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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.
Abstract:
Neuroblastoma (NB), the most common cancer in infants and the most common solid tumor outside the brain in children, grows aggressively and responds poorly to current therapies. We have identified a new drug (opaganib, also known as ABC294640) that modulates sphingolipid metabolism by inhibiting the synthesis of sphingosine 1-phosphate (S1P) by sphingosine kinase-2 and elevating dihydroceramides by inhibition of dihydroceramide desaturase. The present studies sought to determine the potential therapeutic activity of opaganib in cell culture and xenograft models of NB. Cytotoxicity assays demonstrated that NB cells, including cells with amplified MYCN, are effectively killed by opaganib concentrations well below those that accumulate in tumors in vivo. Opaganib was shown to cause dose-dependent decreases in S1P and hexosylceramide levels in Neuro-2a cells, while concurrently elevating levels of dihydroceramides. As with other tumor cells, opaganib reduced c-Myc and Mcl-1 protein levels in Neuro-2a cells, and also reduced the expression of the N-Myc protein. The in vivo growth of xenografts of human SK-N-(BE)2 cells with amplified MYCN was suppressed by oral administration of opaganib at doses that are well tolerated in mice. Combining opaganib with temozolomide plus irinotecan, considered the backbone for therapy of relapsed or refractory NB, resulted in increased antitumor activity in vivo compared with temozolomide plus irinotecan or opaganib alone. Mice did not lose additional weight when opaganib was combined with temozolomide plus irinotecan, indicating that the combination is well tolerated. Opaganib has additive antitumor activity toward Neuro-2a tumors when combined with the checkpoint inhibitor anti-CTLA-4 antibody; however, the combination of opaganib with anti-PD-1 or anti-PD-L1 antibodies did not provide increased antitumor activity over that seen with opaganib alone. Overall, the data demonstrate that opaganib modulates sphingolipid metabolism and intracellular signaling in NB cells and inhibits NB tumor growth alone and in combination with other anticancer drugs. Amplified MYCN does not confer resistance to opaganib, and, in fact, the drug attenuates the expression of both c-Myc and N-Myc. The safety of opaganib has been established in clinical trials with adults with advanced cancer or severe COVID-19, and so opaganib has excellent potential for treating patients with NB, particularly in combination with temozolomide and irinotecan or anti-CTLA-4 antibody.
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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