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Published in: Cancer Immunology, Immunotherapy 10/2019

01-10-2019 | Vaccination | Original Article

Gastrin vaccine improves response to immune checkpoint antibody in murine pancreatic cancer by altering the tumor microenvironment

Authors: Nicholas Osborne, Rebecca Sundseth, Julian Burks, Hong Cao, Xunxian Liu, Alexander H. Kroemer, Lynda Sutton, Allen Cato, Jill P. Smith

Published in: Cancer Immunology, Immunotherapy | Issue 10/2019

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Abstract

Pancreatic cancer has been termed a ‘recalcitrant cancer’ due to its relative resistance to chemotherapy and immunotherapy. This resistance is thought to be due in part to the dense fibrotic tumor microenvironment and lack of tumor infiltrating CD8 + T cells. The gastrointestinal peptide, gastrin, has been shown to stimulate growth of pancreatic cancer by both a paracrine and autocrine mechanism. Interruption of gastrin at the CCK receptor may reduce tumor-associated fibrosis and alter tumor immune cells. Polyclonal Ab Stimulator (PAS) is a vaccine that targets gastrin and has been shown to prolong survival of patients with pancreatic cancer. Here, we report that PAS vaccination monotherapy elicits both a humoral and cellular immune response when used in immune competent mice-bearing pancreatic tumors and that PAS monotherapy produced a marked T-cell activation and influx of CD8 + lymphocytes into pancreatic tumors. Isolated peripheral lymphocytes elicited cytokine release upon re-stimulation with gastrin in vitro demonstrating specificity of immune activation for the target peptide. Combination therapy with PAS and PD-1 Ab activated CD4 −/CD8 − TEMRA cells important in T-cell-mediated tumor death and memory. Tumors of mice treated with PAS (250 μg) or PAS (100 and 250 μg) in combination with a PD-1 Ab were significantly smaller compared to tumors from PBS or PD-1 Ab-treated mice. When PAS was given in combination with PD-1 Ab, tumors had less fibrosis, fewer inhibitory Treg lymphocytes, and fewer tumor-associated macrophages. These findings reveal a novel approach to improve treatment strategies for pancreatic cancer.
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Literature
1.
2.
go back to reference Ryan DP, Hong TS, Bardeesy N (2014) Pancreatic adenocarcinoma. N Engl J Med 371:1039–1049PubMed Ryan DP, Hong TS, Bardeesy N (2014) Pancreatic adenocarcinoma. N Engl J Med 371:1039–1049PubMed
3.
go back to reference Falconi M, Mantovani W, Bettini R, Talamini G, Bassi C, Cascinu S, Oliani C, Pederzoli P (2003) Carcinoma of pancreatic body and tail: are there improvements in diagnosis and treatment modalities over the past decade? Dig Liver Dis 35:421–427PubMed Falconi M, Mantovani W, Bettini R, Talamini G, Bassi C, Cascinu S, Oliani C, Pederzoli P (2003) Carcinoma of pancreatic body and tail: are there improvements in diagnosis and treatment modalities over the past decade? Dig Liver Dis 35:421–427PubMed
4.
go back to reference Siegel RL, Miller KD, Jemal A (2016) Cancer statistics, 2016. CA Cancer J Clin 66:7–30PubMed Siegel RL, Miller KD, Jemal A (2016) Cancer statistics, 2016. CA Cancer J Clin 66:7–30PubMed
5.
go back to reference Neesse A, Michl P, Frese KK, Feig C, Cook N, Jacobetz MA, Lolkema MP, Buchholz M, Olive KP, Gress TM, Tuveson DA (2011) Stromal biology and therapy in pancreatic cancer. Gut 60:861–868PubMed Neesse A, Michl P, Frese KK, Feig C, Cook N, Jacobetz MA, Lolkema MP, Buchholz M, Olive KP, Gress TM, Tuveson DA (2011) Stromal biology and therapy in pancreatic cancer. Gut 60:861–868PubMed
6.
go back to reference Templeton AW, Brentnall TA (2013) Screening and surgical outcomes of familial pancreatic cancer. Surg Clin N Am 93:629–645PubMed Templeton AW, Brentnall TA (2013) Screening and surgical outcomes of familial pancreatic cancer. Surg Clin N Am 93:629–645PubMed
7.
