Molecular aspects of high-risk neuroblastoma and novel therapeutic opportunities
Permanent lenke
https://hdl.handle.net/10037/18271Dato
2020-05-29Type
Doctoral thesisDoktorgradsavhandling
Forfatter
Hald, Øyvind HolsbøSammendrag
Har del(er)
Paper 1: Hald, Ø.H., Olsen, L., Gallo-Oller, G., Elfman, L.H.M., Løkke, C., Kogner, P., … Einvik, C. (2019). Inhibitors of ribosome biogenesis repress the growth of MYCN-amplified neuroblastoma. Oncogene, 38, 2800–2813. Also available in Munin at https://hdl.handle.net/10037/18268.
Paper 2: Roth, S.A., Hald, Ø.H., Fuchs, S., Løkke, C., Mikkola, I., Flægstad, T., Schulte, J. & Einvik, C. (2018). MicroRNA-193b-3p represses neuroblastoma cell growth via downregulation of Cyclin D1, MCL-1 and MYCN. Oncotarget, 9, 18160-18179. Also available in Munin at https://hdl.handle.net/10037/18270.
Paper 3: Haug, B.H., Hald, Ø.H., Utnes, P., Roth, S.A., Løkke, C., Flægstad, T. & Einvik, C. (2015). Exosome-like Extracellular Vesicles from MYCN-amplified Neuroblastoma Cells Contain Oncogenic miRNAs. Anticancer Research, 35(5), 2521-2530. Also available in Munin at https://hdl.handle.net/10037/18269.
Forlag
UiT The Arctic University of NorwayUiT Norges arktiske universitet
Metadata
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