Skip to main content
Top
Published in: Cancer Immunology, Immunotherapy 4/2015

01-04-2015 | Original Article

Phase I trial of a cancer vaccine consisting of 20 mixed peptides in patients with castration-resistant prostate cancer: dose-related immune boosting and suppression

Authors: Masanori Noguchi, Gaku Arai, Kazumasa Matsumoto, Seiji Naito, Fukuko Moriya, Shigetaka Suekane, Nobukazu Komatsu, Satoko Matsueda, Tetsuro Sasada, Akira Yamada, Tatsuyuki Kakuma, Kyogo Itoh

Published in: Cancer Immunology, Immunotherapy | Issue 4/2015

Login to get access

Abstract

The heterogeneity expression of tumor-associated antigens (TAA) and variability of human T cell repertoire suggest that effective cancer vaccine requires induction of a wide breadth of cytotoxic T lymphocyte (CTL) specificities. This can be achieved with vaccines targeting multiple TAA. We evaluated the safety and immune dynamics of a cancer vaccine consisting of 20 mixed peptides (KRM-20) designed to induce CTLs against 12 different TAA in patients with castration-resistant prostate cancer (CRPC). Patients received each of three different randomly assigned doses of KRM-20 (6, 20, or 60 mg) once a week for 6 weeks. KRM-20 was applicable for patients with positive human leukocyte antigen (HLA) A2, A3, A11, A24, A26, A31 or A33 alleles, which cover the majority of the global population. To evaluate the minimum immunological effective dose (MIED), peptide-specific CTL and immunoglobulin G (IgG) responses, and immune suppressive subsets were evaluated during the vaccination. Total of 17 patients was enrolled. No serious adverse drug reactions were encountered. The MIED of KRM-20 in CTL or IgG response calculated by logistic regression model was set as 16 or 1.6 mg, respectively. The frequency of immune suppressive subsets was fewer in the 20 mg cohort than that in 6 or 60 mg cohort. Clinical responses determined by prostate-specific antigen levels were two partial responses (from the 20 mg cohort), five no changes and ten progressive diseases. Twenty milligrams of KRM-20 could be recommended for further studies because of the safety and ability to augment CTL activity.
Literature
1.
go back to reference Rosenberg SA, Yang JC, Schwartzentruber DJ, Hwu P, Marincola FM, Topalian SL, Restifo NP, Dudley ME, Schwarz SL, Spiess PJ, Wunderlich JR, Parkhurst MR, Kawakami Y, Seipp CA, Einhorn JH, White DE (1998) Immunologic and therapeutic evaluation of synthetic peptide vaccine for the treatment of patients with metastatic melanoma. Nat Med 4:321–327CrossRefPubMedCentralPubMed Rosenberg SA, Yang JC, Schwartzentruber DJ, Hwu P, Marincola FM, Topalian SL, Restifo NP, Dudley ME, Schwarz SL, Spiess PJ, Wunderlich JR, Parkhurst MR, Kawakami Y, Seipp CA, Einhorn JH, White DE (1998) Immunologic and therapeutic evaluation of synthetic peptide vaccine for the treatment of patients with metastatic melanoma. Nat Med 4:321–327CrossRefPubMedCentralPubMed
2.
go back to reference Schwartzentruber DJ, Lawson DH, Richards JM, Conry RM, Miller DM, Treisman J, Gailani F, Riley L, Conlon K, Pockaj B, Kendra KL, White RL, Gonzalez R, Kuzel TM, Curti B, Leming PD, Whitman ED, Balkissoon J, Reintgen DS, Kaufman H, Marincola FM, Merino MJ, Rosenberg SA, Choyke P, Vena D, Hwu P (2011) gp100 peptide vaccine and interleukin-2 in patients with advanced melanoma. N Engl J Med 364:2119–2127CrossRefPubMedCentralPubMed Schwartzentruber DJ, Lawson DH, Richards JM, Conry RM, Miller DM, Treisman J, Gailani F, Riley L, Conlon K, Pockaj B, Kendra KL, White RL, Gonzalez R, Kuzel TM, Curti B, Leming PD, Whitman ED, Balkissoon J, Reintgen DS, Kaufman H, Marincola FM, Merino MJ, Rosenberg SA, Choyke P, Vena D, Hwu P (2011) gp100 peptide vaccine and interleukin-2 in patients with advanced melanoma. N Engl J Med 364:2119–2127CrossRefPubMedCentralPubMed
