Home LiteratureArticle Details
PMID: 17457218 Published · ppublish English Journal Article Research Support, N.I.H., Intramural

Inability to mediate prolonged reduction of regulatory T Cells after transfer of autologous CD25-depleted PBMC and interleukin-2 after lymphodepleting chemotherapy.

Journal of immunotherapy (Hagerstown, Md. : 1997) ·Vol. 30 ·No. 4 ·2007-00-00 ·Pages 438-47

Powell DJ, de Vries CR, Allen T, Ahmadzadeh M, Rosenberg SA

Abstract

CD25CD4 regulatory T cells (Treg) regulate peripheral self-tolerance and possess the ability to suppress antitumor responses, which may explain the poor clinical response of cancer patients undergoing active immunization protocols, and provides the rationale for neutralizing Treg cells in vivo to strengthen local antitumor immune responses. Because interleukin-2 (IL-2) mediates tumor regression in about 15% of treated patients but simultaneously increases Treg cells, we hypothesized that transient elimination of Treg cells will enhance the clinical effectiveness of IL-2 therapy. In the current study, 5 patients with metastatic melanoma who were refractory to prior IL-2 received a lymphodepleting preparative regimen followed by the adoptive transfer of autologous lymphocytes depleted of CD25 Treg cells and high-dose IL-2 administration. CD25 cells were eliminated from patient leukapheresis samples using a clinical-grade, large-scale immunomagnetic system, leaving CD8 and CD25CD4 T cells intact. In the early aftermath of CD25 Treg cell-depleted cell infusion, CD25FOXP3+ CD4 Treg cells rapidly repopulated the peripheral blood of treated patients with 18% to 63% of CD4 T cells expressing FOXP3. Recovering CD25CD4 T cells exhibited suppressive activity against CD25CD4 effector T-cell proliferation in vitro. No patient experienced objective tumor regression or autoimmunity. Our results indicate that in vivo transfer of autologous CD25-depleted mononuclear populations to lymphopenic patients in combination with high-dose IL-2 is not sufficient to mediate prolonged reduction of Treg cells after IL-2 administration.