go back to reference Zheng L, Xue J, Jaffee EM, Habtezion A (2013) Role of immune cells and immune-based therapies in pancreatitis and pancreatic ductal adenocarcinoma. Gastroenterology 144:1230–1240PubMed Zheng L, Xue J, Jaffee EM, Habtezion A (2013) Role of immune cells and immune-based therapies in pancreatitis and pancreatic ductal adenocarcinoma. Gastroenterology 144:1230–1240PubMed
8.
go back to reference Feig C, Gopinathan A, Neesse A, Chan DS, Cook N, Tuveson DA (2012) The pancreas cancer microenvironment. Clin Cancer Res 18:4266–4276PubMedPubMedCentral Feig C, Gopinathan A, Neesse A, Chan DS, Cook N, Tuveson DA (2012) The pancreas cancer microenvironment. Clin Cancer Res 18:4266–4276PubMedPubMedCentral
9.
go back to reference Quante M, Varga J, Wang TC, Greten FR (2013) The gastrointestinal tumor microenvironment. Gastroenterology 145:63–78PubMed Quante M, Varga J, Wang TC, Greten FR (2013) The gastrointestinal tumor microenvironment. Gastroenterology 145:63–78PubMed
10.
go back to reference Vonderheide RH, Bayne LJ (2013) Inflammatory networks and immune surveillance of pancreatic carcinoma. Curr Opin Immunol 25:200–205PubMedPubMedCentral Vonderheide RH, Bayne LJ (2013) Inflammatory networks and immune surveillance of pancreatic carcinoma. Curr Opin Immunol 25:200–205PubMedPubMedCentral
11.
go back to reference Brahmer JR, Tykodi SS, Chow LQ, Hwu WJ, Topalian SL, Hwu P, Drake CG, Camacho LH, Kauh J, Odunsi K, Pitot HC, Hamid O, Bhatia S, Martins R, Eaton K, Chen S, Salay TM, Alaparthy S, Grosso JF, Korman AJ, Parker SM, Agrawal S, Goldberg SM, Pardoll DM, Gupta A, Wigginton JM (2012) Safety and activity of anti-PD-L1 Ab in patients with advanced cancer. N Engl J Med 366:2455–2465PubMedPubMedCentral Brahmer JR, Tykodi SS, Chow LQ, Hwu WJ, Topalian SL, Hwu P, Drake CG, Camacho LH, Kauh J, Odunsi K, Pitot HC, Hamid O, Bhatia S, Martins R, Eaton K, Chen S, Salay TM, Alaparthy S, Grosso JF, Korman AJ, Parker SM, Agrawal S, Goldberg SM, Pardoll DM, Gupta A, Wigginton JM (2012) Safety and activity of anti-PD-L1 Ab in patients with advanced cancer. N Engl J Med 366:2455–2465PubMedPubMedCentral
13.
go back to reference Herbst RS, Soria JC, Kowanetz M, Fine GD, Hamid O, Gordon MS, Sosman JA, McDermott DF, Powderly JD, Gettinger SN, Kohrt HE, Horn L, Lawrence DP, Rost S, Leabman M, Xiao Y, Mokatrin A, Koeppen H, Hegde PS, Mellman I, Chen DS, Hodi FS (2014) Predictive correlates of response to the anti-PD-L1 Ab MPDL3280A in cancer patients. Nature 515:563–567PubMedPubMedCentral Herbst RS, Soria JC, Kowanetz M, Fine GD, Hamid O, Gordon MS, Sosman JA, McDermott DF, Powderly JD, Gettinger SN, Kohrt HE, Horn L, Lawrence DP, Rost S, Leabman M, Xiao Y, Mokatrin A, Koeppen H, Hegde PS, Mellman I, Chen DS, Hodi FS (2014) Predictive correlates of response to the anti-PD-L1 Ab MPDL3280A in cancer patients. Nature 515:563–567PubMedPubMedCentral
14.
go back to reference Hilmi M, Bartholin L, Neuzillet C (2018) Immune therapies in pancreatic ductal adenocarcinoma: where are we now? World J Gastroenterol 24:2137–2151PubMedPubMedCentral Hilmi M, Bartholin L, Neuzillet C (2018) Immune therapies in pancreatic ductal adenocarcinoma: where are we now? World J Gastroenterol 24:2137–2151PubMedPubMedCentral
15.
