Репозиторий Университета

Nano-targeted induction of dual ferroptotic mechanisms eradicates high-risk neuroblastoma


  • Hassannia B.
  • Wiernicki B.
  • Ingold I.
  • Qu F.
  • Van Herck S.
  • Tyurina Y.
  • Bayir H.
  • Abhari B.
  • Angeli J.
  • Choi S.
  • Meul E.
  • Heyninck K.
  • Declerck K.
  • Chirumamilla C.
  • Lahtela-Kakkonen M.
  • Van Camp G.
  • Krysko D.
  • Ekert P.
  • Fulda S.
  • De Geest B.
  • Conrad M.
  • Kagan V.
  • Berghe W.
  • Vandenabeele P.
  • Berghe T.
Дата публикации:01.08.2018
Журнал: Journal of Clinical Investigation
БД: Scopus
Ссылка: Scopus
Индекс цитирования: 24

Аннтотация

© 2018 American Society for Clinical Investigation. All rights reserved. High-risk neuroblastoma is a devastating malignancy with very limited therapeutic options. Here, we identify withaferin A (WA) as a natural ferroptosis-inducing agent in neuroblastoma, which acts through a novel double-edged mechanism. WA dose-dependently either activates the nuclear factor-like 2 pathway through targeting of Kelch-like ECH-associated protein 1 (noncanonical ferroptosis induction) or inactivates glutathione peroxidase 4 (canonical ferroptosis induction). Noncanonical ferroptosis induction is characterized by an increase in intracellular labile Fe(II) upon excessive activation of heme oxygenase-1, which is sufficient to induce ferroptosis. This double-edged mechanism might explain the superior efficacy of WA as compared with etoposide or cisplatin in killing a heterogeneous panel of high-risk neuroblastoma cells, and in suppressing the growth and relapse rate of neuroblastoma xenografts. Nano-targeting of WA allows systemic application and suppressed tumor growth due to an enhanced accumulation at the tumor site. Collectively, our data propose a novel therapeutic strategy to efficiently kill cancer cells by ferroptosis.


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