MeSH Terms
Adult Antineoplastic Agents/pharmacology Drug Therapy/methods Female Humans Immunotherapy/methods Interleukin-2/metabolism Interleukin-2 Receptor alpha Subunit/biosynthesis Leukocytes, Mononuclear/immunology,metabolism Male Melanoma/pathology Middle Aged Neoplasm Metastasis Skin Neoplasms/pathology T-Lymphocytes, Regulatory/metabolism
Chemicals
Antineoplastic Agents Interleukin-2 Interleukin-2 Receptor alpha Subunit
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Powell Daniel J
Surgery Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892-1201, USA. [email protected]
de Vries Christiaan R
Allen Tamika
Ahmadzadeh Mojgan
Rosenberg Steven A
References (49)
49 references, click to expand
  1. 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
  2. JM2, encoding a fork head-related protein, is mutated in X-linked autoimmunity-allergic disregulation syndrome.
    J Clin Invest. 2000 Dec;106(12):R75-81 PMID: 11120765
  3. X-linked neonatal diabetes mellitus, enteropathy and endocrinopathy syndrome is the human equivalent of mouse scurfy.
    Nat Genet. 2001 Jan;27(1):18-20 PMID: 11137992
  4. The immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome (IPEX) is caused by mutations of FOXP3.
    Nat Genet. 2001 Jan;27(1):20-1 PMID: 11137993
  5. Decreased gene expression of 11beta-hydroxysteroid dehydrogenase type 2 and 15-hydroxyprostaglandin dehydrogenase in human placenta of patients with preeclampsia.
    J Clin Endocrinol Metab. 2001 Mar;86(3):1313-7 PMID: 11238526
  6. Progress in human tumour immunology and immunotherapy.
    Nature. 2001 May 17;411(6835):380-4 PMID: 11357146
  7. 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
  8. Cutting edge: depletion of CD4+CD25+ regulatory T cells is necessary, but not sufficient, for induction of organ-specific autoimmune disease.
    J Immunol. 2002 Jun 15;168(12):5979-83 PMID: 12055202
  9. CD4+ CD25+ suppressor T cells: more questions than answers.
    Nat Rev Immunol. 2002 Jun;2(6):389-400 PMID: 12093005
  10. Cancer regression and autoimmunity in patients after clonal repopulation with antitumor lymphocytes.
    Science. 2002 Oct 25;298(5594):850-4 PMID: 12242449
  11. CD4+CD25+ suppressor lymphocytes in the circulation of patients immunized against melanoma antigens.
    J Immunother. 2003 Jan-Feb;26(1):85-93 PMID: 12514432
  12. Tumor-specific human CD4+ regulatory T cells and their ligands: implications for immunotherapy.
    Immunity. 2004 Jan;20(1):107-18 PMID: 14738769
  13. 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
  14. Naturally arising CD4+ regulatory t cells for immunologic self-tolerance and negative control of immune responses.
    Annu Rev Immunol. 2004;22:531-62 PMID: 15032588
  15. Foxp3 expressing CD4+CD25(high) regulatory T cells are overrepresented in human metastatic melanoma lymph nodes and inhibit the function of infiltrating T cells.
    J Immunol. 2004 Jul 15;173(2):1444-53 PMID: 15240741
  16. Specific recruitment of regulatory T cells in ovarian carcinoma fosters immune privilege and predicts reduced survival.
    Nat Med. 2004 Sep;10(9):942-9 PMID: 15322536
  17. Augmentation of specific immune response against a syngeneic SV40-induced sarcoma in mice by depletion of suppressor T cells with cyclophosphamide.
    Cell Immunol. 1979 Dec;48(2):339-45 PMID: 228870
  18. Organ-specific autoimmune diseases induced in mice by elimination of T cell subset. I. Evidence for the active participation of T cells in natural self-tolerance; deficit of a T cell subset as a possible cause of autoimmune disease.
    J Exp Med. 1985 Jan 1;161(1):72-87 PMID: 3871469
  19. Regression of established pulmonary metastases and subcutaneous tumor mediated by the systemic administration of high-dose recombinant interleukin 2.
    J Exp Med. 1985 May 1;161(5):1169-88 PMID: 3886826
  20. Observations on the systemic administration of autologous lymphokine-activated killer cells and recombinant interleukin-2 to patients with metastatic cancer.
    N Engl J Med. 1985 Dec 5;313(23):1485-92 PMID: 3903508
  21. Interleukin-2 therapy in patients with metastatic malignant melanoma: a phase II study.
    J Clin Oncol. 1990 Oct;8(10):1650-6 PMID: 2213101
  22. Relapse after response to interleukin-2-based immunotherapy: patterns of progression and response to retreatment.
    J Immunother (1991). 1991 Oct;10(5):371-5 PMID: 1790145
  23. Treatment of 283 consecutive patients with metastatic melanoma or renal cell cancer using high-dose bolus interleukin 2.
    JAMA. 1994 Mar 23-30;271(12):907-13 PMID: 8120958
