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Current Advances and Future Strategies for BCL-2 Inhibitors: Potent Weapons against Cancers
Jiaxuan Xu1, Xiaoqing Dong1, David C S Huang2,3
1Department of Hematology, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, China-Australia Institute of Translational Medicine, School of Life Sciences, Nanjing University, Nanjing 210008, China.
Abstract:
Targeting the intrinsic apoptotic pathway regulated by B-cell lymphoma-2 (BCL-2) antiapoptotic proteins can overcome the evasion of apoptosis in cancer cells. BCL-2 inhibitors have evolved into an important means of treating cancers by inducing tumor cell apoptosis. As the most extensively investigated BCL-2 inhibitor, venetoclax is highly selective for BCL-2 and can effectively inhibit tumor survival. Its emergence and development have significantly influenced the therapeutic landscape of hematological malignancies, especially in chronic lymphocytic leukemia and acute myeloid leukemia, in which it has been clearly incorporated into the recommended treatment regimens. In addition, the considerable efficacy of venetoclax in combination with other agents has been demonstrated in relapsed and refractory multiple myeloma and certain lymphomas. Although venetoclax plays a prominent antitumor role in preclinical experiments and clinical trials, large individual differences in treatment outcomes have been characterized in real-world patient populations, and reduced drug sensitivity will lead to disease recurrence or progression. The therapeutic efficacy may vary widely in patients with different molecular characteristics, and key genetic mutations potentially result in differential sensitivities to venetoclax. The identification and validation of more novel biomarkers are required to accurately predict the effectiveness of BCL-2 inhibition therapy. Furthermore, we summarize the recent research progress relating to the use of BCL-2 inhibitors in solid tumor treatment and demonstrate that a wealth of preclinical models have shown promising results through combination therapies. The applications of venetoclax in solid tumors warrant further clinical investigation to define its prospects.
Insights
B-cell lymphoma-2 (BCL-2) inhibitors like venetoclax show promise in treating cancers by inducing apoptosis. However, variable patient responses and resistance necessitate further research into biomarkers and solid tumor applications.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Targeting B-cell lymphoma-2 (BCL-2) proteins is crucial for overcoming cancer cell apoptosis evasion.
- BCL-2 inhibitors, particularly venetoclax, are effective in treating hematological malignancies by inducing tumor cell apoptosis.
- Venetoclax is incorporated into treatment regimens for chronic lymphocytic leukemia and acute myeloid leukemia, and shows efficacy in multiple myeloma and lymphomas.
Purpose of the Study:
- To review the therapeutic landscape of BCL-2 inhibitors, focusing on venetoclax.
- To discuss the challenges of variable treatment outcomes and drug resistance in real-world patient populations.
- To explore the potential of BCL-2 inhibitors, including venetoclax, in solid tumor treatment.
Main Methods:
- Literature review of preclinical and clinical studies on BCL-2 inhibitors.
- Analysis of venetoclax efficacy in various hematological malignancies and solid tumors.
- Summary of research on biomarkers predicting response to BCL-2 inhibition therapy.
Main Results:
- Venetoclax demonstrates significant antitumor activity in hematological malignancies, influencing treatment strategies.
- Individual patient responses to venetoclax vary, with drug sensitivity issues leading to recurrence.
- Preclinical models show promising results for BCL-2 inhibitors in combination therapies for solid tumors.
Conclusions:
- Novel biomarkers are needed to predict the effectiveness of BCL-2 inhibition therapy and personalize treatment.
- Further clinical investigation of venetoclax in solid tumors is warranted.
- Combination therapies involving BCL-2 inhibitors show potential for broader cancer treatment applications.
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