3.
go back to reference Perez SA, Hofe E, Kallinteris NL, Gritzapis AD, Peoples GE, Papamichail M, Baxevanis C (2010) A new era in anticancer peptide vaccines. Cancer 116:2071–2080PubMed Perez SA, Hofe E, Kallinteris NL, Gritzapis AD, Peoples GE, Papamichail M, Baxevanis C (2010) A new era in anticancer peptide vaccines. Cancer 116:2071–2080PubMed
4.
go back to reference Cheever MA, Allison JP, Ferris AS, Finn OJ, Hastings BM, Hecht TT, Mellman I, Prindiville SA, Viner JL, Weiner LM, Matrisian LM (2009) The prioritization of cancer antigens: a national cancer institute pilot project for the acceleration of translational research. Clin Cancer Res 15:5323–5337CrossRefPubMed Cheever MA, Allison JP, Ferris AS, Finn OJ, Hastings BM, Hecht TT, Mellman I, Prindiville SA, Viner JL, Weiner LM, Matrisian LM (2009) The prioritization of cancer antigens: a national cancer institute pilot project for the acceleration of translational research. Clin Cancer Res 15:5323–5337CrossRefPubMed
5.
go back to reference Sasada T, Komatsu N, Suekane S, Yamada A, Noguchi M, Itoh K (2010) Overcoming the hurdles of randomized clinical trials of therapeutic cancer vaccine. Eur J Cancer 46:1514–1519CrossRefPubMed Sasada T, Komatsu N, Suekane S, Yamada A, Noguchi M, Itoh K (2010) Overcoming the hurdles of randomized clinical trials of therapeutic cancer vaccine. Eur J Cancer 46:1514–1519CrossRefPubMed
6.
go back to reference Correale P, Walmsley K, Zaremba S, Zhu M, Schlom J, Tsang KY (1998) Generation of human cytolytic T lymphocyte lines directed against prostate-specific antigen (PSA) employing a PSA oligoepitope peptide. J Immunol 161:3186–3194PubMed Correale P, Walmsley K, Zaremba S, Zhu M, Schlom J, Tsang KY (1998) Generation of human cytolytic T lymphocyte lines directed against prostate-specific antigen (PSA) employing a PSA oligoepitope peptide. J Immunol 161:3186–3194PubMed
7.
go back to reference Peshwa MV, Shi JD, Ruegg C, Laus R, van Schooten WC (1998) Induction of prostate tumor-specific CD8+ cytotoxic T-lymphocytes in vitro using antigen-presenting cells pulsed with prostatic acid phosphatase peptide. Prostate 36:129–138CrossRefPubMed Peshwa MV, Shi JD, Ruegg C, Laus R, van Schooten WC (1998) Induction of prostate tumor-specific CD8+ cytotoxic T-lymphocytes in vitro using antigen-presenting cells pulsed with prostatic acid phosphatase peptide. Prostate 36:129–138CrossRefPubMed
8.
go back to reference Tjoa B, Boynton A, Kenny G, Ragde H, Misrock SL, Murphy G (1996) Presentation of prostate tumor antigens by dendritic cells stimulates T-cell proliferation and cytotoxicity. Prostate 28:65–69CrossRefPubMed Tjoa B, Boynton A, Kenny G, Ragde H, Misrock SL, Murphy G (1996) Presentation of prostate tumor antigens by dendritic cells stimulates T-cell proliferation and cytotoxicity. Prostate 28:65–69CrossRefPubMed
9.
