Opaganib Downregulates N-Myc Expression and Suppresses In Vitro and In Vivo Growth of Neuroblastoma Cells

Lynn W Maines1, Staci N Keller1, Ryan A Smith1

  • 1Apogee Biotechnology Corporation, 1214 Research Blvd, Suite 2015, Hummelstown, PA 17036, USA.

Cancers
|May 11, 2024
PubMed

Insights

Opaganib, a novel drug, effectively targets neuroblastoma (NB) by modulating sphingolipid metabolism. It shows promise in treating NB, even in aggressive forms, and is well-tolerated in combination therapies.

Area of Science:

  • Oncology
  • Pharmacology
  • Biochemistry

Background:

  • Neuroblastoma (NB) is a highly aggressive childhood cancer with limited treatment options.
  • Current therapies for NB often have poor outcomes, necessitating novel therapeutic strategies.
  • Opaganib is a novel agent that modulates sphingolipid metabolism.

Purpose of the Study:

  • To evaluate the therapeutic potential of opaganib in neuroblastoma (NB) cell cultures and xenograft models.
  • To investigate the efficacy of opaganib as a monotherapy and in combination with established NB treatments.
  • To assess the impact of opaganib on sphingolipid metabolism and key oncogenic signaling pathways in NB.

Main Methods:

  • Cytotoxicity assays were performed on NB cell lines, including those with amplified MYCN.
  • Metabolomic analysis was conducted to measure sphingolipid levels (S1P, dihydroceramides, hexosylceramides) in response to opaganib.
  • Western blotting assessed the impact of opaganib on c-Myc, Mcl-1, and N-Myc protein levels.
  • In vivo studies utilized NB xenograft models treated with opaganib alone and in combination with temozolomide/irinotecan or immunotherapy agents.

Main Results:

  • Opaganib demonstrated significant cytotoxicity against NB cells, including those with MYCN amplification.
  • Opaganib effectively modulated sphingolipid metabolism, decreasing S1P and hexosylceramide while increasing dihydroceramides.
  • Opaganib reduced levels of c-Myc, Mcl-1, and N-Myc proteins in NB cells.
  • Oral administration of opaganib suppressed NB xenograft growth in vivo and was well-tolerated.
  • Combination therapy with opaganib and temozolomide/irinotecan showed enhanced antitumor activity without increased toxicity.
  • Opaganib demonstrated additive effects with anti-CTLA-4 antibody but not with anti-PD-1 or anti-PD-L1 antibodies.

Conclusions:

  • Opaganib exhibits potent antitumor activity against neuroblastoma through modulation of sphingolipid metabolism and oncogenic signaling.
  • Opaganib is effective as a single agent and in combination with standard chemotherapy (temozolomide/irinotecan) and anti-CTLA-4 immunotherapy for NB.
  • The established safety profile of opaganib in clinical trials supports its potential for treating NB patients, particularly in combination regimens.

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