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- W4386002910 endingPage "107362" @default.
- W4386002910 startingPage "107362" @default.
- W4386002910 abstract "New cancer treatment modalities that limit patient discomfort need to be developed. One possible new therapy is the use of oncolytic (cancer-killing) viruses. It is only recently that our ability to manipulate viral genomes has allowed us to consider deliberately infecting cancer patients with viruses. One key consideration is to ensure that the virus exclusively targets cancer cells and does not harm nearby non-cancerous cells. Here, we use a mathematical model of viral infection to determine the characteristics a virus would need to have in order to eradicate a tumor, but leave non-cancerous cells untouched. We conclude that the virus must differ in its ability to infect the two different cell types, with the infection rate of non-cancerous cells needing to be less than one hundredth of the infection rate of cancer cells. Differences in viral production rate or infectious cell death rate alone are not sufficient to protect non-cancerous cells." @default.
- W4386002910 created "2023-08-20" @default.
- W4386002910 creator A5010141346 @default.
- W4386002910 creator A5086188078 @default.
- W4386002910 date "2023-10-01" @default.
- W4386002910 modified "2023-10-07" @default.
- W4386002910 title "Modeling of oncolytic viruses in a heterogeneous cell population to predict spread into non-cancerous cells" @default.
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- W4386002910 doi "https://doi.org/10.1016/j.compbiomed.2023.107362" @default.
- W4386002910 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37633084" @default.
- W4386002910 hasPublicationYear "2023" @default.
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