Opaganib (ABC294640) Induces Immunogenic Tumor Cell Death and Enhances Checkpoint Antibody Therapy
Lynn W Maines1, Staci N Keller1, Charles D Smith1
1Apogee Biotechnology Corporation, 1214 Research Blvd, Suite 2015, Hummelstown, PA 17036, USA.
Abstract:
Antibody-based cancer drugs that target the checkpoint proteins CTLA-4, PD-1 and PD-L1 provide marked improvement in some patients with deadly diseases such as lung cancer and melanoma. However, most patients are either unresponsive or relapse following an initial response, underscoring the need for further improvement in immunotherapy. Certain drugs induce immunogenic cell death (ICD) in tumor cells in which the dying cells promote immunologic responses in the host that may enhance the in vivo activity of checkpoint antibodies. Sphingolipid metabolism is a key pathway in cancer biology, in which ceramides and sphingosine 1-phosphate (S1P) regulate tumor cell death, proliferation and drug resistance, as well as host inflammation and immunity. In particular, sphingosine kinases are key sites for manipulation of the ceramide/S1P balance that regulates tumor cell proliferation and sensitivity to radiation and chemotherapy. We and others have demonstrated that inhibition of sphingosine kinase-2 by the small-molecule investigational drug opaganib (formerly ABC294640) kills tumor cells and increases their sensitivities to other drugs and radiation. Because sphingolipids have been shown to regulate ICD, opaganib may induce ICD and improve the efficacy of checkpoint antibodies for cancer therapy. This was demonstrated by showing that in vitro treatment with opaganib increases the surface expression of the ICD marker calreticulin on a variety of tumor cell types. In vivo confirmation was achieved using the gold standard immunization assay in which B16 melanoma, Lewis lung carcinoma (LLC) or Neuro-2a neuroblastoma cells were treated with opaganib in vitro and then injected subcutaneously into syngeneic mice, followed by implantation of untreated tumor cells 7 days later. In all cases, immunization with opaganib-treated cells strongly suppressed the growth of subsequently injected tumor cells. Interestingly, opaganib treatment induced crossover immunity in that opaganib-treated B16 cells suppressed the growth of both untreated B16 and LLC cells and opaganib-treated LLC cells inhibited the growth of both untreated LLC and B16 cells. Next, the effects of opaganib in combination with a checkpoint antibody on tumor growth in vivo were assessed. Opaganib and anti-PD-1 antibody each slowed the growth of B16 tumors and improved mouse survival, while the combination of opaganib plus anti-PD-1 strongly suppressed tumor growth and improved survival (p < 0.0001). Individually, opaganib and anti-CTLA-4 antibody had modest effects on the growth of LLC tumors and mouse survival, whereas the combination of opaganib with anti-CTLA-4 substantially inhibited tumor growth and increased survival (p < 0.001). Finally, the survival of mice bearing B16 tumors was only marginally improved by opaganib or anti-PD-L1 antibody alone but was nearly doubled by the drugs in combination (p < 0.005). Overall, these studies demonstrate the ability of opaganib to induce ICD in tumor cells, which improves the antitumor activity of checkpoint antibodies.
Insights
Opaganib induces immunogenic cell death (ICD) in tumor cells, enhancing the effectiveness of checkpoint inhibitor immunotherapies like anti-PD-1 and anti-CTLA-4 antibodies for improved cancer treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Checkpoint inhibitors (CTLA-4, PD-1, PD-L1) improve outcomes for some cancers but lack efficacy in many patients.
- Immunogenic cell death (ICD) in tumor cells can enhance anti-cancer immune responses and improve immunotherapy efficacy.
- Sphingolipid metabolism, particularly involving sphingosine kinases, regulates cancer cell death, proliferation, and immune responses.
Purpose of the Study:
- To investigate if opaganib, a sphingosine kinase-2 inhibitor, can induce ICD in tumor cells.
- To evaluate if opaganib-induced ICD enhances the antitumor activity of checkpoint inhibitor antibodies (anti-PD-1, anti-CTLA-4, anti-PD-L1).
Main Methods:
- In vitro assessment of opaganib's effect on ICD marker (calreticulin) expression in various tumor cell lines.
- In vivo immunization assays using opaganib-treated tumor cells (B16 melanoma, LLC, Neuro-2a) in syngeneic mice.
- Combination studies of opaganib with anti-PD-1, anti-CTLA-4, and anti-PD-L1 antibodies in mouse tumor models.
Main Results:
- Opaganib treatment increased surface calreticulin expression on tumor cells in vitro.
- Immunization with opaganib-treated cells suppressed subsequent tumor growth in mice, demonstrating induced ICD and crossover immunity.
- Combination therapy of opaganib with anti-PD-1, anti-CTLA-4, or anti-PD-L1 antibodies significantly enhanced tumor suppression and improved mouse survival compared to monotherapy.
Conclusions:
- Opaganib effectively induces immunogenic cell death in tumor cells.
- Opaganib potentiates the therapeutic efficacy of checkpoint inhibitor antibodies, offering a promising strategy for improving cancer immunotherapy.
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