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Published in: Cancer Immunology, Immunotherapy 6/2003

01-06-2003 | Original Article

Interferon-α and interleukin-12 gene therapy of cancer: interferon-α induces tumor-specific immune responses while interleukin-12 stimulates non-specific killing

Authors: Jun-ichi Eguchi, Kazumasa Hiroishi, Shigeaki Ishii, Keiji Mitamura

Published in: Cancer Immunology, Immunotherapy | Issue 6/2003

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Abstract

Cytokine gene therapy is applied in clinical studies of tumors, and IFN-α and IL-12 are widely used for cancer immunotherapy. Using a poorly immunogenic murine colorectal cancer cell line, MC38, we compared antitumor effects of IFN-α and IL-12. Transduced MC38 cell lines expressing IFN-α or IL-12 (MC38-IFNα or MC38-IL12, respectively) were established using retroviral vectors. Transduction of IFN-α or IL-12 gene to MC38 cells significantly reduced tumorigenicity in immunocompetent mice. When tumor-free mice initially injected with MC38-IFNα or MC38-IL12 cells were reinjected contralaterally with wild-type MC38 cells (MC38-WT) after 35 days, 7 of 12 or 2 of 12 mice rejected MC38-WT cells, respectively. In therapy-model mice with established tumor derived from MC38-WT cells, inoculation of gene-transduced cells significantly suppressed growth of the tumor in MC38-IFNα-inoculated groups, but not in the IL-12-inoculated group. Immunohistologic and flow cytometric analyses showed marked infiltration of CD8+ cells in wild-type tumors of mice inoculated with IFN-α-expressing cells. Leukocyte-depletion experiments implicated CD8+ T cells in tumor rejection induced by IFN-α-transduction; both CD8+ T cells and natural killer cells were implicated in the more modest antitumor effect from IL-12 expression. To investigate induction of tumor-specific immune responses, we stimulated splenocytes from tumor-free mice twice in vitro with genetically modified MC38 cells. In vitro stimulations with MC38-IFNα cells induced definite MC38-specific lysis, but not stimulations with MC38-IL-12 cells. Injecting combination of MC38-IFNα and MC38-IL-12 cells caused an additive antitumor effect in the therapy model. These data suggested that IFN-α induces cytotoxic T lymphocytes and elicits long-lasting tumor-specific immunity, whereas IL-12 seems to stimulate non-specific killing. With additional refinements, combined IFN-α and IL-12 gene therapy might warrant clinical trials.
Literature
1.
go back to reference Belardelli F (1995) Role of interferons and other cytokines in the regulation of the immune response. APMIS 103:161PubMed Belardelli F (1995) Role of interferons and other cytokines in the regulation of the immune response. APMIS 103:161PubMed
2.
go back to reference Bronte V, Serafini P, Apolloni E, Zanovello P (2001) Tumor-induced immune dysfunctions caused by myeloid suppressor cells. J Immunother 24:431CrossRefPubMed Bronte V, Serafini P, Apolloni E, Zanovello P (2001) Tumor-induced immune dysfunctions caused by myeloid suppressor cells. J Immunother 24:431CrossRefPubMed
3.
go back to reference Byrnes AA, Ma X, Cuomo P, Park K, Wahl L, Wolf SF, Zhou H, Trinchieri G, Karp CL (2001) Type 1 interferons and IL-12: convergence and cross-regulation among mediators of cellular immunity. Eur J Immunol 31:2026CrossRefPubMed Byrnes AA, Ma X, Cuomo P, Park K, Wahl L, Wolf SF, Zhou H, Trinchieri G, Karp CL (2001) Type 1 interferons and IL-12: convergence and cross-regulation among mediators of cellular immunity. Eur J Immunol 31:2026CrossRefPubMed
4.
