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Updated: Jun 25, 2026

Preclinical Assessment of the Bioactivity of the Anticancer Coumarin OT48 by Spheroids, Colony Formation Assays, and Zebrafish Xenografts
Published on: June 26, 2018
Identifying tumor cell growth inhibitors by combinatorial chemistry and zebrafish assays
Jing Xiang1, Hongbo Yang, Chao Che
1Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education and Beijing National Laboratory for Molecular Science, College of Chemistry, Peking University, Beijing, China.
Abstract:
Cyclin-dependent kinases (CDKs) play important roles in regulating cell cycle progression, and altered cell cycles resulting from over-expression or abnormal activation of CDKs observed in many human cancers. As a result, CDKs have become extensive studied targets for developing chemical inhibitors for cancer therapies; however, protein kinases share a highly conserved ATP binding pocket at which most chemical inhibitors bind, therefore, a major challenge in developing kinase inhibitors is achieving target selectivity. To identify cell growth inhibitors with potential applications in cancer therapy, we used an integrated approach that combines one-pot chemical synthesis in a combinatorial manner to generate diversified small molecules with new chemical scaffolds coupled with growth inhibition assay using developing zebrafish embryos. We report the successful identification of a novel lead compound that displays selective inhibitory effects on CDK2 activity, cancer cell proliferation, and tumor progression in vivo. Our approaches should have general applications in developing cell proliferation inhibitors using an efficient combinatorial chemical genetic method and integrated biological assays. The novel cell growth inhibitor we identified should have potential as a cancer therapeutic agent.
Insights
Researchers identified a novel compound that selectively inhibits CDK2 activity, offering potential as a new cancer therapeutic agent by targeting cell proliferation and tumor growth.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Cyclin-dependent kinases (CDKs) regulate cell cycle progression.
- Aberrant CDK activity is implicated in human cancers.
- Developing selective kinase inhibitors is challenging due to conserved ATP binding pockets.
Purpose of the Study:
- To identify novel small molecules as potential cancer therapeutics.
- To develop inhibitors targeting cell proliferation and tumor growth.
- To address the challenge of target selectivity in kinase inhibitor development.
Main Methods:
- Integrated approach combining combinatorial one-pot chemical synthesis.
- Generation of diverse small molecules with novel chemical scaffolds.
- Zebrafish embryo-based growth inhibition assays for screening.
Main Results:
- Successful identification of a novel lead compound.
- Demonstrated selective inhibition of CDK2 activity.
- Inhibition of cancer cell proliferation and tumor progression in vivo.
Conclusions:
- The identified compound shows potential as a cancer therapeutic agent.
- The combinatorial chemical genetic method is effective for discovering cell proliferation inhibitors.
- Further development of this novel inhibitor is warranted for cancer therapy.

