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Combination Treatment of Resistant Acute Promyelocytic Leukemia Cells with Arsenic Trioxide and Anti-Apoptotic Gene
Manuela Giansanti1, Tiziana Ottone2,3, Serena Travaglini2
1Department of Systems Medicine, University of Rome Tor Vergata, 00133 Rome, Italy.
Background:
Arsenic trioxide (ATO) is an anticancer agent for treating acute promyelocytic leukemia (APL). However, 5-10% of patients fail to respond, developing relapsed/refractory disease. The aim of this study was to identify potential new therapeutic approaches for ATO-unresponsive APL by targeting the anti-apoptotic genes that contribute to drug resistance.
Methods:
RNA expression of dysregulated genes involved in the apoptotic pathway was analyzed by comparing ATO-resistant APL cell clones generated in our lab with the corresponding sensitive clones, at basal levels and after 48 h of treatment with ATO.
Results:
ATO-resistant APL cells showed upregulation of APAF1, BCL2, BIRC3, and NOL3 genes, while CD70 and IL10 genes were downregulated, compared to ATO-sensitive cells. Treatment with ATO strongly increased the expression of the anti-apoptotic genes BIRC3, NOL3, and BCL2A1 and significantly downregulated BCL2 in ATO-sensitive clones. Although all these genes can be relevant to ATO-resistance, we selected BCL2 and BIRC3 as druggable targets. A direct correlation between BCL2 expression and the sensitivity to the BCL2 inhibitor venetoclax was observed, indicating BCL2 as predictive biomarker of the response. Moreover, the combination of venetoclax with ATO exerted synergistic cytotoxic effects, thus reverting the resistance to ATO. APL treatment with SMAC mimetics such as LCL161 and xevinapant (inhibitors of BIRC3) was not as effective as the BCL2 inhibitor as a monotherapy but exerted synergistic effects in combination with ATO in cells with low BIRC expression.
Conclusions:
This study demonstrates the therapeutic potential of venetoclax in combination with ATO in vitro and strongly encourages further investigation of relapsed/refractory APL with high BCL2 expression.
Insights
Arsenic trioxide (ATO) resistance in acute promyelocytic leukemia (APL) can be overcome by targeting anti-apoptotic genes. Combining venetoclax with ATO shows synergistic effects, offering a new therapeutic strategy for relapsed/refractory APL.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Arsenic trioxide (ATO) treats acute promyelocytic leukemia (APL).
- 5-10% of APL patients exhibit resistance or relapse after ATO treatment.
- Targeting anti-apoptotic genes is crucial for overcoming ATO resistance.
Purpose of the Study:
- Identify novel therapeutic targets for ATO-unresponsive APL.
- Investigate the role of anti-apoptotic genes in ATO resistance.
- Evaluate venetoclax and BIRC3 inhibitor combinations with ATO.
Main Methods:
- Analyzed RNA expression of apoptotic pathway genes in ATO-resistant vs. sensitive APL cells.
- Compared gene expression at baseline and after ATO treatment.
- Assessed drug sensitivity and synergistic effects of venetoclax and BIRC3 inhibitors.
Main Results:
- ATO-resistant APL cells showed altered expression of apoptosis-related genes including BCL2 and BIRC3.
- BCL2 expression correlated with venetoclax sensitivity, serving as a predictive biomarker.
- Combination of venetoclax and ATO demonstrated synergistic cytotoxicity, reverting ATO resistance.
Conclusions:
- Venetoclax combined with ATO shows significant in vitro therapeutic potential.
- Further investigation is warranted for relapsed/refractory APL with high BCL2 expression.
- Targeting BCL2 offers a promising strategy for overcoming ATO resistance in APL.
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