go back to reference Chen L, Linsley PS, Hellstrom KE (1993) Costimulation of T cells for tumor immunity. Immunol Today 14:483PubMed Chen L, Linsley PS, Hellstrom KE (1993) Costimulation of T cells for tumor immunity. Immunol Today 14:483PubMed
5.
go back to reference Durbin JE, Fernandez-Sesma A, Lee CK, Rao TD, Frey AB, Moran TM, Vukmanovic S, Garcia-Sastre A, Levy DE (2000) Type 1 IFN modulates innate and specific antiviral immunity. J Immunol 164:4220PubMed Durbin JE, Fernandez-Sesma A, Lee CK, Rao TD, Frey AB, Moran TM, Vukmanovic S, Garcia-Sastre A, Levy DE (2000) Type 1 IFN modulates innate and specific antiviral immunity. J Immunol 164:4220PubMed
6.
go back to reference Ferrantini M, Giovarelli M, Modesti A, Musiani P, Modica A, Venditti M, Peretti E, Plavec I, Lollini P-L, Nanni P, Forni G, Belardelli F (1994) IFN-α1 gene expression into a metastatic murine adenocarcinoma (TS/A) results in CD8+ T cell-mediated tumor rejection and development of antitumor immunity: comparative studies with IFN-γ-producing TS/A cells. J Immunol 153:4604PubMed Ferrantini M, Giovarelli M, Modesti A, Musiani P, Modica A, Venditti M, Peretti E, Plavec I, Lollini P-L, Nanni P, Forni G, Belardelli F (1994) IFN-α1 gene expression into a metastatic murine adenocarcinoma (TS/A) results in CD8+ T cell-mediated tumor rejection and development of antitumor immunity: comparative studies with IFN-γ-producing TS/A cells. J Immunol 153:4604PubMed
7.
go back to reference Gately MK, Desai BB, Wolitzky AG, Quinn PM, Dwyer CM, Podlaski FJ, Familletti PC, Sinigaglia F, Chizzonite R, Gubler U, Stern AS (1991) Regulation of human lymphocyte proliferation by a heterodimeric cytokine, IL-12 (cytotoxic lymphocyte maturation factor). J Immunol 147:874PubMed Gately MK, Desai BB, Wolitzky AG, Quinn PM, Dwyer CM, Podlaski FJ, Familletti PC, Sinigaglia F, Chizzonite R, Gubler U, Stern AS (1991) Regulation of human lymphocyte proliferation by a heterodimeric cytokine, IL-12 (cytotoxic lymphocyte maturation factor). J Immunol 147:874PubMed
8.
go back to reference Gollob JA, Kawasaki H, Ritz J (1997) Interferon-gamma and interleukin-4 regulate T cell interleukin-12 responsiveness through the differential modulation of high-affinity interleukin-12 receptor expression. Eur J Immunol 27:647 Gollob JA, Kawasaki H, Ritz J (1997) Interferon-gamma and interleukin-4 regulate T cell interleukin-12 responsiveness through the differential modulation of high-affinity interleukin-12 receptor expression. Eur J Immunol 27:647
9.
go back to reference Gubler U, Chua AO, Schoenhaut DS, Dwyer CM, McComas W, Motyka R, Nabavi N, Wolitzky AG, Quinn PM, Familletti PC, Gately MK (1991) Coexpression of two distinct genes is required to generate secreted bioactive cytotoxic lymphocyte maturation factor. Proc Natl Acad Sci USA 88:4143 Gubler U, Chua AO, Schoenhaut DS, Dwyer CM, McComas W, Motyka R, Nabavi N, Wolitzky AG, Quinn PM, Familletti PC, Gately MK (1991) Coexpression of two distinct genes is required to generate secreted bioactive cytotoxic lymphocyte maturation factor. Proc Natl Acad Sci USA 88:4143
10.
