A mathematical approach to virus therapy of glioblastomas
dc.contributor.author
dc.date.accessioned
2016-02-19T10:27:28Z
dc.date.available
2016-02-19T10:27:28Z
dc.date.issued
2016
dc.identifier.issn
1745-6150
dc.identifier.uri
dc.description.abstract
It is widely believed that the treatment of glioblastomas (GBM) could benefit from oncolytic virus therapy. Clinical research has shown that Vesicular Stomatitis Virus (VSV) has strong oncolytic properties. In addition, mathematical models of virus treatment of tumors have been developed in recent years. Some experiments in vitro and in vivo have been done and shown promising results, but have been never compared quantitatively with mathematical models. We use in vitro data of this virus applied to glioblastoma. Results: We describe three increasingly realistic mathematical models for the VSV-GBM in vitro experiment with progressive incorporation of time-delay effects. For the virus dynamics, we obtain results consistent with the in vitro experimental speed data only when applying the more complex and comprehensive model, with time-delay effects both in the reactive and diffusive terms. The tumor speed is given by the minimum of a very simple function that nonetheless yields results within the experimental measured range. Conclusions: We have improved a previous model with new ideas and carefully incorporated concepts from experimental results. We have shown that the delay time τ is the crucial parameter in this kind of models. We have demonstrated that our new model can satisfactorily predict the front speed for the lytic action of oncolytic VSV on glioblastoma observed in vitro. We provide a basis that can be applied in the near future to realistically simulate in vivo virus treatments of several cancers. Reviewers: This article was reviewed by Yang Kuang and Georg Luebeck. For the full reviews, please go to the Reviewers’ comments section
dc.description.sponsorship
This work was partially funded by ICREA (Academia award) and the MINECO (projects SimulPast-CSD2010-00034, FIS-2009-13050 and FIS-2012-31307)
dc.format.mimetype
application/pdf
dc.language.iso
eng
dc.publisher
BioMed Central
dc.relation
MINECO/PN 2010-2017/CSD2010-00034
MICINN/PN 2010-2012/FIS2009-13050
info:eu-repo/grantAgreement/MINECO//FIS2012-31307/ES/PROPAGACION DE FRENTES EN SISTEMAS COMPLEJOS MULTIDISCIPLINARES/
dc.relation.isformatof
Reproducció digital del document publicat a: http://dx.doi.org/10.1186/s13062-015-0100-7
dc.relation.ispartof
Biology Direct, 2016, vol. 11, núm. 1, 12 p.
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Articles publicats (D-F)
dc.rights
Attribution 3.0 Spain
dc.rights.uri
dc.subject
dc.title
A mathematical approach to virus therapy of glioblastomas
dc.type
info:eu-repo/semantics/article
dc.rights.accessRights
info:eu-repo/semantics/openAccess
dc.embargo.terms
Cap
dc.type.version
info:eu-repo/semantics/publishedVersion
dc.identifier.doi
dc.identifier.idgrec
024218
dc.contributor.funder
dc.relation.ProjectAcronym