Home LiteratureArticle Details
PMID: 15740633 Published · epublish English Journal Article

Vaccination of metastatic melanoma patients with autologous dendritic cell (DC) derived-exosomes: results of thefirst phase I clinical trial.

Journal of translational medicine ·Vol. 3 ·No. 1 ·2005-03-02 ·Pages 10

Escudier B, Dorval T, Chaput N, André F, Caby MP, Novault S, Flament C, Leboulaire C, Borg C, Amigorena S, Boccaccio C, Bonnerot C, Dhellin O, Movassagh M, Piperno S, Robert C, Serra V, Valente N, Le Pecq JB, Spatz A, Lantz O, Tursz T, Angevin E, Zitvogel L

Abstract

BACKGROUND: DC derived-exosomes are nanomeric vesicles harboring functional MHC/peptide complexes capable of promoting T cell immune responses and tumor rejection. Here we report the feasability and safety of the first Phase I clinical trial using autologous exosomes pulsed with MAGE 3 peptides for the immunization of stage III/IV melanoma patients. Secondary endpoints were the monitoring of T cell responses and the clinical outcome. PATIENTS AND METHODS: Exosomes were purified from day 7 autologous monocyte derived-DC cultures. Fifteen patients fullfilling the inclusion criteria (stage IIIB and IV, HLA-A1+, or -B35+ and HLA-DPO4+ leukocyte phenotype, tumor expressing MAGE3 antigen) were enrolled from 2000 to 2002 and received four exosome vaccinations. Two dose levels of either MHC class II molecules (0.13 versus 0.40 x 1014 molecules) or peptides (10 versus 100 mug/ml) were tested. Evaluations were performed before and 2 weeks after immunization. A continuation treatment was performed in 4 cases of non progression. RESULTS: The GMP process allowed to harvest about 5 x 1014 exosomal MHC class II molecules allowing inclusion of all 15 patients. There was no grade II toxicity and the maximal tolerated dose was not achieved. One patient exhibited a partial response according to the RECIST criteria. This HLA-B35+/A2+ patient vaccinated with A1/B35 defined CTL epitopes developed halo of depigmentation around naevi, a MART1-specific HLA-A2 restricted T cell response in the tumor bed associated with progressive loss of HLA-A2 and HLA-BC molecules on tumor cells during therapy with exosomes. In addition, one minor, two stable and one mixed responses were observed in skin and lymph node sites. MAGE3 specific CD4+ and CD8+ T cell responses could not be detected in peripheral blood. CONCLUSION: The first exosome Phase I trial highlighted the feasibility of large scale exosome production and the safety of exosome administration.