go back to reference Hiroishi K, Tüting T, Tahara H, Lotze MT (1999) Interferon-alpha gene therapy in combination with CD80-transduction reduces tumorigenicity and growth of established tumor in poorly immunogenic tumor models. Gene Ther 6:1988CrossRefPubMed Hiroishi K, Tüting T, Tahara H, Lotze MT (1999) Interferon-alpha gene therapy in combination with CD80-transduction reduces tumorigenicity and growth of established tumor in poorly immunogenic tumor models. Gene Ther 6:1988CrossRefPubMed
11.
go back to reference Hiroishi K, Tüting T, Lotze MT (2000) IFN-alpha-expressing tumor cells enhance generation and promote survival of tumor-specific CTLs. J Immunol 164:567PubMed Hiroishi K, Tüting T, Lotze MT (2000) IFN-alpha-expressing tumor cells enhance generation and promote survival of tumor-specific CTLs. J Immunol 164:567PubMed
12.
go back to reference Isaacs A, Lindenmann J (1957) Virus interference. I. The interferon. Proc R Soc Lond Ser B 147:258 Isaacs A, Lindenmann J (1957) Virus interference. I. The interferon. Proc R Soc Lond Ser B 147:258
13.
go back to reference Ito T, Amakawa R, Inaba M, Ikehara S, Inaba K, Fukuhara S (2001) Differential regulation of human blood dendritic cell subsets by IFNs. J Immunol 166:2961PubMed Ito T, Amakawa R, Inaba M, Ikehara S, Inaba K, Fukuhara S (2001) Differential regulation of human blood dendritic cell subsets by IFNs. J Immunol 166:2961PubMed
14.
go back to reference Juang Y, Lowther W, Kellum M, Au WC, Lin R, Hiscott J, Pitha PM (1998) Primary activation of interferon A and interferon B gene transcription by interferon regulatory factor 3. Proc Natl Acad Sci USA 95:9837CrossRefPubMed Juang Y, Lowther W, Kellum M, Au WC, Lin R, Hiscott J, Pitha PM (1998) Primary activation of interferon A and interferon B gene transcription by interferon regulatory factor 3. Proc Natl Acad Sci USA 95:9837CrossRefPubMed
15.
go back to reference Kobayashi M, Fitz L, Ryan M, Hewick RM, Clark SC, Chan S, Luodon R, Sherman F, Perussia B, Trinchieri G (1989) Identification and purification of natural killer cell stimulatory factor (NKSF), a cytokine with multiple biologic effects on human lymphocytes. J Exp Med 170:827PubMed Kobayashi M, Fitz L, Ryan M, Hewick RM, Clark SC, Chan S, Luodon R, Sherman F, Perussia B, Trinchieri G (1989) Identification and purification of natural killer cell stimulatory factor (NKSF), a cytokine with multiple biologic effects on human lymphocytes. J Exp Med 170:827PubMed
16.
go back to reference Marie I, Durbin JE, Levy DE (1998) Differential viral induction of distinct interferon-alpha genes by positive feedback through interferon regulatory factor-7. EMBO J 17:6660CrossRefPubMed Marie I, Durbin JE, Levy DE (1998) Differential viral induction of distinct interferon-alpha genes by positive feedback through interferon regulatory factor-7. EMBO J 17:6660CrossRefPubMed
17.
go back to reference Mayordomo JI, Zorina T, Storkus WJ, Zitvogel L, Celluuzzi C, Falo LD, Melief CJ, Ildstand ST, Martin Kast W, Deleo AB, Lotze MT (1995) Bone marrow-derived dendritic cells pulsed with synthetic tumour peptides elicit protective and therapeutic antitumour immunity. Nat Med 1:1297PubMed Mayordomo JI, Zorina T, Storkus WJ, Zitvogel L, Celluuzzi C, Falo LD, Melief CJ, Ildstand ST, Martin Kast W, Deleo AB, Lotze MT (1995) Bone marrow-derived dendritic cells pulsed with synthetic tumour peptides elicit protective and therapeutic antitumour immunity. Nat Med 1:1297PubMed
18.
