LuIII parvovirus selectively and efficiently targets, replicates in, and kills human glioma cells

J Virol. 2012 Jul;86(13):7280-91. doi: 10.1128/JVI.00227-12. Epub 2012 May 2.

Abstract

Because productive infection by parvoviruses requires cell division and is enhanced by oncogenic transformation, some parvoviruses may have potential utility in killing cancer cells. To identify the parvovirus(es) with the optimal oncolytic effect against human glioblastomas, we screened 12 parvoviruses at a high multiplicity of infection (MOI). MVMi, MVMc, MVM-G17, tumor virus X (TVX), canine parvovirus (CPV), porcine parvovirus (PPV), rat parvovirus 1A (RPV1A), and H-3 were relatively ineffective. The four viruses with the greatest oncolytic activity, LuIII, H-1, MVMp, and MVM-G52, were tested for the ability, at a low MOI, to progressively infect the culture over time, causing cell death at a rate higher than that of cell proliferation. LuIII alone was effective in all five human glioblastomas tested. H-1 progressively infected only two of five; MVMp and MVM-G52 were ineffective in all five. To investigate the underlying mechanism of LuIII's phenotype, we used recombinant parvoviruses with the LuIII capsid replacing the MVMp capsid or with molecular alteration of the P4 promoter. The LuIII capsid enhanced efficient replication and oncolysis in MO59J gliomas cells; other gliomas tested required the entire LuIII genome to exhibit enhanced infection. LuIII selectively infected glioma cells over normal glial cells in vitro. In mouse models, human glioblastoma xenografts were selectively infected by LuIII when administered intratumorally; LuIII reduced tumor growth by 75%. LuIII also had the capacity to selectively infect subcutaneous or intracranial gliomas after intravenous inoculation. Intravenous or intracranial LuIII caused no adverse effects. Intracranial LuIII caused no infection of mature mouse neurons or glia in vivo but showed a modest infection of developing neurons.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Cell Death*
  • Cell Line, Tumor
  • Disease Models, Animal
  • Glioblastoma / pathology
  • Glioblastoma / therapy
  • Glioblastoma / virology*
  • Host Specificity*
  • Humans
  • Mice
  • Neuroglia / virology*
  • Oncolytic Virotherapy / adverse effects
  • Oncolytic Virotherapy / methods
  • Oncolytic Viruses / growth & development
  • Oncolytic Viruses / pathogenicity
  • Oncolytic Viruses / physiology*
  • Parvovirus / growth & development
  • Parvovirus / pathogenicity
  • Parvovirus / physiology*
  • Treatment Outcome
  • Virus Replication*