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Epigenetic Priming by Hypomethylation Enhances the Immunogenic Potential of Tolinapant in T-cell Lymphoma
George A Ward1, Zhiqiang Zhang1, Simone Jueliger1
1Astex Pharmaceuticals, Cambridge, United Kingdom.
Abstract:
Programmed cell death mechanisms are important for the regulation of tumor development and progression. Evasion of and resistance to apoptosis are significant factors in tumorigenesis and drug resistance. Bypassing apoptotic pathways and eliciting another form of regulated cell death, namely necroptosis, an immunogenic cell death (ICD), may override apoptotic resistance. Here, we present the mechanistic rationale for combining tolinapant, an antagonist of the inhibitor of apoptosis proteins (IAP), with decitabine, a hypomethylating agent (HMA), in T-cell lymphoma (TCL). Tolinapant treatment alone of TCL cells in vitro and in syngeneic in vivo models demonstrated that ICD markers can be upregulated, and we have shown that epigenetic priming with decitabine further enhances this effect. The clinical relevance of ICD markers was confirmed by the direct measurement of plasma proteins from patients with peripheral TCL treated with tolinapant. We showed increased levels of necroptosis in TCL lines, along with the expression of cancer-specific antigens (such as cancer testis antigens) and increases in genes involved in IFN signaling induced by HMA treatment, together deliver a strong adaptive immune response to the tumor. These results highlight the potential of a decitabine and tolinapant combination for TCL and could lead to clinical evaluation.
Significance:
The IAP antagonist tolinapant can induce necroptosis, a key immune-activating event, in TCL. Combination with DNA hypomethylation enhances tolinapant sensitivity and primes resistant cells by re-expressing necrosome proteins. In addition, this combination leads to increases in genes involved in IFN signaling and neoantigen expression, providing further molecular rationale for this novel therapeutic option.
Insights
Combining tolinapant, an inhibitor of apoptosis protein antagonist, with decitabine, a hypomethylating agent, can overcome drug resistance in T-cell lymphoma by inducing necroptosis and enhancing immune response.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Programmed cell death, including apoptosis and necroptosis, is crucial for tumor regulation.
- Resistance to apoptosis is a major challenge in cancer therapy, driving tumorigenesis and drug resistance.
- Necroptosis, a form of immunogenic cell death (ICD), offers a potential alternative to bypass apoptotic resistance.
Purpose of the Study:
- To investigate the mechanistic rationale for combining tolinapant (IAP antagonist) with decitabine (HMA) in T-cell lymphoma (TCL).
- To evaluate the potential of this combination to overcome drug resistance and enhance anti-tumor immune responses.
Main Methods:
- In vitro and in vivo studies using TCL cells and syngeneic models.
- Treatment with tolinapant alone and in combination with decitabine.
- Analysis of ICD markers, necroptosis induction, gene expression (IFN signaling, cancer-specific antigens), and plasma protein levels in patients.
Main Results:
- Tolinapant alone upregulated ICD markers in TCL cells.
- Decitabine epigenetically primed TCL cells, enhancing tolinapant sensitivity and necroptosis induction.
- The combination increased necroptosis, cancer-specific antigen expression, and IFN signaling genes, promoting an adaptive immune response.
- Clinical relevance was supported by increased plasma ICD markers in patients treated with tolinapant.
Conclusions:
- The combination of decitabine and tolinapant shows promise as a novel therapeutic strategy for T-cell lymphoma.
- This combination can induce necroptosis and enhance anti-tumor immunity, potentially overcoming apoptotic resistance.
- Further clinical evaluation of this combination therapy is warranted.
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