go back to reference Mehrotra PT, Wu D, Crim JA, Mostowski HS, Siegel JP (1993) Effects of IL-12 on the generation of cytotoxic activity in human CD8+ T lymphocytes. J Immunol 151:2444PubMed Mehrotra PT, Wu D, Crim JA, Mostowski HS, Siegel JP (1993) Effects of IL-12 on the generation of cytotoxic activity in human CD8+ T lymphocytes. J Immunol 151:2444PubMed
19.
go back to reference Mendiratta SK, Quezada A, Matar M, Thull NM, Bishop JS, Nordstrom JL, Pericle F (2000) Combination of interleukin 12 and interferon a gene therapy induces a synergistic antitumor response against colon and renal cell carcinoma. Hum Gene Ther 11:1851CrossRefPubMed Mendiratta SK, Quezada A, Matar M, Thull NM, Bishop JS, Nordstrom JL, Pericle F (2000) Combination of interleukin 12 and interferon a gene therapy induces a synergistic antitumor response against colon and renal cell carcinoma. Hum Gene Ther 11:1851CrossRefPubMed
20.
go back to reference Musiani P, Modesti A, Giovarelli M, Cavallo F, Colombo MP, Lollini PL, Forni G (1997) Cytokines, tumour-cell death and immunogenicity: a question of choice. Immunol Today 18:32PubMed Musiani P, Modesti A, Giovarelli M, Cavallo F, Colombo MP, Lollini PL, Forni G (1997) Cytokines, tumour-cell death and immunogenicity: a question of choice. Immunol Today 18:32PubMed
21.
go back to reference Nguyen KB, Cousens LP, Doughty LA, Pien GC, Durbin JE, Biron CA (2000) Interferon alpha/beta-mediated inhibition and promotion of interferon gamma: STAT1 resolves a paradox. Nat Immunol 1:70CrossRefPubMed Nguyen KB, Cousens LP, Doughty LA, Pien GC, Durbin JE, Biron CA (2000) Interferon alpha/beta-mediated inhibition and promotion of interferon gamma: STAT1 resolves a paradox. Nat Immunol 1:70CrossRefPubMed
22.
go back to reference Nishioka Y, Hirao M, Robbins PD, Lotze MT, Tahara H (1999) Induction of systemic and therapeutic antitumor immunity using intratumoral injection of dendritic cells genetically modified to express interleukin 12. Cancer Res 59:4035PubMed Nishioka Y, Hirao M, Robbins PD, Lotze MT, Tahara H (1999) Induction of systemic and therapeutic antitumor immunity using intratumoral injection of dendritic cells genetically modified to express interleukin 12. Cancer Res 59:4035PubMed
23.
go back to reference O'Connell J, Bennett MW, O'Sullivan GC, Collins JK, Shanahan F (1999) The Fas counterattack: cancer as a site of immune privilege. Immunol Today 20:46CrossRefPubMed O'Connell J, Bennett MW, O'Sullivan GC, Collins JK, Shanahan F (1999) The Fas counterattack: cancer as a site of immune privilege. Immunol Today 20:46CrossRefPubMed
24.
go back to reference Okada H, Villa L, Attanucci J, Erff M, Fellows WK, Lotze MT, Pollack IF, Chambers WH (2001) Cytokine gene therapy of gliomas: effective induction of therapeutic immunity to intracranial tumors by peripheral immunization with interleukin-4 transduced glioma cells. Gene Ther 8:1157CrossRefPubMed Okada H, Villa L, Attanucci J, Erff M, Fellows WK, Lotze MT, Pollack IF, Chambers WH (2001) Cytokine gene therapy of gliomas: effective induction of therapeutic immunity to intracranial tumors by peripheral immunization with interleukin-4 transduced glioma cells. Gene Ther 8:1157CrossRefPubMed
25.
