Multiple roles of cyclin-dependent kinase 4/6 inhibitors in cancer therapy
Patrick J Roberts1, John E Bisi, Jay C Strum
1Department of Genetics, The University of North Carolina School of Medicine, Chapel Hill, NC, USA.
Background:
Cyclin-dependent kinases (CDKs) regulate cell proliferation and coordinate the cell cycle checkpoint response to DNA damage. Although inhibitors with varying selectivity to specific CDK family members have been developed, selective CDK4/6 inhibitors have emerged as the most attractive antineoplastic agents because of the importance of CDK4/6 activity in regulating cell proliferation and the toxic effects associated with inhibition of other CDKs (eg, CDK1 and CDK2).
Methods:
FVB/N wild-type mice (n = 13) were used to evaluate carboplatin-induced myelosuppression in bone marrow by complete blood cell counts after treatment with the CDK4/6 inhibitor PD0332991. Genetically engineered murine models of retinoblastoma (Rb)-competent (MMTV-c-neu) and Rb-incompetent (C3-TAg) breast cancer (n = 16 MMTV-c-neu mice in the carboplatin plus vehicle control group, n = 17 MMTV-c-neu mice in the carboplatin plus PD0332991 group, n = 17 C3-TAg mice in the carboplatin plus vehicle control group, and n = 14 C3-TAg mice in the carboplatin plus PD0332991 group) were used to investigate the antitumor activity of PD0332991 alone or in combination with chemotherapy. All statistical tests were two-sided.
Results:
Coadministration of PD0332991 with carboplatin compared with carboplatin alone in FVB/N wild-type mice increased hematocrit (51.2% vs 33.5%, difference = 17.7%, 95% confidence interval [CI] = -26.7% to -8.6%, P < .001), platelet counts (1321 vs 758.5 thousand cells per μL, difference = 562.5 thousand cells per μL, 95% CI = -902.8 to -222.6, P = .002), myeloid cells (granulocytes and monocytes; 3.1 vs 1.6 thousand cells per μL, difference = 1.5 thousand cells per μL, 95% CI = -2.23 to -0.67, P < .001), and lymphocytes (7.9 vs 5.4 thousand cells per μL, difference = 2.5 thousand cells per μL, 95% CI = -4.75 to -0.18, P = .02). Daily administration of PD0332991 exhibited antitumor activity in MMTV-c-neu mice as a single agent. However, the combination of carboplatin plus PD0332991 decreased antitumor activity compared with carboplatin alone in Rb-competent mice (mean percent change in tumor volume at day 21 = -52.6% vs 3.7% for carboplatin and carboplatin plus PD0332991, respectively, difference = 56.3%, 95% CI = -109.0% to -3.6%, P = .04). In contrast, Rb-deficient tumors in C3-Tag mice were resistant to PD0332991, and coadministration of PD0332991 plus carboplatin had no effect on in vivo tumor growth (mean percent change in tumor volume at day 21 = 118.8% and 109.1% for carboplatin and carboplatin plus PD0332991, respectively, difference = 9.7%, 95% CI = -183.5% to 202.9%, P = .92). Finally, in tumor-bearing mice, coadministration of PD0332991 with carboplatin provided statistically significant protection of platelets (P = .04).
Conclusion:
We believe that the present data support a possible role for CDK4/6 inhibitors in a majority of patients with advanced cancer: to either inhibit tumor growth in CDK4/6-dependent tumors or ameliorate the dose-limiting toxicities of chemotherapy in CDK4/6-indepdendent tumors. Our data also suggest CDK4/6 inhibitors should not be combined with DNA-damaging therapies, such as carboplatin, to treat tumors that require CDK4/6 activity for proliferation.
Insights
Selective CDK4/6 inhibitors like PD0332991 may help treat cancer by inhibiting tumor growth or reducing chemotherapy side effects. However, combining them with DNA-damaging chemotherapy, such as carboplatin, is not recommended for CDK4/6-dependent tumors.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Cyclin-dependent kinases (CDKs) are crucial regulators of cell proliferation and DNA damage response.
- Selective CDK4/6 inhibitors are promising antineoplastic agents due to the critical role of CDK4/6 in cell division and the toxicity of other CDK inhibitors.
Purpose of the Study:
- To evaluate the effects of the CDK4/6 inhibitor PD0332991 on carboplatin-induced myelosuppression.
- To investigate the antitumor activity of PD0332991 alone and in combination with carboplatin in different breast cancer models.
Main Methods:
- FVB/N wild-type mice were used to assess myelosuppression.
- Genetically engineered murine models (Rb-competent and Rb-incompetent) of breast cancer were used to evaluate antitumor efficacy.
- Complete blood cell counts and tumor volume changes were measured.
Main Results:
- PD0332991 co-administration with carboplatin increased blood cell counts (hematocrit, platelets, myeloid, and lymphocytes) in wild-type mice.
- PD0332991 showed antitumor activity as a single agent in Rb-competent mice.
- The combination of carboplatin and PD0332991 decreased antitumor activity in Rb-competent mice but showed no effect in Rb-incompetent mice.
- PD0332991 provided significant platelet protection when combined with carboplatin in tumor-bearing mice.
Conclusions:
- CDK4/6 inhibitors may have a dual role in advanced cancer: inhibiting CDK4/6-dependent tumors or mitigating chemotherapy toxicities in CDK4/6-independent tumors.
- Combining CDK4/6 inhibitors with DNA-damaging agents like carboplatin is not advisable for tumors reliant on CDK4/6 activity.
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