go back to reference Kim SJ, Uehara H, Karashima T, Shepherd DL, Killion JJ, Fidler IJ (2003) Blockade of epidermal growth factor receptor signaling in tumor cells and tumor-associated endothelial cells for therapy of androgen-independent human prostate cancer growing in the bone of nude mice. Clin Cancer Res 9:1200–1210PubMed Kim SJ, Uehara H, Karashima T, Shepherd DL, Killion JJ, Fidler IJ (2003) Blockade of epidermal growth factor receptor signaling in tumor cells and tumor-associated endothelial cells for therapy of androgen-independent human prostate cancer growing in the bone of nude mice. Clin Cancer Res 9:1200–1210PubMed
10.
go back to reference Park SI, McCauley LK (2012) Nuclear localization of parathyroid hormone-related peptide confers resistance to anoikis in prostate cancer cells. Endocr Relat Cancer 19:243–254CrossRefPubMedCentralPubMed Park SI, McCauley LK (2012) Nuclear localization of parathyroid hormone-related peptide confers resistance to anoikis in prostate cancer cells. Endocr Relat Cancer 19:243–254CrossRefPubMedCentralPubMed
11.
go back to reference Minami T, Matsueda S, Takedatsu H, Tanaka M, Noguchi M, Uemura H, Itoh K, Harada M (2007) Identification of SART3-derived peptides having the potential to induce cancer-reactive cytotoxic T lymphocytes from prostate cancer patients with HLA-A3 supertype alleles. Cancer Immunol Immunother 56:689–698CrossRefPubMed Minami T, Matsueda S, Takedatsu H, Tanaka M, Noguchi M, Uemura H, Itoh K, Harada M (2007) Identification of SART3-derived peptides having the potential to induce cancer-reactive cytotoxic T lymphocytes from prostate cancer patients with HLA-A3 supertype alleles. Cancer Immunol Immunother 56:689–698CrossRefPubMed
12.
go back to reference Gohara R, Imai N, Rikimaru T, Yamada A, Hida N, Ichiki M, Kawamoto M, Matsunaga K, Ashihara J, Yano S, Tamura M, Ohkouchi S, Yamana H, Oizumi K, Itoh K (2002) Phase 1 clinical study of cyclophilin B peptide vaccine for patients with lung cancer. J Immunother 25:439–444CrossRefPubMed Gohara R, Imai N, Rikimaru T, Yamada A, Hida N, Ichiki M, Kawamoto M, Matsunaga K, Ashihara J, Yano S, Tamura M, Ohkouchi S, Yamana H, Oizumi K, Itoh K (2002) Phase 1 clinical study of cyclophilin B peptide vaccine for patients with lung cancer. J Immunother 25:439–444CrossRefPubMed
13.
go back to reference Noguchi M, Sasada T, Itoh K (2013) Personalized peptide vaccination: a new approach for advanced cancer as therapeutic cancer vaccine. Cancer Immunol Immunother 62:919–929CrossRefPubMed Noguchi M, Sasada T, Itoh K (2013) Personalized peptide vaccination: a new approach for advanced cancer as therapeutic cancer vaccine. Cancer Immunol Immunother 62:919–929CrossRefPubMed
14.
go back to reference Wang J, Nemoto E, Dennert G (1996) Regulation of CTL by ecto-nictinamide adenine dinucleotide (NAD) involves ADP-ribosylation of a p56lck-associated protein. J Immunol 156:2819–2827PubMed Wang J, Nemoto E, Dennert G (1996) Regulation of CTL by ecto-nictinamide adenine dinucleotide (NAD) involves ADP-ribosylation of a p56lck-associated protein. J Immunol 156:2819–2827PubMed
15.
go back to reference Mizukoshi E, Nakamoto Y, Arai K, Yamashita T, Sakai A, Sakai Y, Kagaya T, Yamashita T, Honda M, Kaneko S (2011) Comparative analysis of various tumor-associated antigen-specific t-cell responses in patients with hepatocellular carcinoma. Hepatology 53:1206–1216CrossRefPubMed Mizukoshi E, Nakamoto Y, Arai K, Yamashita T, Sakai A, Sakai Y, Kagaya T, Yamashita T, Honda M, Kaneko S (2011) Comparative analysis of various tumor-associated antigen-specific t-cell responses in patients with hepatocellular carcinoma. Hepatology 53:1206–1216CrossRefPubMed