go back to reference Pear WS, Nolan GP, Scott ML, Baltimore D (1993) Production of high-titer helper-free retroviruses by transient transfection. Proc Natl Acad Sci USA 90:8392 Pear WS, Nolan GP, Scott ML, Baltimore D (1993) Production of high-titer helper-free retroviruses by transient transfection. Proc Natl Acad Sci USA 90:8392
26.
go back to reference Robertson MJ, Soiffer RJ, Wolf SF, Manley TJ, Donahue C, Young D, Herrmann SH, Ritz J (1992) Response of human natural killer (NK) cells to NK cell stimulatory factor (NKSF): cytolytic activity and proliferation of NK cells are differentially regulated by NKSF. J Exp Med 175:779PubMed Robertson MJ, Soiffer RJ, Wolf SF, Manley TJ, Donahue C, Young D, Herrmann SH, Ritz J (1992) Response of human natural killer (NK) cells to NK cell stimulatory factor (NKSF): cytolytic activity and proliferation of NK cells are differentially regulated by NKSF. J Exp Med 175:779PubMed
27.
go back to reference Rogge L, Barberis-Maino L, Biffi M, Passini N, Presky DH, Gubler U, Sinigaglia F (1997) Selective expression of an interleukin-12 receptor component by human T helper 1 cells. J Exp Med 185:825PubMed Rogge L, Barberis-Maino L, Biffi M, Passini N, Presky DH, Gubler U, Sinigaglia F (1997) Selective expression of an interleukin-12 receptor component by human T helper 1 cells. J Exp Med 185:825PubMed
28.
go back to reference Santini SM, Lapenta C, Logozzi M, Parlato S, Spada M, Pucchio T di, Belardelli F (2000) Type 1 interferon as a powerful adjuvant for monocyte-derived dendritic cell development and activity in vitro and in Hu-PBL-SCID mice. J Exp Med 191:1777PubMed Santini SM, Lapenta C, Logozzi M, Parlato S, Spada M, Pucchio T di, Belardelli F (2000) Type 1 interferon as a powerful adjuvant for monocyte-derived dendritic cell development and activity in vitro and in Hu-PBL-SCID mice. J Exp Med 191:1777PubMed
29.
go back to reference Stern AS, Podlaski FJ, Hulmes JD, Pan Y-CE, Quinn PM, Wolitzky AG, Familletti PC, Stremlo DL, Truitt T, Chizzonite R, Gately MK (1990) Purification to homogeneity and partial characterization of cytotoxic lymphocyte maturation factor from human B-lymphoblastoid cells. Proc Natl Acad Sci USA 87:6808 Stern AS, Podlaski FJ, Hulmes JD, Pan Y-CE, Quinn PM, Wolitzky AG, Familletti PC, Stremlo DL, Truitt T, Chizzonite R, Gately MK (1990) Purification to homogeneity and partial characterization of cytotoxic lymphocyte maturation factor from human B-lymphoblastoid cells. Proc Natl Acad Sci USA 87:6808
30.
go back to reference Tahara H, Zitvogel L, Storkus WJ, Zeh HJI, McKinney TG, Schreiber RD, Gubler U, Robbins PD, Lotze MT (1995) Effective eradication of established murine tumors with IL-12 gene therapy using a polycistronic retroviral vector. J Immunol 154:6466PubMed Tahara H, Zitvogel L, Storkus WJ, Zeh HJI, McKinney TG, Schreiber RD, Gubler U, Robbins PD, Lotze MT (1995) Effective eradication of established murine tumors with IL-12 gene therapy using a polycistronic retroviral vector. J Immunol 154:6466PubMed
31.
go back to reference Tan MH, Holyoke ED, Goldrosen MH (1976) Murine colon adenocarcinomas: methods for selective culture in vitro. J Natl Cancer Inst 56:871 Tan MH, Holyoke ED, Goldrosen MH (1976) Murine colon adenocarcinomas: methods for selective culture in vitro. J Natl Cancer Inst 56:871
32.
