In vivo antitumor effect against murine cells of CT26 colon cancer and EL4 lymphoma by autologous whole tumor dead cells
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2021Metadata
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Barrera Ávalos, Carlos Esteban
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In vivo antitumor effect against murine cells of CT26 colon cancer and EL4 lymphoma by autologous whole tumor dead cells
Author
- Barrera Ávalos, Carlos Esteban;
- Díaz, Ximena;
- Madrid, Sebastián;
- Michelson, Sofía A.;
- Robles Planells, Claudia Julieta;
- Sánchez Guerrero, Giselle;
- Ahumada, Viviana;
- Mella Torres, Andrea Jesús;
- Rojo, Leonel E.;
- Imarai Bahamonde, Mónica;
- Milla, Luis A.;
- Leiva Salcedo, Elías;
- Murgas, Paola;
- Fernández, Ricardo;
- Escobar, Alejandro;
- Acuña Castillo, Claudio;
Abstract
Active immunotherapy against cancer is based on immune system stimulation, triggering efficient and long-lasting antigen-specific
immune responses. Immunization strategies using whole dead cells from tumor tissue, containing specific antigens inside, have
become a promising approach, providing efficient lymphocyte activation through dendritic cells (DCs). In this work, we
generate whole dead tumor cells from CT26, E.G7, and EL4 live tumor cells as antigen sources, which termed immunogenic cell
bodies (ICBs), generated by a simple and cost-efficient starvation-protocol, in order to determine whether are capable of
inducing a transversal anticancer response regardless of the tumor type, in a similar way to what we describe previously with
B16 melanoma. We evaluated the anticancer effects of immunization with doses of ICBs in syngeneic murine tumor models.
Our results showed that mice’s immunization with ICBs-E.G7 and ICBs-CT26 generate 18% and 25% of tumor-free animals,
respectively. On the other hand, all carrying tumor-animals and immunized with ICBs, including ICBs-EL4, showed a
significant delay in their growth compared to not immunized animals. These effects relate to DCs maturation, cytokine
production, increase in CD4+T-bet+ and CD4+ROR-γt+ population, and decrease of T regulatory lymphocytes in the spleen.
Altogether, our data suggest that whole dead tumor cell-based cancer immunotherapy generated by a simple starvation protocol
is a promising way to develop complementary, innovative, and affordable antitumor therapies in a broad spectrum of tumors.
Patrocinador
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT 1161015
11140731
1180666
FONDEQUIP EQM150069
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
DICYT 021943AC
022101MB_ DAS
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Artículo de publícación WoS
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BioMed Research International Volume 2021, Article ID 6626851, 16 pages
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