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Updated: Oct 16, 2025

Establishing Cell Lines Overexpressing DR3 to Assess the Apoptotic Response to Anti-mitotic Therapeutics
Published on: January 11, 2019
The manipulation of apoptosis for cancer therapy using BH3-mimetic drugs
Sarah T Diepstraten1,2, Mary Ann Anderson1,2,3,4, Peter E Czabotar1,2
1The Walter and Eliza Hall Institute of Medical Research, Melbourne, VIC, Australia.
Abstract:
Apoptosis is a form of programmed cell death that is regulated by the balance between prosurvival and proapoptotic BCL-2 protein family members. Evasion of apoptosis is a hallmark of cancer that arises when this balance is tipped in favour of survival. One form of anticancer therapeutic, termed 'BH3-mimetic drugs', has been developed to directly activate the apoptosis machinery in malignant cells. These drugs bind to and inhibit specific prosurvival BCL-2 family proteins, thereby mimicking their interaction with the BH3 domains of proapoptotic BCL-2 family proteins. The BCL-2-specific inhibitor venetoclax is approved by the US Food and Drug Administration and many regulatory authorities worldwide for the treatment of chronic lymphocytic leukaemia and acute myeloid leukaemia. BH3-mimetic drugs targeting other BCL-2 prosurvival proteins have been tested in preclinical models of cancer, and drugs targeting MCL-1 or BCL-XL have advanced into phase I clinical trials for certain cancers. As with all therapeutics, efficacy and tolerability need to be carefully balanced to achieve a therapeutic window whereby there is significant anticancer activity with an acceptable safety profile. In this Review, we outline the current state of BH3-mimetic drugs targeting various prosurvival BCL-2 family proteins and discuss emerging data regarding primary and acquired resistance to these agents and approaches that may overcome this. We highlight issues that need to be addressed to further advance the clinical application of BH3-mimetic drugs, both alone and in combination with additional anticancer agents (for example, standard chemotherapeutic drugs or inhibitors of oncogenic kinases), for improved responses in patients with cancer.
Insights
BH3-mimetic drugs target cancer cell survival proteins, activating programmed cell death (apoptosis). This review covers their current use, resistance mechanisms, and strategies to improve cancer treatment efficacy and safety.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Apoptosis, or programmed cell death, is crucial for normal development and is dysregulated in cancer.
- The balance of BCL-2 family proteins (prosurvival vs. proapoptotic) dictates cell fate, with cancer cells often favoring survival.
- BH3-mimetic drugs are designed to restore apoptosis in cancer cells by inhibiting prosurvival BCL-2 proteins.
Purpose of the Study:
- To review the current landscape of BH3-mimetic drugs targeting prosurvival BCL-2 family proteins.
- To discuss emerging data on primary and acquired resistance to these agents.
- To highlight strategies for overcoming resistance and advancing clinical applications.
Main Methods:
- Review of preclinical and clinical data on BH3-mimetic drugs.
- Analysis of resistance mechanisms to BH3-mimetic therapies.
- Exploration of combination strategies with other anticancer agents.
Main Results:
- Venetoclax, a BCL-2 inhibitor, is approved for certain leukemias.
- BH3-mimetic drugs targeting MCL-1 and BCL-XL are in early clinical trials.
- Resistance to BH3-mimetics is a significant clinical challenge.
Conclusions:
- BH3-mimetic drugs represent a promising class of anticancer therapeutics.
- Understanding and overcoming resistance are critical for maximizing clinical benefit.
- Combination therapies may enhance efficacy and broaden patient responses.
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