go back to reference Patnaik A, Kang SP, Rasco D, Papadopoulos KP, Elassaiss-Schaap J, Beeram M, Drengler R, Chen C, Smith L, Espino G, Gergich K, Delgado L, Daud A, Lindia JA, Li XN, Pierce RH, Yearley JH, Wu D, Laterza O, Lehnert M, Iannone R, Tolcher AW (2015) Phase I study of pembrolizumab (MK-3475; Anti-PD-1 Monoclonal Ab) in patients with advanced solid tumors. Clin Cancer Res 21:4286–4293PubMed Patnaik A, Kang SP, Rasco D, Papadopoulos KP, Elassaiss-Schaap J, Beeram M, Drengler R, Chen C, Smith L, Espino G, Gergich K, Delgado L, Daud A, Lindia JA, Li XN, Pierce RH, Yearley JH, Wu D, Laterza O, Lehnert M, Iannone R, Tolcher AW (2015) Phase I study of pembrolizumab (MK-3475; Anti-PD-1 Monoclonal Ab) in patients with advanced solid tumors. Clin Cancer Res 21:4286–4293PubMed
16.
go back to reference Royal RE, Levy C, Turner K, Mathur A, Hughes M, Kammula US, Sherry RM, Topalian SL, Yang JC, Lowy I, Rosenberg SA (2010) Phase 2 trial of single agent Ipilimumab (anti-CTLA-4) for locally advanced or metastatic pancreatic adenocarcinoma. J Immunother 33:828–833PubMedPubMedCentral Royal RE, Levy C, Turner K, Mathur A, Hughes M, Kammula US, Sherry RM, Topalian SL, Yang JC, Lowy I, Rosenberg SA (2010) Phase 2 trial of single agent Ipilimumab (anti-CTLA-4) for locally advanced or metastatic pancreatic adenocarcinoma. J Immunother 33:828–833PubMedPubMedCentral
17.
go back to reference Nywening TM, Wang-Gillam A, Sanford DE, Belt BA, Panni RZ, Cusworth BM, Toriola AT, Nieman RK, Worley LA, Yano M, Fowler KJ, Lockhart AC, Suresh R, Tan BR, Lim KH, Fields RC, Strasberg SM, Hawkins WG, Denardo DG, Goedegebuure SP, Linehan DC (2016) Targeting tumour-associated macrophages with CCR17 inhibition in combination with FOLFIRINOX in patients with borderline resectable and locally advanced pancreatic cancer: a single-centre, open-label, dose-finding, non-randomised, phase 1b trial. Lancet Oncol 17:651–662PubMedPubMedCentral Nywening TM, Wang-Gillam A, Sanford DE, Belt BA, Panni RZ, Cusworth BM, Toriola AT, Nieman RK, Worley LA, Yano M, Fowler KJ, Lockhart AC, Suresh R, Tan BR, Lim KH, Fields RC, Strasberg SM, Hawkins WG, Denardo DG, Goedegebuure SP, Linehan DC (2016) Targeting tumour-associated macrophages with CCR17 inhibition in combination with FOLFIRINOX in patients with borderline resectable and locally advanced pancreatic cancer: a single-centre, open-label, dose-finding, non-randomised, phase 1b trial. Lancet Oncol 17:651–662PubMedPubMedCentral
18.
go back to reference Schally AV, Nagy A (2004) Chemotherapy targeted to cancers through tumoral hormone receptors. Trends Endocrinol Metab 15:300–310PubMed Schally AV, Nagy A (2004) Chemotherapy targeted to cancers through tumoral hormone receptors. Trends Endocrinol Metab 15:300–310PubMed
19.
go back to reference Smith JP, Fantaskey AP, Liu G, Zagon IS (1995) Identification of gastrin as a growth peptide in human pancreatic cancer. Am J Physiol 268:R135–R141PubMed Smith JP, Fantaskey AP, Liu G, Zagon IS (1995) Identification of gastrin as a growth peptide in human pancreatic cancer. Am J Physiol 268:R135–R141PubMed
20.
go back to reference Smith JP, Shih A, Wu Y, McLaughlin PJ, Zagon IS (1996) Gastrin regulates growth of human pancreatic cancer in a tonic and autocrine fashion. Am J Physiol 270:R1078–R1084PubMed Smith JP, Shih A, Wu Y, McLaughlin PJ, Zagon IS (1996) Gastrin regulates growth of human pancreatic cancer in a tonic and autocrine fashion. Am J Physiol 270:R1078–R1084PubMed
21.
