immunol. 2003 May 15;170(10):5188-94
PMID: 12734366
-
Granulocyte-macrophage colony-stimulating factor gene-transduced tumor cells combined with tumor-derived gp96 inhibit tumor growth in mice.
Hum Gene Ther. 2003 May 20;14(8):715-28
PMID: 12804136
-
Cutting edge: self-peptides drive the peripheral expansion of CD4+CD25+ regulatory T cells.
J Immunol. 2003 Dec 1;171(11):5678-82
PMID: 14634074
-
Tumor-specific human CD4+ regulatory T cells and their ligands: implications for immunotherapy.
Immunity. 2004 Jan;20(1):107-18
PMID: 14738769
-
CD4+CD25+ regulatory T cells suppress tumor immunity but are sensitive to cyclophosphamide which allows immunotherapy of established tumors to be curative.
Eur J Immunol. 2004 Feb;34(2):336-44
PMID: 14768038
-
GITR activation induces an opposite effect on alloreactive CD4(+) and CD8(+) T cells in graft-versus-host disease.
J Exp Med. 2004 Jul 19;200(2):149-57
PMID: 15249593
-
On concomitant immunity in tumour-bearing hamsters.
Nature. 1967 Feb 18;213(5077):674-6
PMID: 6031772
-
The adoptive transfer of concomitant immunity to murine tumor isografts with spleen cells from tumor-bearing animals.
Cancer Res. 1971 Jun;31(6):734-42
PMID: 5088484
-
Transplantation immunity to simian virus 40-transformed cells in tumor-bearing mice. II. Evidence for macrophage participation at the effector level of tumor cell rejection.
J Natl Cancer Inst. 1973 Jan;50(1):149-57
PMID: 4348219
-
Evolution of cell-mediated antitumor immunity in mice bearing a syngeneic chemically induced tumor. Influence of tumor growth, surgical removal and treatment with irradiated tumor cells.
Int J Cancer. 1972 May 15;9(3):461-9
PMID: 4660932
-
The development and specific suppression of concomitant immunity in two syngeneic tumour-host systems.
Int J Cancer. 1973 May;11(3):648-62
PMID: 4598551
-
Defects in cell-mediated immunity during growth of a syngeneic simian virus-induced tumor.
Int J Cancer. 1975 Jan 15;15(1):152-69
PMID: 236258
-
The immunological basis of endotoxin-induced tumor regression. Requirement for a pre-existing state of concomitant anti-tumor immunity.
J Exp Med. 1978 Dec 1;148(6):1560-9
PMID: 309922
-
T-cell-mediated suppression of anti-tumor immunity. An explanation for progressive growth of an immunogenic tumor.
J Exp Med. 1980 Jan 1;151(1):69-80
PMID: 6444236
-
On the mechanism of tumor "concomitant immunity".
Int J Cancer. 1981 Jun 15;27(6):847-56
PMID: 7287231
-
Induction of tumor immunity by removing CD25+CD4+ T cells: a common basis between tumor immunity and autoimmunity.
J Immunol. 1999 Nov 15;163(10):5211-8
PMID: 10553041
-
Cyclophosphamide-facilitated adoptive immunotherapy of an established tumor depends on elimination of tumor-induced suppressor T cells.
J Exp Med. 1982 Apr 1;155(4):1063-74
PMID: 6460831
-
Concomitant tumor immunity and the resistance to a second tumor challenge.
Adv Cancer Res. 1983;39:71-120
PMID: 6194674
-
Generation and decay of the immune response to a progressive fibrosarcoma. I. Ly-1+2- suppressor T cells down-regulate the generation of Ly-1-2+ effector T cells.
J Exp Med. 1984 May 1;159(5):1295-311
PMID: 6232335
-
Suppression of generation of concomitant antitumor immunity by passively transferred suppressor T cells from tumor-bearing donors.
Cancer Immunol Immunother. 1985;19(3):215-8
PMID: 3159472
-
Immunological consequences of tumor excision: from active immunity to immunological memory.
Int J Cancer. 1986 Feb 15;37(2):275-81
PMID: 3943923
-
T cell suppressors of antitumor immunity. The production of Ly-1-,2+ suppressors of delayed sensitivity precedes the production of suppressors of protective immunity.
J Exp Med. 1986 Oct 1;164(4):1179-92
PMID: 2944983
-
Cyclophosphamide (Cy)-facilitated adoptive immunotherapy of a Cy-resistant tumour. Evidence that Cy permits the expression of adoptive T-cell mediated immunity by removing suppressor T cells rather than by reducing tumour burden.
Immunology. 1988 Sep;65(1):87-92
PMID: 2972604
-
Cyclophosphamide-induced immunologically mediated regression of a cyclophosphamide-resistant murine tumor: a consequence of eliminating precursor L3T4+ suppressor T-cells.
Cancer Res. 1989 Apr 1;49(7):1649-54
PMID: 2522344
-
Vaccination with irradiated tumor cells engineered to secrete murine granulocyte-macrophage colony-stimulating factor stimulates potent, specific, and long-lasting anti-tumor immunity.
Proc Natl Acad Sci U S A. 1993 Apr 15;90(8):3539-43
PMID: 8097319
-
Rejection of mouse melanoma elicited by local secretion of interleukin-2: implicating macrophages without T cells or natural killer cells in tumor rejection.
Int J Cancer. 1995 Apr 10;61(2):253-60
PMID: 7705956
-
Identification of tyrosinase-related protein 2 as a tumor rejection antigen for the B16 melanoma.
J Exp Med. 1997 Feb 3;185(3):453-9
PMID: 9053445
-
Analysis of the T cell response to tumor and viral peptide antigens by an IFNgamma-ELISPOT assay.
Int J Cancer. 1997 Jun 11;71(6):932-6
PMID: 9185691
-
A CD4+ T-cell subset inhibits antigen-specific T-cell responses and prevents colitis.
Nature. 1997 Oct 16;389(6652):737-42
PMID: 9338786
-
gp100/pmel 17 is a murine tumor rejection antigen: induction of "self"-reactive, tumoricidal T cells using high-affinity, altered peptide ligand.
J Exp Med. 1998 Jul 20;188(2):277-86
PMID: 9670040
-
Tumor rejection by in vivo administration of anti-CD25 (interleukin-2 receptor alpha) monoclonal antibody.
Cancer Res. 1999 Jul 1;59(13):3128-33
PMID: 10397255