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Human Retrotransposons and the Global Shutdown of Homeostatic Innate Immunity by Oncolytic Parvovirus H-1PV in Pancreatic Cancer. | LitMetric

AI Article Synopsis

  • Oncolytic parvovirus H-1PV is being tested in clinical trials, but predicting its success in treating tumors is difficult.
  • The study examined how the antiviral state in pancreatic cancer cells affects the efficacy of H-1PV, finding that the virus causes a late shutdown of immune responses by inhibiting certain antiviral genes and elements.
  • The findings suggest that the suppression of antiviral activity may influence how other treatments work and could affect the immune system's ability to respond, although immune cells can still release interferons in response to H-1PV.

Article Abstract

Although the oncolytic parvovirus H-1PV has entered clinical trials, predicting therapeutic success remains challenging. We investigated whether the antiviral state in tumor cells determines the parvoviral oncolytic efficacy. The interferon/interferon-stimulated genes (IFN/ISG)-circuit and its major configurator, human endogenous retroviruses (HERVs), were evaluated using qRT-PCR, ELISA, Western blot, and RNA-Seq techniques. In pancreatic cancer cell lines, H-1PV caused a late global shutdown of innate immunity, whereby the concomitant inhibition of HERVs and IFN/ISGs was co-regulatory rather than causative. The growth-inhibitory IC50 doses correlated with the power of suppression but not with absolute ISG levels. Moreover, H-1PV was not sensitive to exogenous IFN despite upregulated antiviral ISGs. Such resistance questioned the biological necessity of the oncotropic ISG-shutdown, which instead might represent a surrogate marker for personalized oncolytic efficacy. The disabled antiviral homeostasis may modify the activity of other viruses, as demonstrated by the reemergence of endogenous AluY-retrotransposons. This way of suppression may compromise the interferogenicity of drugs having gemcitabine-like mechanisms of action. This shortcoming in immunogenic cell death induction is however amendable by immune cells which release IFN in response to H-1PV.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8228339PMC
http://dx.doi.org/10.3390/v13061019DOI Listing

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