go back to reference Matters GL, Harms JF, McGovern CO, Jayakumar C, Crepin K, Smith ZP, Nelson MC, Stock H, Fenn CW, Kaiser J, Kester M, Smith JP (2009) Growth of human pancreatic cancer is inhibited by down-regulation of gastrin gene expression. Pancreas 38:e151–e161PubMedPubMedCentral Matters GL, Harms JF, McGovern CO, Jayakumar C, Crepin K, Smith ZP, Nelson MC, Stock H, Fenn CW, Kaiser J, Kester M, Smith JP (2009) Growth of human pancreatic cancer is inhibited by down-regulation of gastrin gene expression. Pancreas 38:e151–e161PubMedPubMedCentral
22.
go back to reference Smith JP, Liu G, Soundararajan V, McLaughlin PJ, Zagon IS (1994) Identification and characterization of CCK-B/gastrin receptors in human pancreatic cancer cell lines. Am J Physiol 266:R277–R283PubMed Smith JP, Liu G, Soundararajan V, McLaughlin PJ, Zagon IS (1994) Identification and characterization of CCK-B/gastrin receptors in human pancreatic cancer cell lines. Am J Physiol 266:R277–R283PubMed
23.
go back to reference Smith JP, Solomon TE (2014) Cholecystokinin and pancreatic cancer: the chicken or the egg? Am J Physiol Gastrointest Liver Physiol 306:G91–G101PubMed Smith JP, Solomon TE (2014) Cholecystokinin and pancreatic cancer: the chicken or the egg? Am J Physiol Gastrointest Liver Physiol 306:G91–G101PubMed
24.
go back to reference Zhang JG, Liu JX, Jia XX, Geng J, Yu F, Cong B (2014) Cholecystokinin octapeptide regulates the differentiation and effector cytokine production of CD4 T cells in vitro. Int Immunopharmacol 20:307–315PubMed Zhang JG, Liu JX, Jia XX, Geng J, Yu F, Cong B (2014) Cholecystokinin octapeptide regulates the differentiation and effector cytokine production of CD4 T cells in vitro. Int Immunopharmacol 20:307–315PubMed
25.
go back to reference Berna MJ, Seiz O, Nast JF, Benten D, Blaker M, Koch J, Lohse AW, Pace A (2010) CCK1 and CCK2 receptors are expressed on pancreatic stellate cells and induce collagen production. J Biol Chem 285:38905–38914PubMedPubMedCentral Berna MJ, Seiz O, Nast JF, Benten D, Blaker M, Koch J, Lohse AW, Pace A (2010) CCK1 and CCK2 receptors are expressed on pancreatic stellate cells and induce collagen production. J Biol Chem 285:38905–38914PubMedPubMedCentral
26.
go back to reference Singh P, Owlia A, Espeijo R, Dai B (1995) Novel gastrin receptors mediate mitogenic effects of gastrin and processing intermediates of gastrin on Swiss 3T3 fibroblasts. Absence of detectable cholecystokinin (CCK)-A and CCK-B receptors. J Biol Chem 270:8429–8438PubMed Singh P, Owlia A, Espeijo R, Dai B (1995) Novel gastrin receptors mediate mitogenic effects of gastrin and processing intermediates of gastrin on Swiss 3T3 fibroblasts. Absence of detectable cholecystokinin (CCK)-A and CCK-B receptors. J Biol Chem 270:8429–8438PubMed
27.
go back to reference Smith JP, Cooper TK, McGovern CO, Gilius EL, Zhong Q, Liao J, Molinolo AA, Gutkind JS, Matters GL (2014) Cholecystokinin receptor antagonist halts progression of pancreatic cancer precursor lesions and fibrosis in mice. Pancreas 43:1050–1059PubMedPubMedCentral Smith JP, Cooper TK, McGovern CO, Gilius EL, Zhong Q, Liao J, Molinolo AA, Gutkind JS, Matters GL (2014) Cholecystokinin receptor antagonist halts progression of pancreatic cancer precursor lesions and fibrosis in mice. Pancreas 43:1050–1059PubMedPubMedCentral
28.
