Chitosan-based delivery of avian reovirus fusogenic protein p10 gene: in vitro and in vivo studies towards a new vaccine against melanoma
Author
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Robles Planells, Claudia
Author
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Barrera Ávalos, Carlos
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Rojo, Leonel E.
Author
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Spencer, Eugenio
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Cortez San Martín, Eugenio
Author
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Matiacevich, Silvia
Author
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Pavez, Jorge
Author
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Milla, Luis A.
Author
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Navarro, Franco D.
Author
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Martínez, Brandon A
Author
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Bravo, Francisco J.
Author
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Mella, Andrea
Author
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Huidobro Toro, Juan Pablo
Author
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Fernández, Ricardo
Author
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Escobar Álvarez, Alejandro
Author
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Acuña Castillo, Claudio
Admission date
dc.date.accessioned
2020-10-19T15:54:19Z
Available date
dc.date.available
2020-10-19T15:54:19Z
Publication date
dc.date.issued
2020
Cita de ítem
dc.identifier.citation
BioMed Research International Volume 2020, Article ID 4045760, 11 pages
es_ES
Identifier
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10.1155/2020/4045760
Identifier
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https://repositorio.uchile.cl/handle/2250/177213
Abstract
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Reovirus is known to have an anticancer effect in both the preclinical and clinical assays. Current evidence suggests that the reovirus-mediated impact on tumor growth depends on the activation of specific antitumor immune responses. A feasible explanation for the oncolytic effects and immune system activation is through the expression of the fusogenic reovirus protein. In this work, we evaluated thein vivoantitumor effects of the expression of fusogenic protein p10 of avian reovirus (ARV-p10). We used chitosan nanoparticles (CH-NPs) as a vehicle for the ARV-p10 DNA in murine B16 melanoma models bothin vitroandin vivo. We confirmed that ARV-p10 delivery through a chitosan-based formulation (ARV-p10 CH-NPs) was capable of inducing cell fusion in cultured melanoma cells, showing a mild cytotoxic effect. Interestingly, intratumor injection of ARV-p10 CH-NPs delayed tumor growth, without changing lymphoid populations in the tumor tissue and spleen. The injection of chitosan nanoparticles (CH-NPs) also delayed tumor growth, suggesting the nanoparticle itself would attack tumor cells. In conclusion, we proved thatin vitroARV-p10 protein expression using CH-NPs in murine melanoma cells induces a cytotoxic effect associated with its cell fusion. Further studies are necessary for establishing a protocol for efficientin vivoDNA delivery of fusion proteins to produce an antitumoral effect.
es_ES
Patrocinador
dc.description.sponsorship
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT
1161015
11140731
11140915
1180666
Programa de Equipamiento Cientifico y Tecnologico
EQM150069
EQM190024
Direccion de Investigacion Cientifica y Tecnologica
021943AC
021801LR
021801MB
Comision Nacional de Investigacion Cientifica y Tecnologica
21171377
Fondap
15130011
Fondequip EQM
150069
160036