CDK inhibitors in cancer therapy, an overview of recent development
Mengna Zhang1, Lingxian Zhang1, Ruoxuan Hei2
1Department of Orthopaedics, Zhongnan Hospital of Wuhan University, Frontier Science Center for Immunology and Metabolism, Medical Research Institute, Wuhan University Wuhan 430071, China.
Abstract:
Dysregulated cell division, which leads to aberrant cell proliferation, is one of the key hallmarks of cancer. Therefore, therapeutic targets that block cell division would be effective for cancer treatment. Cell division is mainly controlled by a complex composed of cyclin and cyclin dependent kinases (CDKs). To date, the CDK inhibitors (CDKIs), specifically the ones that block the enzyme activity of CDK4 and CDK6 (CDK4/6), have been approved by FDA for the treatment of metastatic hormone receptor positive breast cancer. However, due to the non-selectivity and significant toxicity, most of the first generation CDK inhibitors (so called pan-CDK inhibitors that target several CDKs), have not been approved for clinical application. Despite this, great efforts and progress have been made to enable pan-CDK inhibitors application in the clinical setting. Notably, the development of combination therapy strategies in recent years has made it possible to reduce the toxicity and side effects of pan-CDK inhibitors. Thus, as a combination therapy approach, pan-CDK inhibitors regain great potential in clinical application. In this review, we introduced the CDK family members and discussed their major functions in cell cycle controlling. Then, we summarized the research progress regarding CDK inhibitors, especially those other than CDK4/6 inhibitors. We reviewed first-generation pan-CDKIs Flavopiridol and Roscovitine, and second-generation CDKIs Dinaciclib, P276-00, AT7519, TG02, Roniciclib, RGB-286638 by focusing on their developing stages, clinical trials and targeting cancers. The specific CDKIs, which targets to increase specificity and decrease the side effects, were also discussed. These CDKIs include CDK4/6, CDK7, CDK9, and CDK12/13 inhibitors. Finally, the efficacy and discrepancy of combination therapy with CDK inhibitors and PD1/PDL1 antibodies were analyzed, which might give insights into the development of promising strategy for cancer treatment.
Insights
Cyclin-dependent kinase inhibitors (CDKIs) show promise in cancer treatment by blocking cell division. Combination therapies are improving the safety and efficacy of pan-CDK inhibitors for clinical use.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Aberrant cell proliferation, driven by dysregulated cell division, is a hallmark of cancer.
- Cyclin-dependent kinases (CDKs) and their inhibitors (CDKIs) are critical regulators of the cell cycle.
- While CDK4/6 inhibitors are FDA-approved for breast cancer, first-generation pan-CDK inhibitors face challenges with toxicity and selectivity.
Purpose of the Study:
- To review the CDK family, their cell cycle functions, and the development of CDK inhibitors.
- To summarize research on CDK inhibitors beyond CDK4/6, including first- and second-generation pan-CDKIs.
- To analyze combination therapy strategies involving CDK inhibitors and PD1/PDL1 antibodies for cancer treatment.
Main Methods:
- Literature review of CDK family members and their functions.
- Summary of research progress on various CDK inhibitors (pan-CDKIs, CDK4/6, CDK7, CDK9, CDK12/13 inhibitors).
- Analysis of clinical trial data and targeting cancers for different CDKIs.
- Evaluation of combination therapy efficacy with CDK inhibitors and PD1/PDL1 antibodies.
Main Results:
- First-generation pan-CDK inhibitors like Flavopiridol and Roscovitine have been developed, alongside second-generation inhibitors such as Dinaciclib and Roniciclib.
- Specific CDKIs targeting CDK4/6, CDK7, CDK9, and CDK12/13 are being investigated to enhance specificity and reduce side effects.
- Combination therapy strategies, particularly with PD1/PDL1 antibodies, show potential for improving cancer treatment outcomes.
Conclusions:
- Pan-CDK inhibitors, especially when used in combination therapies, hold significant potential for clinical application in cancer treatment.
- Targeted CDKIs offer improved specificity and reduced toxicity compared to earlier generations.
- Further research into combination strategies may lead to novel and effective cancer therapies.
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