16.
go back to reference Topalian SL, Hodi FS, Brahmer JR, Gettinger SN, Smith DC, McDermott DF, Powderly JD, Carvajal RD, Sosman JA, Atkins MB, Leming PD, Spigel DR, Antonia SJ, Horn L, Drake CG, Pardoll DM, Chen L, Sharfman WH, Anders RA, Taube JM, McMiller TL, Xu H, Korman AJ, Jure-Kunkel M, Agrawal S, McDonald D, Kollia GD, Gupta A, Wigginton JM, Sznol M (2012) Safety, activity, and immune correlates of anti-PD-1 antibody in cancer. N Engl J Med 366:2443–2454CrossRefPubMedCentralPubMed Topalian SL, Hodi FS, Brahmer JR, Gettinger SN, Smith DC, McDermott DF, Powderly JD, Carvajal RD, Sosman JA, Atkins MB, Leming PD, Spigel DR, Antonia SJ, Horn L, Drake CG, Pardoll DM, Chen L, Sharfman WH, Anders RA, Taube JM, McMiller TL, Xu H, Korman AJ, Jure-Kunkel M, Agrawal S, McDonald D, Kollia GD, Gupta A, Wigginton JM, Sznol M (2012) Safety, activity, and immune correlates of anti-PD-1 antibody in cancer. N Engl J Med 366:2443–2454CrossRefPubMedCentralPubMed
17.
go back to reference Komatsu N, Matsueda S, Tashiro K, Ioji T, Shichijo S, Noguchi M, Yamada A, Suekane S, Doi A, Moriya F, Matsuoka K, Kuhara S, Itoh K, Sasada T (2012) Gene expression profiles in peripheral blood as a biomarker in cancer patients receiving peptide vaccination. Cancer 118:3208–3221CrossRefPubMed Komatsu N, Matsueda S, Tashiro K, Ioji T, Shichijo S, Noguchi M, Yamada A, Suekane S, Doi A, Moriya F, Matsuoka K, Kuhara S, Itoh K, Sasada T (2012) Gene expression profiles in peripheral blood as a biomarker in cancer patients receiving peptide vaccination. Cancer 118:3208–3221CrossRefPubMed
18.
go back to reference Noguchi M, Uemura H, Naito S, Akaza H, Yamada A, Itoh K (2011) A phase I study of personalized peptide vaccination using 14 kinds of vaccine in combination with low-dose estramustine in HLA-A24-positive patients with castration-resistant prostate cancer. Prostate 71:470–479CrossRefPubMed Noguchi M, Uemura H, Naito S, Akaza H, Yamada A, Itoh K (2011) A phase I study of personalized peptide vaccination using 14 kinds of vaccine in combination with low-dose estramustine in HLA-A24-positive patients with castration-resistant prostate cancer. Prostate 71:470–479CrossRefPubMed
19.
go back to reference Terasaki M, Shibui S, Narita Y, Fujimaki T, Aoki T, Kajiwara K, Sawamura Y, Kurisu K, Mineta T, Yamada A, Itoh K (2011) Phase I trial of a personalized peptide vaccine for patients positive for human leukocyte antigen–A24 with recurrent or progressive glioblastoma multiforme. J Clin Oncol 29:337–344CrossRefPubMed Terasaki M, Shibui S, Narita Y, Fujimaki T, Aoki T, Kajiwara K, Sawamura Y, Kurisu K, Mineta T, Yamada A, Itoh K (2011) Phase I trial of a personalized peptide vaccine for patients positive for human leukocyte antigen–A24 with recurrent or progressive glioblastoma multiforme. J Clin Oncol 29:337–344CrossRefPubMed
20.
go back to reference Komatsu N, Shichijo S, Nakagawa M, Itoh K (2004) New multiplexed flow cytometric assay to measure anti-peptide antibody: a novel tool for monitoring immune responses to peptides used for immunization. Scand J Clin Lab Invest 64:535–545CrossRefPubMed Komatsu N, Shichijo S, Nakagawa M, Itoh K (2004) New multiplexed flow cytometric assay to measure anti-peptide antibody: a novel tool for monitoring immune responses to peptides used for immunization. Scand J Clin Lab Invest 64:535–545CrossRefPubMed
21.