go back to reference Smith JP, Wang S, Nadella S, Jablonski SA, Weiner LM (2018) Cholecystokinin receptor antagonist alters pancreatic cancer microenvironment and increases efficacy of immune checkpoint Ab therapy in mice. Cancer Immunol Immunother 67:195–207PubMed Smith JP, Wang S, Nadella S, Jablonski SA, Weiner LM (2018) Cholecystokinin receptor antagonist alters pancreatic cancer microenvironment and increases efficacy of immune checkpoint Ab therapy in mice. Cancer Immunol Immunother 67:195–207PubMed
29.
go back to reference Watson SA, Michaeli D, Grimes S, Morris TM, Robinson G, Varro A, Justin TA, Hardcastle JD (1996) Gastrimmune raises antibodies that neutralize amidated and glycine-extended gastrin-17 and inhibit the growth of colon cancer. Cancer Res 56:880–885PubMed Watson SA, Michaeli D, Grimes S, Morris TM, Robinson G, Varro A, Justin TA, Hardcastle JD (1996) Gastrimmune raises antibodies that neutralize amidated and glycine-extended gastrin-17 and inhibit the growth of colon cancer. Cancer Res 56:880–885PubMed
30.
go back to reference Watson SA, Morris TM, Varro A, Michaeli D, Smith AM (1999) A comparison of the therapeutic effectiveness of gastrin neutralisation in two human gastric cancer models: relation to endocrine and autocrine/paracrine gastrin mediated growth. Gut 45:812–817PubMedPubMedCentral Watson SA, Morris TM, Varro A, Michaeli D, Smith AM (1999) A comparison of the therapeutic effectiveness of gastrin neutralisation in two human gastric cancer models: relation to endocrine and autocrine/paracrine gastrin mediated growth. Gut 45:812–817PubMedPubMedCentral
31.
go back to reference Brett BT, Smith SC, Bouvier CV, Michaeli D, Hochhauser D, Davidson BR, Kurzawinski TR, Watkinson AF, Van SN, Pounder RE, Caplin ME (2002) Phase II study of anti-gastrin-17 antibodies, raised to G17DT, in advanced pancreatic cancer. J Clin Oncol 20:4225–4231PubMed Brett BT, Smith SC, Bouvier CV, Michaeli D, Hochhauser D, Davidson BR, Kurzawinski TR, Watkinson AF, Van SN, Pounder RE, Caplin ME (2002) Phase II study of anti-gastrin-17 antibodies, raised to G17DT, in advanced pancreatic cancer. J Clin Oncol 20:4225–4231PubMed
32.
go back to reference Gilliam AD, Broome P, Topuzov EG, Garin AM, Pulay I, Humphreys J, Whitehead A, Takhar A, Rowlands BJ, Beckingham IJ (2012) An international multicenter randomized controlled trial of G17DT in patients with pancreatic cancer. Pancreas 41:374–379PubMed Gilliam AD, Broome P, Topuzov EG, Garin AM, Pulay I, Humphreys J, Whitehead A, Takhar A, Rowlands BJ, Beckingham IJ (2012) An international multicenter randomized controlled trial of G17DT in patients with pancreatic cancer. Pancreas 41:374–379PubMed
33.
go back to reference Boj SF, Hwang CI, Baker LA, Chio II, Engle DD, Corbo V, Jager M, Ponz-Sarvise M, Tiriac H, Spector MS, Gracanin A, Oni T, Yu KH, van Boxtel R, Huch M, Rivera KD, Wilson JP, Feigin ME, Ohlund D, Handly-Santana A, Ardito-Abraham CM, Ludwig M, Elyada E, Alagesan B, Biffi G, Yordanov GN, Delcuze B, Creighton B, Wright K, Park Y, Morsink FH, Molenaar IQ, Borel Rinkes IH, Cuppen E, Hao Y, Jin Y, Nijman IJ, Iacobuzio-Donahue C, Leach SD, Pappin DJ, Hammell M, Klimstra DS, Basturk O, Hruban RH, Offerhaus GJ, Vries RG, Clevers H, Tuveson DA (2015) Organoid models of human and mouse ductal pancreatic cancer. Cell 160:324–338PubMed Boj SF, Hwang CI, Baker LA, Chio II, Engle DD, Corbo V, Jager M, Ponz-Sarvise M, Tiriac H, Spector MS, Gracanin A, Oni T, Yu KH, van Boxtel R, Huch M, Rivera KD, Wilson JP, Feigin ME, Ohlund D, Handly-Santana A, Ardito-Abraham CM, Ludwig M, Elyada E, Alagesan B, Biffi G, Yordanov GN, Delcuze B, Creighton B, Wright K, Park Y, Morsink FH, Molenaar IQ, Borel Rinkes IH, Cuppen E, Hao Y, Jin Y, Nijman IJ, Iacobuzio-Donahue C, Leach SD, Pappin DJ, Hammell M, Klimstra DS, Basturk O, Hruban RH, Offerhaus GJ, Vries RG, Clevers H, Tuveson DA (2015) Organoid models of human and mouse ductal pancreatic cancer. Cell 160:324–338PubMed
34.
