Flavopiridol, the first cyclin-dependent kinase inhibitor to enter the clinic: current status
1CRC Centre for Cancer Therapeutics, The Institute of Cancer Research, 15 Cotswold Road, Sutton, Surrey SM2 5NG, UK. lloyd@icr.ac.uk
Abstract:
This review focuses on the clinical development of the prototype broad spectrum inhibitor of cyclin-dependent kinases (CDKs), flavopiridol, now undergoing Phase II single-agent trials and Phase I combination trials (with paclitaxel and cisplatin). Preclinically, flavopiridol is a potent inhibitor of CDKs 1, 2 and 4 in cell-free assays (IC(50)in the region of 100 nM) and tumour cell growth in vitro (typical IC(50)in the region of 100 nM). The drug showed in vivo antitumour activity (using iv., ip. or oral dosing) against a variety of human tumour xenografts, especially when administered on a regular daily, rather than weekly, schedule and most notably against prostate carcinoma, head and neck cancer, non-Hodgkin's lymphoma and leukaemia. The major toxicities observed in rodents were on the bone marrow and gastrointestinal tract. Pharmacokinetics were linear with dose and with a bi-exponential decline both in rodents and man. Oral bioavailability in rodents is in the region of 20%. Glucuronidation appears to be the major route of metabolism. Single-agent clinical trials have mainly used a 72 h continuous infusion schedule. Dose-limiting toxicities were diarrhoea and hypotension. Plasma concentrations in excess of those required for in vitro enzyme or cell growth inhibition are achievable. While there has been some evidence of single-agent antitumour activity (partial responses in a patient with renal cancer and another with gastric cancer), ongoing combination studies, especially with paclitaxel, where preclinical synergistic antitumour effects are observed, are promising. Doubt as to whether CDKs are the sole target responsible for the drug's antitumour effects have been raised by preclinical observations of apoptosis of non-cycling cells, effects on endothelial cells and non-CDK proteins, such as aldehyde dehydrogenase and glycogen phosphorylase, potent effects on PTEFb and transcription and its ability to directly interact with DNA.
Insights
Flavopiridol, a cyclin-dependent kinase (CDK) inhibitor, shows preclinical and early clinical antitumor activity. Combination therapies, particularly with paclitaxel, appear promising for cancer treatment, though its precise mechanism requires further investigation.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Cyclin-dependent kinases (CDKs) are crucial regulators of the cell cycle.
- Flavopiridol is a potent, broad-spectrum inhibitor of CDKs 1, 2, and 4.
- CDK inhibitors are being investigated as novel cancer therapeutics.
Purpose of the Study:
- To review the clinical development of flavopiridol as a broad-spectrum CDK inhibitor.
- To summarize preclinical and clinical data on flavopiridol's efficacy and toxicity.
- To explore the potential of flavopiridol in combination cancer therapies.
Main Methods:
- Preclinical evaluation of flavopiridol's in vitro and in vivo antitumor activity.
- Phase I and II clinical trials of flavopiridol as a single agent and in combination with chemotherapy.
- Pharmacokinetic and pharmacodynamic analyses in preclinical models and human subjects.
Main Results:
- Flavopiridol demonstrated significant in vitro and in vivo antitumor activity against various human xenografts, particularly prostate carcinoma, head and neck cancer, non-Hodgkin's lymphoma, and leukemia.
- Major toxicities in rodents included bone marrow and gastrointestinal issues; in humans, dose-limiting toxicities were diarrhea and hypotension.
- Early clinical trials showed some single-agent activity, with combination studies, especially with paclitaxel, showing promise due to synergistic effects.
Conclusions:
- Flavopiridol exhibits promising preclinical and early clinical antitumor activity.
- Combination therapy with flavopiridol, particularly with paclitaxel, warrants further investigation.
- The precise molecular targets and mechanisms of flavopiridol's action, beyond CDK inhibition, require continued research.
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