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Simultaneous targeting of XPO1 and BCL2 as an effective treatment strategy for double-hit lymphoma
Yuanhui Liu1,2, Nancy G Azizian1,2, Yaling Dou3
1Center for Immunotherapy Research, Houston Methodist Research Institute, 6670 Bertner Avenue, Houston, TX, 77030, USA.
Abstract:
Double-hit lymphoma (DHL) is among the most aggressive and chemoresistant lymphoma subtypes. DHLs carry genomic abnormalities in MYC, BCL2, and/or BCL6 oncogenes. Due to the simultaneous overexpression of these driver oncogenes, DHLs are highly resistant to frontline therapies. Most DHLs overexpress both MYC and BCL2 driver oncogenes concurrently. We reasoned that simultaneous suppression of the two driver oncogenes would be more effective in eradicating DHLs than inactivation of single oncogene. XPO1 is a receptor for nuclear cytoplasmic transport of protein and RNA species. Recently, XPO1 inhibition was shown to downregulate MYC expression in several cancer cell lines. We therefore examined the role of XPO1 as a therapeutic target in suppressing MYC function and the potential synergistic effects of simultaneous suppression of XPO1 and BCL2 in the treatment of DHL. Here, we demonstrate that XPO1 inhibition abrogates MYC protein expression and induces massive tumor cell apoptosis. Combined use of XPO1 and BCL2 inhibitors is highly effective in eradicating DHL cells in cell culture. Notably, in a mouse model of DHL bearing primary tumor cells derived from lymphoma patients, combined treatment with XPO1 and BCL2 inhibitors blocks tumor progression, prevents brain metastasis, and extends host survival. Thus, our study confirms the simultaneous targeting of MYC and BCL2 driver oncogenes through the combined use of XPO1 and BCL2 inhibitors as a unique approach for the treatment of DHLs.
Insights
Targeting both MYC and BCL2 simultaneously with XPO1 and BCL2 inhibitors shows promise for treating aggressive double-hit lymphoma (DHL). This combination therapy eradicates DHL cells and improves survival in preclinical models.
Area of Science:
- Oncology
- Hematology
- Molecular Biology
Background:
- Double-hit lymphoma (DHL) is an aggressive subtype characterized by genomic abnormalities in MYC, BCL2, and/or BCL6.
- DHLs exhibit high resistance to conventional therapies due to the co-overexpression of driver oncogenes, particularly MYC and BCL2.
Purpose of the Study:
- To investigate XPO1 inhibition as a strategy to suppress MYC function in DHL.
- To evaluate the synergistic efficacy of combined XPO1 and BCL2 inhibition in treating DHL.
Main Methods:
- Assessed the effect of XPO1 inhibition on MYC protein expression and apoptosis in DHL cell lines.
- Evaluated the combined efficacy of XPO1 and BCL2 inhibitors in vitro and in a preclinical mouse model of DHL using patient-derived tumor cells.
Main Results:
- XPO1 inhibition effectively reduced MYC protein levels and induced significant tumor cell apoptosis.
- Combined XPO1 and BCL2 inhibition demonstrated potent eradication of DHL cells in vitro.
- In vivo, the combination therapy blocked tumor progression, prevented brain metastasis, and extended survival in a mouse model.
Conclusions:
- Simultaneous targeting of MYC and BCL2 via combined XPO1 and BCL2 inhibition represents a novel and effective therapeutic strategy for DHL.
- This approach offers a promising avenue for overcoming chemoresistance and improving outcomes in patients with double-hit lymphoma.
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