Balancing Properties with Carboxylates: A Lead Optimization Campaign for Selective and Orally Active CDK9 Inhibitors
Yunsong Tong1, Alan S Florjancic2, Rick F Clark2
1Drug Discovery Science & Technology, Abbvie, 1 North Waukegan Road, North Chicago, Illinois 60064, United States.
Abstract:
Cyclin-dependent kinase 9 (CDK9) is a serine/threonine kinase involved in the regulation of transcription elongation. An inhibition of CDK9 downregulates a number of short-lived proteins responsible for tumor maintenance and survival, including the antiapoptotic BCL-2 family member MCL-1. As pan-CDK inhibitors under development have faced dosing and toxicity challenges in the clinical setting, we generated selective CDK9 inhibitors that could be amenable to an oral administration. Here, we report the lead optimization of a series of azaindole-based inhibitors. To overcome early challenges with promiscuity and cardiovascular toxicity, carboxylates were introduced into the pharmacophore en route to compounds such as 14 and 16. These CDK9 inhibitors demonstrated a reduced toxicity, adequate pharmacokinetic properties, and a robust in vivo efficacy in mice upon oral dosing.
Insights
Researchers developed novel, selective Cyclin-dependent kinase 9 (CDK9) inhibitors for oral administration. These compounds show reduced toxicity and promising efficacy in preclinical models, addressing challenges with earlier pan-CDK inhibitors.
Area of Science:
- Molecular Biology
- Pharmacology
- Oncology
Background:
- Cyclin-dependent kinase 9 (CDK9) regulates transcription elongation.
- CDK9 inhibition downregulates tumor survival proteins like MCL-1.
- Existing pan-CDK inhibitors present clinical dosing and toxicity issues.
Purpose of the Study:
- To develop selective CDK9 inhibitors for oral administration.
- To overcome promiscuity and cardiovascular toxicity associated with early inhibitors.
- To identify potent and safe CDK9 inhibitors for cancer therapy.
Main Methods:
- Lead optimization of azaindole-based compounds.
- Introduction of carboxylates into the pharmacophore to enhance selectivity and reduce toxicity.
- Pharmacokinetic and in vivo efficacy studies in mouse models.
Main Results:
- Development of selective CDK9 inhibitors, compounds 14 and 16.
- Demonstrated reduced toxicity and improved pharmacokinetic profiles.
- Achieved robust in vivo anti-tumor efficacy following oral administration in mice.
Conclusions:
- Selective CDK9 inhibition is a viable therapeutic strategy for cancer.
- Azaindole-based inhibitors with carboxylate modifications offer a promising approach for oral administration.
- These novel inhibitors warrant further clinical investigation for cancer treatment.
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