go back to reference Scher HI, Halabi S, Tannoch I, Morris M, Stemberg CN, Carducci MA, Eisenberger MA, Higano C, Bubley GJ, Dreicer R, Petrylak D, Kantoff P, Basch E, Kelly WK, Figg WD, Small EJ, Beer TM, Wilding G, Martin A, Hussain M, Prostate Cancer Clinical Trials Working Group (2008) Design and end points of clinical trials for patients with progressive prostate cancer and castrate levels of testosterone: recommendations of the Prostate Cancer Clinical Trials Working Group. J Clin Oncol 26:1148–1159CrossRefPubMedCentralPubMed Scher HI, Halabi S, Tannoch I, Morris M, Stemberg CN, Carducci MA, Eisenberger MA, Higano C, Bubley GJ, Dreicer R, Petrylak D, Kantoff P, Basch E, Kelly WK, Figg WD, Small EJ, Beer TM, Wilding G, Martin A, Hussain M, Prostate Cancer Clinical Trials Working Group (2008) Design and end points of clinical trials for patients with progressive prostate cancer and castrate levels of testosterone: recommendations of the Prostate Cancer Clinical Trials Working Group. J Clin Oncol 26:1148–1159CrossRefPubMedCentralPubMed
22.
go back to reference Simone R, Tenca C, Fais F, Luciani M, De Rossi G, Pesce G, Bagnasco M, Saverino D (2012) A soluble form of CTLA-4 is present in paediatric patients with acute lymphoblastic leukaemia and correlates with CD1d+ expression. PLoS One 7:e44654CrossRefPubMedCentralPubMed Simone R, Tenca C, Fais F, Luciani M, De Rossi G, Pesce G, Bagnasco M, Saverino D (2012) A soluble form of CTLA-4 is present in paediatric patients with acute lymphoblastic leukaemia and correlates with CD1d+ expression. PLoS One 7:e44654CrossRefPubMedCentralPubMed
23.
go back to reference Salgaller ML, Marincola F, Comier JN, Rosenberg SA (1996) Immunization against epitopes in the human melanoma antigen gp100 following patient immunization with synthetic peptides. Cancer Res 56:4749–4757PubMed Salgaller ML, Marincola F, Comier JN, Rosenberg SA (1996) Immunization against epitopes in the human melanoma antigen gp100 following patient immunization with synthetic peptides. Cancer Res 56:4749–4757PubMed
24.
go back to reference Cormier JN, Salgaller ML, Prevette T, Barracchini KC, Rivoltini L, Restifo NP, Rosenberg SA, Marincola FM (1997) Enhancement of cellular immunity in melanoma patients immunized with a peptide from MART-1/Melan A. Cancer J Sci Am 3:37–44PubMedCentralPubMed Cormier JN, Salgaller ML, Prevette T, Barracchini KC, Rivoltini L, Restifo NP, Rosenberg SA, Marincola FM (1997) Enhancement of cellular immunity in melanoma patients immunized with a peptide from MART-1/Melan A. Cancer J Sci Am 3:37–44PubMedCentralPubMed
25.
go back to reference Aucouturier J, Dupuis L, Ganne V (2001) Adjuvants designed for veterinary and human vaccines. Vaccine 19:2666–2672CrossRefPubMed Aucouturier J, Dupuis L, Ganne V (2001) Adjuvants designed for veterinary and human vaccines. Vaccine 19:2666–2672CrossRefPubMed
26.
go back to reference Anderson MJ, Shafer-Weaver K, Greenberg NM, Hurwitz AA (2007) Tolerization of tumor-specific T cells despite efficient initial priming in a primary murine model of prostate cancer. J Immunol 178:1268–1276CrossRefPubMed Anderson MJ, Shafer-Weaver K, Greenberg NM, Hurwitz AA (2007) Tolerization of tumor-specific T cells despite efficient initial priming in a primary murine model of prostate cancer. J Immunol 178:1268–1276CrossRefPubMed
27.
go back to reference Schreiber RD, Old LJ, Smyth MJ (2011) Cancer immunoediting: integrating immunity’s roles in cancer suppression and promotion. Science 331:1565–1570CrossRefPubMed Schreiber RD, Old LJ, Smyth MJ (2011) Cancer immunoediting: integrating immunity’s roles in cancer suppression and promotion. Science 331:1565–1570CrossRefPubMed