go back to reference Smith JP, Wang S, Nadella S, Jablonski SA, Weiner LM (2018) Cholecystokinin receptor antagonist alters pancreatic cancer microenvironment and increases efficacy of immune checkpoint Ab therapy in mice. Cancer Immunol Immunother 67:195–207PubMed Smith JP, Wang S, Nadella S, Jablonski SA, Weiner LM (2018) Cholecystokinin receptor antagonist alters pancreatic cancer microenvironment and increases efficacy of immune checkpoint Ab therapy in mice. Cancer Immunol Immunother 67:195–207PubMed
35.
go back to reference Kiyotani K, Chan HT, Nakamura Y (2018) Immunopharmacogenomics towards personalized cancer immunotherapy targeting neoantigens. Cancer Sci 109:542–549PubMedPubMedCentral Kiyotani K, Chan HT, Nakamura Y (2018) Immunopharmacogenomics towards personalized cancer immunotherapy targeting neoantigens. Cancer Sci 109:542–549PubMedPubMedCentral
36.
go back to reference Nizard M, Roussel H, Diniz MO, Karaki S, Tran T, Voron T, Dransart E, Sandoval F, Riquet M, Rance B, Marcheteau E, Fabre E, Mandavit M, Terme M, Blanc C, Escudie JB, Gibault L, Barthes FLP, Granier C, Ferreira LCS, Badoual C, Johannes L, Tartour E (2017) Induction of resident memory T cells enhances the efficacy of cancer vaccine. Nat Commun 8:15221PubMedPubMedCentral Nizard M, Roussel H, Diniz MO, Karaki S, Tran T, Voron T, Dransart E, Sandoval F, Riquet M, Rance B, Marcheteau E, Fabre E, Mandavit M, Terme M, Blanc C, Escudie JB, Gibault L, Barthes FLP, Granier C, Ferreira LCS, Badoual C, Johannes L, Tartour E (2017) Induction of resident memory T cells enhances the efficacy of cancer vaccine. Nat Commun 8:15221PubMedPubMedCentral
37.
go back to reference Willcox BE, Willcox CR (2019) gammadelta TCR ligands: the quest to solve a 500-million-year-old mystery. Nat Immunol 20:121–128PubMed Willcox BE, Willcox CR (2019) gammadelta TCR ligands: the quest to solve a 500-million-year-old mystery. Nat Immunol 20:121–128PubMed
38.
39.
go back to reference Janakiram NB, Mohammed A, Bryant T, Ritchie R, Stratton N, Jackson L, Lightfoot S, Benbrook DM, Asch AS, Lang ML, Rao CV (2017) Loss of natural killer T cells promotes pancreatic cancer in LSL-Kras(G12D/+) mice. Immunology 152:36–51PubMedPubMedCentral Janakiram NB, Mohammed A, Bryant T, Ritchie R, Stratton N, Jackson L, Lightfoot S, Benbrook DM, Asch AS, Lang ML, Rao CV (2017) Loss of natural killer T cells promotes pancreatic cancer in LSL-Kras(G12D/+) mice. Immunology 152:36–51PubMedPubMedCentral
40.
go back to reference He QF, Xu Y, Li J, Huang ZM, Li XH, Wang X (2019) CD8 + T-cell exhaustion in cancer: mechanisms and new area for cancer immunotherapy. Brief Funct Genom 18:99–106 He QF, Xu Y, Li J, Huang ZM, Li XH, Wang X (2019) CD8 + T-cell exhaustion in cancer: mechanisms and new area for cancer immunotherapy. Brief Funct Genom 18:99–106
41.
