A unique CDK4/6 inhibitor: Current and future therapeutic strategies of abemaciclib
Qing-Yun Chong1, Ze-Hui Kok1, Ngoc-Linh-Chi Bui1
1Cancer Science Institute of Singapore, National University of Singapore, Singapore.
Abstract:
Cell cycle dysregulation, characterised by aberrant activation of cyclin dependent kinases (CDKs), is a hallmark of cancer. After years of research on the first and second generations of less selective CDK inhibitors with unfavourable clinical activity and toxicity profiles, CDK4/6 inhibitors become the first and only class of highly specific CDK inhibitors being approved for cancer treatment to date. CDK4/6 inhibitors have transformed the treatment paradigm of estrogen receptor-positive (ER+) breast cancer, dramatically improving the survival outcomes of these patients when incorporated with conventional endocrine therapies in both the first and later-line settings. Currently, the efficacies of CDK4/6 inhibitors in other breast cancer subtypes and cancers are being actively explored. All three CDK4/6 inhibitors have demonstrated very similar clinical efficacies. However, being the least similar structurally, abemaciclib is the only CDK4/6 inhibitor with single agent activity in refractory metastatic ER + breast cancer, the ability to cross the blood brain barrier efficiently, and a distinct toxicity profile of lower myelosuppression such that it can be dosed continuously. Here, we further discuss the distinguishing features of abemaciclib as compared to the other two CDK4/6 inhibitors, palbociclib and ribociclib. Besides being the most potent inhibitor of CDK4/6, abemaciclib exhibits a wider selectivity towards other CDKs and kinases, and functions through additional mechanisms of action besides inducing G1 cell cycle arrest, in a dose dependent manner. Hence, abemaciclib has the potential to act independently of the CDK4/6-cyclin D-RB pathway, resulting in crucial implications on the possibly expanded clinical indications and predictive biomarkers of abemaciclib, in contrast to the other CDK4/6 inhibitors. The current status of preclinical evidence and clinical studies of abemaciclib as a single agent and in combination treatment in breast and other cancers, together with its potential predictive biomarkers, is also summarised in this review.
Insights
Cyclin-dependent kinase (CDK) inhibitors, specifically CDK4/6 inhibitors, have revolutionized ER+ breast cancer treatment. Abemaciclib shows unique efficacy and broader potential beyond CDK4/6 inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cell cycle dysregulation via cyclin-dependent kinases (CDKs) is central to cancer.
- CDK4/6 inhibitors are a highly specific class approved for cancer treatment.
- These inhibitors have transformed estrogen receptor-positive (ER+) breast cancer therapy.
Purpose of the Study:
- To compare the distinguishing features of abemaciclib with other CDK4/6 inhibitors (palbociclib, ribociclib).
- To explore abemaciclib's potential beyond CDK4/6 inhibition and its expanded clinical indications.
- To summarize preclinical and clinical evidence for abemaciclib in various cancers.
Main Methods:
- Review of preclinical evidence and clinical studies.
- Comparative analysis of abemaciclib's mechanism of action, selectivity, and toxicity profile.
- Discussion of abemaciclib's unique properties, including blood-brain barrier penetration and single-agent activity.
Main Results:
- Abemaciclib is the most potent CDK4/6 inhibitor with wider kinase selectivity.
- It exhibits single-agent activity in refractory metastatic ER+ breast cancer and crosses the blood-brain barrier.
- Abemaciclib has a distinct toxicity profile with lower myelosuppression, allowing continuous dosing.
Conclusions:
- Abemaciclib possesses unique features and potential mechanisms of action beyond CDK4/6 inhibition.
- Its distinct properties suggest expanded clinical indications and the need for predictive biomarkers.
- Further research is ongoing to evaluate abemaciclib's efficacy as a single agent and in combination therapies.
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