28.
go back to reference Slingluff CL Jr, Petroni GR, Chianese-Bullock KA, Smolkin ME, Hibbitts S, Murphy C, Johansen N, Grosh WW, Yamshchikov GV, Neese PY, Patterson JW, Fink R, Rehm PK (2007) Immunologic and clinical outcomes of a randomized phase II trial of two multipeptide vaccines for melanoma in the adjuvant setting. Clin Cancer Res 13:6386–6395CrossRefPubMed Slingluff CL Jr, Petroni GR, Chianese-Bullock KA, Smolkin ME, Hibbitts S, Murphy C, Johansen N, Grosh WW, Yamshchikov GV, Neese PY, Patterson JW, Fink R, Rehm PK (2007) Immunologic and clinical outcomes of a randomized phase II trial of two multipeptide vaccines for melanoma in the adjuvant setting. Clin Cancer Res 13:6386–6395CrossRefPubMed
29.
go back to reference Chianese-Bullock KA, Irvin WP Jr, Petroni GR, Murphy C, Smolkin M, Olson WC, Coleman E, Boerner SA, Nail CJ, Neese PY, Yuan A, Hogan KT, Slingluff CL Jr (2008) A multipeptide vaccine is safe and elicits T-cell responses in participants with advanced stage ovarian cancer. J Immunother 31:420–430CrossRefPubMed Chianese-Bullock KA, Irvin WP Jr, Petroni GR, Murphy C, Smolkin M, Olson WC, Coleman E, Boerner SA, Nail CJ, Neese PY, Yuan A, Hogan KT, Slingluff CL Jr (2008) A multipeptide vaccine is safe and elicits T-cell responses in participants with advanced stage ovarian cancer. J Immunother 31:420–430CrossRefPubMed
30.
go back to reference Noguchi M, Mine T, Komatsu N, Suekane S, Moriya F, Matsuoka K, Yutani S, Shichijo S, Yamada A, Toh U, Kawano K, Azuma K, Uemura H, Okuno K, Matsumoto K, Yanagimoto H, Yamanaka R, Oka M, Todo S, Sasada T, Itoh K (2010) Assessment of immunological biomarkers in patients with advanced cancer treated by personalized peptide vaccination. Cancer Biol Ther 10:1266–1279CrossRefPubMed Noguchi M, Mine T, Komatsu N, Suekane S, Moriya F, Matsuoka K, Yutani S, Shichijo S, Yamada A, Toh U, Kawano K, Azuma K, Uemura H, Okuno K, Matsumoto K, Yanagimoto H, Yamanaka R, Oka M, Todo S, Sasada T, Itoh K (2010) Assessment of immunological biomarkers in patients with advanced cancer treated by personalized peptide vaccination. Cancer Biol Ther 10:1266–1279CrossRefPubMed
Metadata
Title
Phase I trial of a cancer vaccine consisting of 20 mixed peptides in patients with castration-resistant prostate cancer: dose-related immune boosting and suppression
Authors
Masanori Noguchi
Gaku Arai
Kazumasa Matsumoto
Seiji Naito
Fukuko Moriya
Shigetaka Suekane
Nobukazu Komatsu
Satoko Matsueda
Tetsuro Sasada
Akira Yamada
Tatsuyuki Kakuma
Kyogo Itoh
Publication date
01-04-2015
Publisher
Springer Berlin Heidelberg
Published in
Cancer Immunology, Immunotherapy / Issue 4/2015
Print ISSN: 0340-7004
Electronic ISSN: 1432-0851
DOI
https://doi.org/10.1007/s00262-015-1660-1

Other articles of this Issue 4/2015

Cancer Immunology, Immunotherapy 4/2015 Go to the issue
Webinar | 19-02-2024 | 17:30 (CET)

Keynote webinar | Spotlight on antibody–drug conjugates in cancer

Antibody–drug conjugates (ADCs) are novel agents that have shown promise across multiple tumor types. Explore the current landscape of ADCs in breast and lung cancer with our experts, and gain insights into the mechanism of action, key clinical trials data, existing challenges, and future directions.

Dr. Véronique Diéras
Prof. Fabrice Barlesi
Developed by: Springer Medicine