Novel Small Molecule Inhibitors of Cyclin-dependent Kinases as Anticancer Agents
Nitin Srivastava1, Anil Kumar Saxena2
1Department of Chemistry, Amity University Uttar Pradesh Lucknow Campus, 226028, Lucknow, India.
Abstract:
Cyclin and cyclin-dependent kinases (CDKs) play a key role in the progression of the cell cycle including transcription, metabolism, apoptosis, etc. Different phases of the cell cycle like G1, S, G2, and M have specific cyclins and CDKs, each with specific functions as checkpoints to regulate the transfer of cells from one phase to another. The kinases ensure proper replication of DNA in the daughter cells while fault at any stage of the cell phase induces apoptosis of the faulty cell. Hence, CDKs are considered important targets for developing chemotherapeutics against cancers. So the published work on small molecules belonging to diverse chemical classes with potential CDK inhibitory and anticancer activities reported in the last ten years has been reviewed to give an overview of the chemical structures that may be employed in designing novel CDK inhibitors with improved cancer therapeutic. Literature search has been carried out using different search engines like Google, Elsevier, Science Direct, RSC, PubMed, etc. for the publications of small molecules as CDK inhibitors and anticancer agents. Several classes of molecules, including nitrogen heterocycles, macrocyclic, and natural products have been the most promising CDK inhibitors with anticancer activities. Though CDK 4/6 inhibition is most significant for anticancer activity and has been shown by most of the molecules but the inhibition to other CDKs including 1, 2, 7, 9 has also been observed. Further CDK4/6 inhibitors have been investigated for the treatment of breast cancer in combination with radiotherapy where no untoward toxicities were observed. Several molecules have shown promising CDKs inhibition with anticancer activities against different cancer cell lines. The most important class being of nitrogen heterocycles. Though some of these molecules are in different phases of clinical trials and there are many lead molecules for judicious structural modulation to develop more specific and selective CDKs inhibitors as anticancer agents.
Insights
Cyclin-dependent kinases (CDKs) are crucial cell cycle regulators and cancer targets. This review highlights small molecules, particularly nitrogen heterocycles, with CDK inhibitory and anticancer potential for developing new cancer therapeutics.
Area of Science:
- Biochemistry
- Molecular Biology
- Medicinal Chemistry
Background:
- Cyclin-dependent kinases (CDKs) regulate cell cycle progression, impacting transcription, metabolism, and apoptosis.
- Dysregulation of CDKs is implicated in cancer, making them critical targets for chemotherapeutics.
- Specific cyclins and CDKs act as checkpoints, ensuring accurate DNA replication and inducing apoptosis in faulty cells.
Purpose of the Study:
- To review recent (last decade) small molecules with CDK inhibitory and anticancer activities.
- To provide an overview of chemical structures for designing novel CDK inhibitors.
- To identify promising molecular classes for improved cancer therapeutics.
Main Methods:
- Comprehensive literature search using scientific databases (PubMed, Science Direct, Google Scholar, etc.).
- Analysis of published studies on small molecules exhibiting CDK inhibition and anticancer properties.
- Categorization of molecules based on chemical classes and observed CDK inhibition profiles.
Main Results:
- Nitrogen heterocycles, macrocycles, and natural products are promising CDK inhibitors with anticancer activity.
- CDK4/6 inhibition is most significant for anticancer effects, though inhibition of CDK1, 2, 7, and 9 was also observed.
- Several molecules demonstrated potent CDK inhibition and anticancer activity across various cancer cell lines, with some progressing to clinical trials.
Conclusions:
- Small molecules, especially nitrogen heterocycles, show significant potential as CDK inhibitors for cancer therapy.
- Further structural modulation is needed to develop more specific and selective CDK inhibitors.
- CDK4/6 inhibitors show promise in combination therapies, such as with radiotherapy for breast cancer, with manageable toxicity.
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