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In situ tumor vaccination with adenovirus vectors encoding measles virus fusogenic membrane proteins and cytokines 被引量:4

In situ tumor vaccination with adenovirus vectors encoding measles virus fusogenic membrane proteins and cytokines
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摘要 AIM: To evaluate whether intratumoral expression of measles virus fusogenic membrane glycoproteins H and F (MV-FMG), encoded by an adenovirus vector Ad.MV-HI F, alone or in combination with local coexpression of cytokines (IL-2, IL-12, IL-18, IL-21 or GM-CSF), can serve as a platform for inducing tumor-specific immune responses in colon cancer.METHODS: We used confocal laser scanning microscopy and flow cytometry to analyze cell-cell fusion after expression of MV-FMG by dye colocalization. In a syngeneic bilateral subcutaneous MC38 and Colon26 colon cancer model in C57BL/6 and BALB/c mice, we assessed the effect on both the directly vector-treated tumor as well as the contralateral, not directly vector- treated tumor. We assessed the induction of a tumorspecific cytotoxic T lymphocyte (CTL) response with a lactate dehydrogenase (LDH) release assay.RESULTS: We demonstrated in vitro that transduction of MC38 and Colon26 cells with Ad.MV-H/F resulted in dye colocalization, indicative of cell-cell fusion, in addition, in the syngeneic bilateral tumor model we demonstrated a significant regression of the directly vector-inoculated tumor upon intratumoral expression of MV-FMG alone or in combination with the tested cytokines. We observed the highest anti-neoplastic efficacy with MV-FMG and lL-21 coexpression. The degree of tumor regression of the not directly vector-treated tumor correlated with the anti-neoplastic response of the directly vector-treated tumor. This regression was mediated by a tumor-specific CTL response.CONCLUSION: Our data indicate that intratumoral expression of measles virus fusogenic membrane glycoproteins is a promising tool both for direct tumor treatment as well as for tumor vaccination approaches that can be further enhanced by cytokine coexpression. AIM: To evaluate whether intratumoral expression of measles virus fusogenic membrane glycoproteins H and F (MV-FMG), encoded by an adenovirus vector Ad.MV-H/ F, alone or in combination with local coexpression of cytokines (IL-2, IL-12, IL-18, IL-21 or GM-CSF), can serve as a platform for inducing tumor-specifi c immune responses in colon cancer. METHODS: We used confocal laser scanning microscopy and flow cytometry to analyze cell-cell fusion after expression of MV-FMG by dye colocalization. In a syngeneic bilateral subcutaneous MC38 and Colon26 colon cancer model in C57BL/6 and BALB/c mice, we assessed the effect on both the directly vector-treated tumor as well as the contralateral, not directly vector- treated tumor. We assessed the induction of a tumor- specific cytotoxic T lymphocyte (CTL) response with a lactate dehydrogenase (LDH) release assay. RESULTS: We demonstrated in vitro that transduction of MC38 and Colon26 cells with Ad.MV-H/F resulted in dye colocalization, indicative of cell-cell fusion. In addition, in the syngeneic bilateral tumor model we demonstrated a signifi cant regression of the directly vector-inoculated tumor upon intratumoral expression of MV-FMG alone or in combination with the tested cytokines. We observed the highest anti-neoplastic efficacy with MV-FMG and IL-21 coexpression. The degree of tumor regression of the not directly vector-treated tumor correlated with the anti-neoplastic response of the directly vector-treated tumor. This regression was mediated by a tumor-specifi c CTL response. CONCLUSION: Our data indicate that intratumoral expression of measles virus fusogenic membraneglycoproteins is a promising tool both for direct tumor treatment as well as for tumor vaccination approaches that can be further enhanced by cytokine coexpression.
出处 《World Journal of Gastroenterology》 SCIE CAS CSCD 2007年第22期3063-3070,共8页 世界胃肠病学杂志(英文版)
基金 grants from Deutsche Forschungsgemeinschaft, Wilhelm Sander-Stiftung, and Forschungsfrderung Ruhr-Universitt Bochum Medizinische Fakultt to OW
关键词 Adenovirus vectors Measles virus fusogenic membrane glycoproteins Colorectal cancer INTERLEUKINS 腺病毒 麻疹病毒 白介素 结肠癌 糖蛋白 免疫接种
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  • 1[1]Mueller DL,Jenkins MK,Schwartz RH.Clonal expansion versus functional clonal inactivation:a costimulatory signalling pathway determines the outcome of T cell antigen receptor occupancy.Annu Rev Immunol 1989; 7:445-480
  • 2[2]Boon T,van der Bruggen P.Human tumor antigens recognized by T lymphocytes.J Exp Med 1996; 183:725-729
  • 3[3]Goto S,Kaneko T,Miyamoto Y,Eriguchi M,Kato A,Akeyama T,Fujimoto K,Tomonaga M,Egawa K.Combined immunocell therapy using activated lymphocytes and monocyte-derived dendritic cells for malignant melanoma.Anticancer Res 2005; 25:3741-3746
  • 4[4]Lee WC,Wang HC,Hung CF,Huang PF,Lia CR,Chen MF.Vaccination of advanced hepatocellular carcinoma patients with tumor lysate-pulsed dendritic cells:a clinical trial.J Immunother 2005; 28:496-504
  • 5[5]Linardakis E,Bateman A,Phan V,Ahmed A,Gough M,Olivier K,Kennedy R,Errington F,Harrington KJ,Melcher A,Vile R.Enhancing the efficacy of a weak allogeneic melanoma vaccine by viral fusogenic membrane glycoprotein-mediated tumor cell-tumor cell fusion.Cancer Res 2002; 62:5495-5504
  • 6[6]Bateman A,Bullough F,Murphy S,Emiliusen L,Lavillette D,Cosset FL,Cattaneo R,Russell SJ,Vile RG.Fusogenic membrane glycoproteins as a novel class of genes for the local and immune-mediated control of tumor growth.Cancer Res 2000; 60:1492-1497
  • 7[7]Li H,Haviv YS,Derdeyn CA,Lam J,Coolidge C,Hunter E,Curiel DT,Blackwell JL.Human immunodeficiency virus type 1-mediated syncytium formation is compatible with adenovirus replication and facilitates efficient dispersion of viral gene products and de novo-synthesized virus particles.Hum Gene Ther 2001; 12:2155-2165
  • 8[8]Galanis E,Bateman A,Johnson K,Diaz RM,James CD,Vile R,Russell SJ.Use of viral fusogenic membrane glycoproteins as novel therapeutic transgenes in gliomas.Hum Gene Ther 2001; 12:811-821
  • 9[9]Ahmed A,Jevremovic D,Suzuki K,Kottke T,Thompson J,Emery S,Harrington K,Bateman A,Vile R.Intratumoral expression of a fusogenic membrane glycoprotein enhances the efficacy of replicating adenovirus therapy.Gene Ther 2003; 10:1663-1671
  • 10[10]Nakamura T,Peng KW,Vongpunsawad S,Harvey M,Mizuguchi H,Hayakawa T,Cattaneo R,Russell SJ.Antibody-targeted cell fusion.Nat Biotechnol 2004; 22:331-336

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