go back to reference Lohneis P, Sinn M, Bischoff S, Juhling A, Pelzer U, Wislocka L, Bahra M, Sinn BV, Denkert C, Oettle H, Blaker H, Riess H, Johrens K, Striefler JK (2017) Cytotoxic tumour-infiltrating T lymphocytes influence outcome in resected pancreatic ductal adenocarcinoma. Eur J Cancer 83:290–301PubMed Lohneis P, Sinn M, Bischoff S, Juhling A, Pelzer U, Wislocka L, Bahra M, Sinn BV, Denkert C, Oettle H, Blaker H, Riess H, Johrens K, Striefler JK (2017) Cytotoxic tumour-infiltrating T lymphocytes influence outcome in resected pancreatic ductal adenocarcinoma. Eur J Cancer 83:290–301PubMed
42.
go back to reference Zhang Z, Zhang C, Li F, Zhang B, Zhang Y (2018) Regulation of memory CD8 + T cell differentiation by MicroRNAs. Cell Physiol Biochem 47:2187–2198PubMed Zhang Z, Zhang C, Li F, Zhang B, Zhang Y (2018) Regulation of memory CD8 + T cell differentiation by MicroRNAs. Cell Physiol Biochem 47:2187–2198PubMed
43.
go back to reference Abu Eid R, Razavi G, Mkrtichyan M, Janik J, Khleif SN (2016) Old-school chemotherapy in immunotherapeutic combination in cancer, a low-cost drug repurposed. Cancer Immunol Res 4:377–382PubMed Abu Eid R, Razavi G, Mkrtichyan M, Janik J, Khleif SN (2016) Old-school chemotherapy in immunotherapeutic combination in cancer, a low-cost drug repurposed. Cancer Immunol Res 4:377–382PubMed
44.
go back to reference Le DT, Wang-Gillam A, Picozzi V, Greten TF, Crocenzi T, Springett G, Morse M, Zeh H, Cohen D, Fine RL, Onners B, Uram JN, Laheru DA, Lutz ER, Solt S, Murphy AL, Skoble J, Lemmens E, Grous J, Dubensky T Jr, Brockstedt DG, Jaffee EM (2015) Safety and survival with GVAX pancreas prime and Listeria Monocytogenes-expressing mesothelin (CRS-207) boost vaccines for metastatic pancreatic cance. J Clin Oncol 33:1325–1333PubMedPubMedCentral Le DT, Wang-Gillam A, Picozzi V, Greten TF, Crocenzi T, Springett G, Morse M, Zeh H, Cohen D, Fine RL, Onners B, Uram JN, Laheru DA, Lutz ER, Solt S, Murphy AL, Skoble J, Lemmens E, Grous J, Dubensky T Jr, Brockstedt DG, Jaffee EM (2015) Safety and survival with GVAX pancreas prime and Listeria Monocytogenes-expressing mesothelin (CRS-207) boost vaccines for metastatic pancreatic cance. J Clin Oncol 33:1325–1333PubMedPubMedCentral
45.
go back to reference Mkrtichyan M, Najjar YG, Raulfs EC, Abdalla MY, Samara R, Rotem-Yehudar R, Cook L, Khleif SN (2011) Anti-PD-1 synergizes with cyclophosphamide to induce potent anti-tumor vaccine effects through novel mechanisms. Eur J Immunol 41:2977–2986PubMedPubMedCentral Mkrtichyan M, Najjar YG, Raulfs EC, Abdalla MY, Samara R, Rotem-Yehudar R, Cook L, Khleif SN (2011) Anti-PD-1 synergizes with cyclophosphamide to induce potent anti-tumor vaccine effects through novel mechanisms. Eur J Immunol 41:2977–2986PubMedPubMedCentral
Metadata
Title
Gastrin vaccine improves response to immune checkpoint antibody in murine pancreatic cancer by altering the tumor microenvironment
Authors
Nicholas Osborne
Rebecca Sundseth
Julian Burks
Hong Cao
Xunxian Liu
Alexander H. Kroemer
Lynda Sutton
Allen Cato
Jill P. Smith
Publication date
01-10-2019
Publisher
Springer Berlin Heidelberg
Published in
Cancer Immunology, Immunotherapy / Issue 10/2019
Print ISSN: 0340-7004
Electronic ISSN: 1432-0851
DOI
https://doi.org/10.1007/s00262-019-02398-6

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