Authors & Affiliations
24 authors, click to expand affiliations / ORCID
Escudier Bernard
Department of Immunotherapy, Institut Gustave Roussy, Villejuif, France. [email protected].
Dorval Thierry
Chaput Nathalie
André Fabrice
Caby Marie-Pierre
Novault Sophie
Flament Caroline
Leboulaire Christophe
Borg Christophe
Amigorena Sebastian
Boccaccio Catherine
Bonnerot Christian
Dhellin Olivier
Movassagh Mojgan
Piperno Sophie
Robert Caroline
Serra Vincent
Valente Nancy
Le Pecq Jean-Bernard
Spatz Alain
Lantz Olivier
Tursz Thomas
Angevin Eric
Zitvogel Laurence
References (32)
32 references, click to expand
  1. Single injection of CD34+ progenitor-derived dendritic cell vaccine can lead to induction of T-cell immunity in patients with stage IV melanoma.
    J Immunother. 2003 Sep-Oct;26(5):432-9 PMID: 12973032
  2. Dendritic cells: On the move from bench to bedside.
    Nat Med. 2001 Jul;7(7):761-5 PMID: 11433329
  3. Eradication of established murine tumors using a novel cell-free vaccine: dendritic cell-derived exosomes.
    Nat Med. 1998 May;4(5):594-600 PMID: 9585234
  4. Dendritic cell maturation overrules H-2D-mediated natural killer T (NKT) cell inhibition: critical role for B7 in CD1d-dependent NKT cell interferon gamma production.
    J Exp Med. 2001 Oct 15;194(8):1179-86 PMID: 11602646
  5. Immune and clinical responses in patients with metastatic melanoma to CD34(+) progenitor-derived dendritic cell vaccine.
    Cancer Res. 2001 Sep 1;61(17):6451-8 PMID: 11522640
  6. Expansion of melanoma-specific cytolytic CD8+ T cell precursors in patients with metastatic melanoma vaccinated with CD34+ progenitor-derived dendritic cells.
    J Exp Med. 2004 Jun 7;199(11):1503-11 PMID: 15173207
  7. Exosome: from internal vesicle of the multivesicular body to intercellular signaling device.
    J Cell Sci. 2000 Oct;113 Pt 19:3365-74 PMID: 10984428
  8. Analysis of antigen presenting cell derived exosomes, based on immuno-magnetic isolation and flow cytometry.
    J Immunol Methods. 2001 Jan 1;247(1-2):163-74 PMID: 11150547
  9. ER-phagosome fusion defines an MHC class I cross-presentation compartment in dendritic cells.
    Nature. 2003 Sep 25;425(6956):397-402 PMID: 14508489
  10. Production and characterization of clinical grade exosomes derived from dendritic cells.
    J Immunol Methods. 2002 Dec 15;270(2):211-26 PMID: 12379326
  11. A phase I study of dexosome immunotherapy in patients with advanced non-small cell lung cancer.
    J Transl Med. 2005 Feb 21;3(1):9 PMID: 15723705
  12. 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
  13. Exosomes as potent cell-free peptide-based vaccine. II. Exosomes in CpG adjuvants efficiently prime naive Tc1 lymphocytes leading to tumor rejection.
    J Immunol. 2004 Feb 15;172(4):2137-46 PMID: 14764679
  14. B lymphocytes secrete antigen-presenting vesicles.
    J Exp Med. 1996 Mar 1;183(3):1161-72 PMID: 8642258
  15. Expression of MAGE and GAGE in high-grade brain tumors: a potential target for specific immunotherapy and diagnostic markers.
    Clin Cancer Res. 1999 Feb;5(2):335-41 PMID: 10037183
  16. Rapid induction of tumor-specific type 1 T helper cells in metastatic melanoma patients by vaccination with mature, cryopreserved, peptide-loaded monocyte-derived dendritic cells.
    J Exp Med. 2002 May 20;195(10):1279-88 PMID: 12021308
  17. Exosomes: composition, biogenesis and function.
    Nat Rev Immunol. 2002 Aug;2(8):569-79 PMID: 12154376
  18. Dendritic cells as vectors for therapy.
    Cell. 2001 Aug 10;106(3):271-4 PMID: 11509176
  19. Exosomes as potent cell-free peptide-based vaccine. I. Dendritic cell-derived exosomes transfer functional MHC class I/peptide complexes to dendritic cells.
    J Immunol. 2004 Feb 15;172(4):2126-36 PMID: 14764678
  20. Tumor regressions observed in patients with metastatic melanoma treated with an antigenic peptide encoded by gene MAGE-3 and presented by HLA-A1.
    Int J Cancer. 1999 Jan 18;80(2):219-30 PMID: 9935203
  21. Proteomic analysis of dendritic cell-derived exosomes: a secreted subcellular compartment distinct from apoptotic vesicles.
    J Immunol. 2001 Jun 15;166(12):7309-18 PMID: 11390481
  22. Expression of mage genes by non-small-cell lung carcinomas.
    Int J Cancer. 1994 Mar 15;56(6):826-9 PMID: 8119772
  23. IL-4 confers NK stimulatory capacity to murine dendritic cells: a signaling pathway involving KARAP/DAP12-triggering receptor expressed on myeloid cell 2 molecules.
    J Immunol. 2004 May 15;172(10):5957-66 PMID: 15128777
  24. Active immunization against cancer with dendritic cells: the near future.
    Int J Cancer. 2001 Nov;94(4):459-73 PMID: 11745430
  25. Antigen loading of MHC class I molecules in the endocytic tract.
    Traffic. 2001 Feb;2(2):124-37 PMID: 11247303
  26. A monoclonal cytolytic T-lymphocyte response observed in a melanoma patient vaccinated with a tumor-specific antigenic peptide encoded by gene MAGE-3.
    Proc Natl Acad Sci U S A. 2001 Aug 28;98(18):10290-5 PMID: 11517302
  27. Indirect activation of naïve CD4+ T cells by dendritic cell-derived exosomes.
    Nat Immunol. 2002 Dec;3(12):1156-62 PMID: 12426563
  28. Mage-3 and influenza-matrix peptide-specific cytotoxic T cells are inducible in terminal stage HLA-A2.1+ melanoma patients by mature monocyte-derived dendritic cells.
    J Immunol. 2000 Sep 15;165(6):3492-6 PMID: 10975870
  29. Rapid generation of broad T-cell immunity in humans after a single injection of mature dendritic cells.
    J Clin Invest. 1999 Jul;104(2):173-80 PMID: 10411546
  30. Spinning molecular immunology into successful immunotherapy.
    Nat Rev Immunol. 2002 Apr;2(4):227-38 PMID: 12001994
  31. Exosomes as a tumor vaccine: enhancing potency through direct loading of antigenic peptides.
    J Immunother. 2003 Sep-Oct;26(5):440-50 PMID: 12973033
  32. Selective enrichment of tetraspan proteins on the internal vesicles of multivesicular endosomes and on exosomes secreted by human B-lymphocytes.
    J Biol Chem. 1998 Aug 7;273(32):20121-7 PMID: 9685355
Article Info
Journal
Journal of translational medicine
Abbr.
J Transl Med
ISSN
1479-5876
Published
2005-03-02
Epub
2005-00-02
Pages
10
Language
English
Region
England
NLM ID
101190741
PMCID
PMC554765
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]