  24. Results of treatment of 255 patients with metastatic renal cell carcinoma who received high-dose recombinant interleukin-2 therapy.
    J Clin Oncol. 1995 Mar;13(3):688-96 PMID: 7884429
  25. Deregulated T cell activation and autoimmunity in mice lacking interleukin-2 receptor beta.
    Science. 1995 Jun 9;268(5216):1472-6 PMID: 7770771
  26. Interleukin-2 receptor alpha chain regulates the size and content of the peripheral lymphoid compartment.
    Immunity. 1995 Oct;3(4):521-30 PMID: 7584142
  27. Growth of tumor-infiltrating lymphocytes from human solid cancers: summary of a 5-year experience.
    Int J Cancer. 1996 Feb 8;65(4):413-21 PMID: 8621219
  28. Durability of complete responses in patients with metastatic cancer treated with high-dose interleukin-2: identification of the antigens mediating response.
    Ann Surg. 1998 Sep;228(3):307-19 PMID: 9742914
  29. Thymus and autoimmunity: production of CD25+CD4+ naturally anergic and suppressive T cells as a key function of the thymus in maintaining immunologic self-tolerance.
    J Immunol. 1999 May 1;162(9):5317-26 PMID: 10228007
  30. 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
  31. High frequencies of naive Melan-A/MART-1-specific CD8(+) T cells in a large proportion of human histocompatibility leukocyte antigen (HLA)-A2 individuals.
    J Exp Med. 1999 Sep 6;190(5):705-15 PMID: 10477554
  32. Conversion of CD4+ CD25- cells into CD4+ CD25+ regulatory T cells in vivo requires B7 costimulation, but not the thymus.
    J Exp Med. 2005 Jan 3;201(1):127-37 PMID: 15630140
  33. Sinks, suppressors and antigen presenters: how lymphodepletion enhances T cell-mediated tumor immunotherapy.
    Trends Immunol. 2005 Feb;26(2):111-7 PMID: 15668127
  34. CD4+CD25+ T regulatory cells, immunotherapy of cancer, and interleukin-2.
    J Immunother. 2005 Mar-Apr;28(2):120-8 PMID: 15725955
  35. CD8+ T cell immunity against a tumor/self-antigen is augmented by CD4+ T helper cells and hindered by naturally occurring T regulatory cells.
    J Immunol. 2005 Mar 1;174(5):2591-601 PMID: 15728465
  36. Recognition of a new ARTC1 peptide ligand uniquely expressed in tumor cells by antigen-specific CD4+ regulatory T cells.
    J Immunol. 2005 Mar 1;174(5):2661-70 PMID: 15728473
  37. Inhibition of CD4(+)25+ T regulatory cell function implicated in enhanced immune response by low-dose cyclophosphamide.
    Blood. 2005 Apr 1;105(7):2862-8 PMID: 15591121
  38. Adoptive cell transfer therapy following non-myeloablative but lymphodepleting chemotherapy for the treatment of patients with refractory metastatic melanoma.
    J Clin Oncol. 2005 Apr 1;23(10):2346-57 PMID: 15800326
  39. Identifying Foxp3-expressing suppressor T cells with a bicistronic reporter.
    Proc Natl Acad Sci U S A. 2005 Apr 5;102(14):5126-31 PMID: 15795373
  40. Large-scale depletion of CD25+ regulatory T cells from patient leukapheresis samples.
    J Immunother. 2005 Jul-Aug;28(4):403-11 PMID: 16000960
  41. A function for interleukin 2 in Foxp3-expressing regulatory T cells.
    Nat Immunol. 2005 Nov;6(11):1142-51 PMID: 16227984
  42. Lymphopenia and interleukin-2 therapy alter homeostasis of CD4+CD25+ regulatory T cells.
    Nat Med. 2005 Nov;11(11):1238-43 PMID: 16227988
  43. Intraepithelial CD8+ tumor-infiltrating lymphocytes and a high CD8+/regulatory T cell ratio are associated with favorable prognosis in ovarian cancer.
    Proc Natl Acad Sci U S A. 2005 Dec 20;102(51):18538-43 PMID: 16344461
  44. Regulatory T cells in immune surveillance and treatment of cancer.
    Semin Cancer Biol. 2006 Apr;16(2):115-23 PMID: 16376102
  45. IL-2 administration increases CD4+ CD25(hi) Foxp3+ regulatory T cells in cancer patients.
    Blood. 2006 Mar 15;107(6):2409-14 PMID: 16304057
  46. Regulatory T cells, tumour immunity and immunotherapy.
    Nat Rev Immunol. 2006 Apr;6(4):295-307 PMID: 16557261
  47. Interleukin-2-dependent mechanisms of tolerance and immunity in vivo.
    J Immunol. 2006 May 1;176(9):5255-66 PMID: 16621991
  48. Adoptive immunotherapy for cancer: building on success.
    Nat Rev Immunol. 2006 May;6(5):383-93 PMID: 16622476
  49. Single-cell analysis of normal and FOXP3-mutant human T cells: FOXP3 expression without regulatory T cell development.
    Proc Natl Acad Sci U S A. 2006 Apr 25;103(17):6659-64 PMID: 16617117
Article Info
Journal
Journal of immunotherapy (Hagerstown, Md. : 1997)
Abbr.
J Immunother
ISSN
1524-9557
Published
2007-00-00
Pages
438-47
Language
English
Region
United States
NLM ID
9706083
PMCID
PMC2140222
Subset
IM
Grants
Intramural NIH HHS · Z01 SC003811-32 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]