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Zika virus selectively kills aggressive human embryonal CNS tumor cells in vitro and in vivo
Kaid, Carolini; Goulart, Ernesto; Caires-Junior, Luiz C; Araujo, Bruno H. S; Schanoski, Alessandra Soares; Bueno, Heloisa M. S; Telles-Silva, Kayque Alves; Astray, Renato Mancini; Assoni, Amanda F; Junior, Antonio F. R; Ventini, Daniella Cristina; Puglia, Ana Lia Pradella; Gomes, Roselane Paiva; Zatz, Mayana; Okamoto, Oswaldo K.
Affiliation
  • Goulart, Ernesto; Instituto Butantan. Laboratório de Bacteriologia.
  • Caires-Junior, Luiz C; Instituto Butantan. Laboratório de Imunologia Viral.
  • Araujo, Bruno H. S; Instituto Butantan. Produção.
  • Schanoski, Alessandra Soares; Instituto Butantan. Laboratório de Imunologia Viral.
  • Bueno, Heloisa M. S; Instituto Butantan. Laboratório de Imunologia Viral.
Cancer Res. ; 78(12): p. 3363-3374, 2018.
Article in English | Sec. Est. Saúde SP, SESSP-IBPROD, Sec. Est. Saúde SP | ID: but-ib15210
Responsible library: BR78.1
Localization: BR78.1
ABSTRACT
Zika virus (ZIKV) is largely known for causing brain abnormalities due to its ability to infect neural progenitor stem cells during early development. Here, we show that ZIKV is also capable of infecting and destroying stem-like cancer cells from aggressive human embryonal tumors of the central nervous system (CNS). When evaluating the oncolytic properties of Brazilian Zika virus strain (ZIKV(BR)) against human breast, prostate, colorectal, and embryonal CNS tumor cell lines, we verified a selective infection of CNS tumor cells followed by massive tumor cell death. ZIKV(BR) was more efficient in destroying embryonal CNS tumorspheres than normal stem cell neurospheres. A single intracerebroventricular injection of ZIKV(BR) in BALB/c nude mice bearing orthotopic human embryonal CNS tumor xenografts resulted in a significantly longer survival, decreased tumor burden, fewer metastasis, and complete remission in some animals. Tumor cells closely resembling neural stem cells at the molecular level with activated Wnt signaling were more susceptible to the oncolytic effects of ZIKV(BR). furthermore, modulation of Wnt signaling pathway significantly affected ZIKV(BR)-induced tumor cell death and viral shedding. Altogether, these preclinical findings indicate that ZIKV(BR) could be an efficient agent to treat aggressive forms of embryonal CNS tumors and could provide mechanistic insights regarding its oncolytic effects.
Full text: Available Collection: National databases / Brazil Database: Sec. Est. Saúde SP / SESSP-IBPROD Language: English Journal: Cancer Res. Year: 2018 Document type: Article
Full text: Available Collection: National databases / Brazil Database: Sec. Est. Saúde SP / SESSP-IBPROD Language: English Journal: Cancer Res. Year: 2018 Document type: Article
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