Cancer Mechanisms and Therapy Open access Peer reviewed

Pyridopyrimidines and Pyridopyrimidinones as Kinase-Targeted Anticancer Agents: Medicinal Chemistry and Mechanistic Insights

Ankush Kumar, Rajwinder Kaur, Bhupinder Kumar, Rohit Bhatia

Molecules | Aug 22, 2026

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Overall, pyridopyrimidine- and pyridopyrimidinones-based compounds continue to show great promise as potential anticancer agents and further research combining synthetic chemistry, biological studies, and computational approaches may lead to the development of more effective and safer drugs in the future.

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Pyridopyrimidine is an important heterocyclic scaffold widely explored in anticancer drug discovery. Its structural similarity to purine enables effective interaction with various biological targets, mainly kinases involved in cancer progression. This manuscript presents recent developments reported between 2021 and 2026, focusing on the biological evaluation, and structure–activity relationships of pyridopyrimidine derivatives. Many of these synthesized compounds act as inhibitors of key targets such as EGFR, CDK4/6, and the PI3K/mTOR pathway, which are closely associated with tumor growth, survival, and resistance mechanisms. Other targets such as ATR and PIM are also explored. Recent studies show that structural modifications, including substitution on the core ring and hybridization with pharmacologically active moieties like triazoles and thiazolidinediones, significantly improve anticancer activity. Several derivatives have demonstrated strong antiproliferative effects against different cancer cell lines and are capable of inducing apoptosis and cell cycle arrest. In addition, molecular docking and other computational studies support their binding efficiency and help explain their mechanisms of action. There is also increasing interest in the development of dual-target or multi-target inhibitors to overcome drug resistance and enhance therapeutic effectiveness. Overall, pyridopyrimidine- and pyridopyrimidinones-based compounds continue to show great promise as potential anticancer agents. Further research combining synthetic chemistry, biological studies, and computational approaches may lead to the development of more effective and safer drugs in the future.

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Ankush Kumar

first | Chitkara University | ORCID 0000-0001-6212-9457

Rajwinder Kaur

middle | Chitkara University | ORCID 0000-0002-1697-9562

Bhupinder Kumar

middle | Hemwati Nandan Bahuguna Garhwal University | ORCID 0000-0002-9268-6294

Rohit Bhatia

last | Chitkara University | ORCID 0000-0003-4194-8749

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BibTeX

@article{Kumar2026Pyridopyrimidines,
  title = {Pyridopyrimidines and Pyridopyrimidinones as Kinase-Targeted Anticancer Agents: Medicinal Chemistry and Mechanistic Insights},
  author = {Ankush Kumar and Rajwinder Kaur and Bhupinder Kumar and Rohit Bhatia},
  journal = {Molecules},
  year = {2026},
  doi = {10.3390/molecules31172944},
  url = {https://doi.org/10.3390/molecules31172944}
}

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