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Published on: May 4, 2017
Distinct cellular and therapeutic effects of obatoclax in rituximab-sensitive and -resistant lymphomas
Elizabeth A Brem1, Karen Thudium, Sapna Khubchandani
1Department of Medicine, Roswell Park Cancer Institute,Elm and Carlton Streets, Buffalo, NY 14263, USA.
Abstract:
Bcl-2 proteins represent a rheostat that controls cellular viability. Obatoclax, a BH3-mimetic, has been designed to specifically target and counteract anti-apoptotic Bcl-2 proteins. We evaluated the biological effects of obatoclax on the anti-tumour activity of rituximab and chemotherapy agents. Obatoclax induced cell death of rituximab/chemotherapy-sensitive (RSCL), -resistant cell lines (RRCL) and primary tumour-cells derived from patients with B-cell lymphomas (N=39). Obatoclax also enhanced the activity of rituximab and had synergistic activity when combined with chemotherapy agents. The ability of Obatoclax to induce PARP cleavage varied between patient samples and was not observed in some RRCL. Inhibition of caspase activity did not affect obatoclax activity, suggesting the existence of caspase-independent death pathways. Autophagy was detected by LC3 conversion and/or electron microscopy in RRCL and in patient-derived tumour cells. Moreover, obatoclax activity was inhibited by Beclin-1 knockdown. In summary, obatoclax is an active Bcl-2 inhibitor that potentiates the activity of chemotherapy agents and, to a lesser degree, rituximab. Defining the molecular events triggered by obatoclax is necessary to further its clinical development and identify potential biomarkers that are predictive of response.
Insights
Obatoclax, a Bcl-2 inhibitor, effectively induces cancer cell death and enhances chemotherapy efficacy in B-cell lymphomas. Further research is needed to define molecular events and identify biomarkers for patient response.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Bcl-2 proteins regulate cellular viability.
- Obatoclax is a BH3-mimetic targeting anti-apoptotic Bcl-2 proteins.
Purpose of the Study:
- Evaluate obatoclax's biological effects on anti-tumor activity of rituximab and chemotherapy.
- Assess obatoclax's efficacy in B-cell lymphoma cell lines and patient-derived tumors.
Main Methods:
- Cell death induction assays.
- Analysis of PARP cleavage and caspase activity.
- Detection of autophagy via LC3 conversion and electron microscopy.
- Beclin-1 knockdown experiments.
Main Results:
- Obatoclax induced cell death in sensitive and resistant B-cell lymphoma cells and patient samples.
- Obatoclax enhanced rituximab activity and showed synergistic effects with chemotherapy.
- PARP cleavage varied; caspase inhibition did not affect obatoclax activity.
- Autophagy was detected and linked to obatoclax activity.
Conclusions:
- Obatoclax is an active Bcl-2 inhibitor potentiating chemotherapy and rituximab.
- Molecular events and predictive biomarkers are crucial for obatoclax's clinical development.
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