Cargando…

Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model

A major obstacle to obtaining relevant results in cancer vaccination has been the lack of identification of immunogenic antigens. Dendritic cell (DC)-based cancer vaccines used preventively may afford protection against tumor inoculation, but the effect of antigen choice on anti-tumor protection is...

Descripción completa

Detalles Bibliográficos
Autores principales: Keon, Soledad Mac, Bentivegna, Sofía, Levy, Estrella M., Marks, Michael S., Mantegazza, Adriana R., Wainstok, Rosa, Mordoh, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7713901/
https://www.ncbi.nlm.nih.gov/pubmed/31307876
http://dx.doi.org/10.1016/j.vaccine.2019.07.018
_version_ 1783618639690203136
author Keon, Soledad Mac
Bentivegna, Sofía
Levy, Estrella M.
Marks, Michael S.
Mantegazza, Adriana R.
Wainstok, Rosa
Mordoh, José
author_facet Keon, Soledad Mac
Bentivegna, Sofía
Levy, Estrella M.
Marks, Michael S.
Mantegazza, Adriana R.
Wainstok, Rosa
Mordoh, José
author_sort Keon, Soledad Mac
collection PubMed
description A major obstacle to obtaining relevant results in cancer vaccination has been the lack of identification of immunogenic antigens. Dendritic cell (DC)-based cancer vaccines used preventively may afford protection against tumor inoculation, but the effect of antigen choice on anti-tumor protection is not clear. When using irradiated syngeneic tumor cells to load DCs, tumor self-antigens are provided, including tumor-associated antigens (TAAs) and neoantigens generated by tumor mutations. On the other hand, allogeneic tumor cells could only supply shared TAAs. To assess the advantages of each source in protective vaccination, we analyzed in C57BL/6 mice the effect of loading DCs with irradiated syngeneic B16-F1 or allogeneic Cloudman melanoma cells; both cell lines were characterized by whole exome sequencing and RNAseq. Tumor cell components from the two irradiated cell lines were efficiently internalized by DCs, and transported to MHC-class II positive tubulovesicular compartments (MIICs). DCs loaded with allogeneic irradiated Cloudman cells (DC-ApoNec(ALLO)) induced a partially effective anti-melanoma protection, although Cloudman and B16-F1 cells share the expression of melanocyte differentiation antigens (MDAs), cancer-testis antigens (CTAs) and other TAAs. DCs loaded with syngeneic B16-F1 cells (DC-ApoNec(SYN)) established a more potent and long-lasting protection and induced a humoral anti-B16F1 response, thus suggesting that neoepitopes are needed for inducing long-lasting protection.
format Online
Article
Text
id pubmed-7713901
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-77139012020-12-03 Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model Keon, Soledad Mac Bentivegna, Sofía Levy, Estrella M. Marks, Michael S. Mantegazza, Adriana R. Wainstok, Rosa Mordoh, José Vaccine Article A major obstacle to obtaining relevant results in cancer vaccination has been the lack of identification of immunogenic antigens. Dendritic cell (DC)-based cancer vaccines used preventively may afford protection against tumor inoculation, but the effect of antigen choice on anti-tumor protection is not clear. When using irradiated syngeneic tumor cells to load DCs, tumor self-antigens are provided, including tumor-associated antigens (TAAs) and neoantigens generated by tumor mutations. On the other hand, allogeneic tumor cells could only supply shared TAAs. To assess the advantages of each source in protective vaccination, we analyzed in C57BL/6 mice the effect of loading DCs with irradiated syngeneic B16-F1 or allogeneic Cloudman melanoma cells; both cell lines were characterized by whole exome sequencing and RNAseq. Tumor cell components from the two irradiated cell lines were efficiently internalized by DCs, and transported to MHC-class II positive tubulovesicular compartments (MIICs). DCs loaded with allogeneic irradiated Cloudman cells (DC-ApoNec(ALLO)) induced a partially effective anti-melanoma protection, although Cloudman and B16-F1 cells share the expression of melanocyte differentiation antigens (MDAs), cancer-testis antigens (CTAs) and other TAAs. DCs loaded with syngeneic B16-F1 cells (DC-ApoNec(SYN)) established a more potent and long-lasting protection and induced a humoral anti-B16F1 response, thus suggesting that neoepitopes are needed for inducing long-lasting protection. 2019-07-13 2019-08-14 /pmc/articles/PMC7713901/ /pubmed/31307876 http://dx.doi.org/10.1016/j.vaccine.2019.07.018 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Keon, Soledad Mac
Bentivegna, Sofía
Levy, Estrella M.
Marks, Michael S.
Mantegazza, Adriana R.
Wainstok, Rosa
Mordoh, José
Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title_full Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title_fullStr Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title_full_unstemmed Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title_short Syngeneic B16-F1 cells are more efficient than allogeneic Cloudman cells as antigen source in DC-based vaccination in the B16-F1 murine melanoma model
title_sort syngeneic b16-f1 cells are more efficient than allogeneic cloudman cells as antigen source in dc-based vaccination in the b16-f1 murine melanoma model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7713901/
https://www.ncbi.nlm.nih.gov/pubmed/31307876
http://dx.doi.org/10.1016/j.vaccine.2019.07.018
work_keys_str_mv AT keonsoledadmac syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT bentivegnasofia syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT levyestrellam syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT marksmichaels syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT mantegazzaadrianar syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT wainstokrosa syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel
AT mordohjose syngeneicb16f1cellsaremoreefficientthanallogeneiccloudmancellsasantigensourceindcbasedvaccinationintheb16f1murinemelanomamodel