go back to reference Trinchieri G, Scott P (1995) Interleukin-12: a proinflammatory cytokine with immunoregulatory functions. Res Immunol 146:423CrossRefPubMed Trinchieri G, Scott P (1995) Interleukin-12: a proinflammatory cytokine with immunoregulatory functions. Res Immunol 146:423CrossRefPubMed
33.
go back to reference Tüting T, DeLeo AB, Lotze MT, Storkus WJ (1997) Genetically modified bone marrow-derived dendritic cells expressing tumor-associated viral or "self" antigens induce antitumor immunity in vivo. Eur J Immunol 27:2702PubMed Tüting T, DeLeo AB, Lotze MT, Storkus WJ (1997) Genetically modified bone marrow-derived dendritic cells expressing tumor-associated viral or "self" antigens induce antitumor immunity in vivo. Eur J Immunol 27:2702PubMed
34.
go back to reference Hoegen P von, Zawatzky R, Schirrmacher V (1990) Modification of tumor cells by a low dose of Newcastle disease virus. III. Potentiation of tumor-specific cytolytic T cell activity via induction of interferon-alpha/beta. Cell Immunol 126:80PubMed Hoegen P von, Zawatzky R, Schirrmacher V (1990) Modification of tumor cells by a low dose of Newcastle disease virus. III. Potentiation of tumor-specific cytolytic T cell activity via induction of interferon-alpha/beta. Cell Immunol 126:80PubMed
35.
go back to reference Zhang X, Sun S, Hwang I, Tough DF, Sprent J (1998) Potent and selective stimulation of memory-phenotype CD8+ T cells in vivo by IL-15. Immunity 8:591PubMed Zhang X, Sun S, Hwang I, Tough DF, Sprent J (1998) Potent and selective stimulation of memory-phenotype CD8+ T cells in vivo by IL-15. Immunity 8:591PubMed
36.
go back to reference Zitvogel L, Tahara H, Robbins PD, Storkus WJ, Clarke MR, Nalesnik MA, Lotze MT (1995) Cancer immunotherapy of established tumors with IL-12. Effective delivery by genetically engineered fibroblasts. J Immunol 155:1393PubMed Zitvogel L, Tahara H, Robbins PD, Storkus WJ, Clarke MR, Nalesnik MA, Lotze MT (1995) Cancer immunotherapy of established tumors with IL-12. Effective delivery by genetically engineered fibroblasts. J Immunol 155:1393PubMed
37.
go back to reference Zitvogel L, Robbins PD, Storkus WJ, Clarke MR, Maeurer MJ, Campbell RL, Davis CG, Tahara H, Schreiber RD, Lotze MT (1996) Interleukin-12 and B7.1 co-stimulation cooperate in the induction of effective antitumor immunity and therapy of established tumors. Eur J Immunol 26:1335PubMed Zitvogel L, Robbins PD, Storkus WJ, Clarke MR, Maeurer MJ, Campbell RL, Davis CG, Tahara H, Schreiber RD, Lotze MT (1996) Interleukin-12 and B7.1 co-stimulation cooperate in the induction of effective antitumor immunity and therapy of established tumors. Eur J Immunol 26:1335PubMed
Metadata
Title
Interferon-α and interleukin-12 gene therapy of cancer: interferon-α induces tumor-specific immune responses while interleukin-12 stimulates non-specific killing
Authors
Jun-ichi Eguchi
Kazumasa Hiroishi
Shigeaki Ishii
Keiji Mitamura
Publication date
01-06-2003
Publisher
Springer-Verlag
Published in
Cancer Immunology, Immunotherapy / Issue 6/2003
Print ISSN: 0340-7004
Electronic ISSN: 1432-0851
DOI
https://doi.org/10.1007/s00262-002-0367-2

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