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Translocation t(11;14) and BCL2-inhibition in multiple myeloma
Shirlene Sim1, Binod Dhakal2, Hang Quach3
1Clinical Haematology Department, St Vincent's Hospital Melbourne, Fitzroy, Victoria 3065, Australia; Faculty of Medicine, Dentistry and Health Sciences, University of Melbourne, Parkville, Victoria 3065. Shirlene.Sim@svha.org.au.
Abstract:
Multiple myeloma is an increasingly treatable disease with improved survival, although characterized by multiple subclones that drive heterogeneity and variable clinical outcomes between patients. A biomarker-driven approach can help to tailor treatment and improve patient outcomes. Translocation t(11;14), a primary cytogenetic abnormality present in 15-20% of myeloma patients at diagnosis, is currently the most prominent targetable lesion in myeloma. In the era of induction with proteasome inhibitors and/or immunomodulatory drugs, t(11;14) has been associated with poorer outcomes compared to other standard-risk subgroups, with shorter progression-free and overall survival. The presence of t(11;14) in myeloma cells confers increased dependence on the pro-survival BCL2 protein, thus driving its ability to evade apoptosis, and is the main biomarker predicting response to BCL2-inhibitors. This review examines the pathogenesis and prognostic significance of t(11;14) in myeloma and the impact of concurrent high-risk cytogenetics, the mechanism of action of BCL2-inhibitors, cumulative evidence supporting their use, and proposed mechanisms of resistance. The review also presents potential future directions regarding BCL2-inhibitor-based regimens and how best to position these drugs to optimize patient outcomes.
Insights
Multiple myeloma with translocation t(11;14) shows poorer outcomes. Targeting BCL2 offers a biomarker-driven approach for these patients, improving treatment strategies and outcomes.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Multiple myeloma exhibits heterogeneity, impacting patient outcomes.
- Translocation t(11;14) is a key cytogenetic abnormality in 15-20% of myeloma cases.
- This translocation is linked to poorer survival with standard therapies.
Purpose of the Study:
- To review the role of translocation t(11;14) in multiple myeloma.
- To explore the efficacy of BCL2-inhibitors in t(11;14)-positive myeloma.
- To discuss resistance mechanisms and future therapeutic directions.
Main Methods:
- Literature review of pathogenesis, prognostic significance, and therapeutic strategies.
- Analysis of clinical evidence for BCL2-inhibitor use.
- Examination of resistance mechanisms and future research.
Main Results:
- Translocation t(11;14) confers dependence on BCL2, predicting response to BCL2-inhibitors.
- BCL2-inhibitors demonstrate efficacy in this subgroup.
- Understanding resistance is crucial for optimizing treatment.
Conclusions:
- Translocation t(11;14) is a critical biomarker in multiple myeloma.
- BCL2-inhibitors represent a promising targeted therapy for t(11;14)-positive myeloma.
- Further research is needed to refine treatment strategies and overcome resistance.
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