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Updated: Oct 9, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Properties of FDA-approved small molecule protein kinase inhibitors: A 2022 update
1Blue Ridge Institute for Medical Research, 3754 Brevard Road, Suite 106, Box 19, Horse Shoe, NC 28742-8814, United States.
Abstract:
Owing to the dysregulation of protein kinase activity in many diseases including cancer, this enzyme family has become one of the most important drug targets in the 21st century. There are 68 FDA-approved therapeutic agents that target about two dozen different protein kinases and six of these drugs were approved in 2021. Of the approved drugs, twelve target protein-serine/threonine protein kinases, four are directed against dual specificity protein kinases (MEK1/2), thirteen block nonreceptor protein-tyrosine kinases, and 39 target receptor protein-tyrosine kinases. The data indicate that 58 of these drugs are prescribed for the treatment of neoplasms (49 against solid tumors including breast, lung, and colon, five against nonsolid tumors such as leukemias, and four against both solid and nonsolid tumors: acalabrutinib, ibrutinib, imatinib, and midostaurin). Three drugs (baricitinib, tofacitinib, upadacitinib) are used for the treatment of inflammatory diseases including rheumatoid arthritis. Of the 68 approved drugs, eighteen are used in the treatment of multiple diseases. The following six drugs received FDA approval in 2021 for the treatment of these specified diseases: belumosudil (graft vs. host disease), infigratinib (cholangiocarcinomas), mobocertinib and tepotinib (specific forms of non-small cell lung cancer), tivozanib (renal cell carcinoma), and trilaciclib (to decrease chemotherapy-induced myelosuppression). All of the FDA-approved drugs are orally effective with the exception of netarsudil, temsirolimus, and the newly approved trilaciclib. This review summarizes the physicochemical properties of all 68 FDA-approved small molecule protein kinase inhibitors including lipophilic efficiency and ligand efficiency.
Insights
Protein kinases are key drug targets, with 68 FDA-approved inhibitors for cancer and inflammatory diseases. This review details their physicochemical properties, aiding future drug development.
Area of Science:
- Biochemistry
- Pharmacology
- Medicinal Chemistry
Background:
- Protein kinases are crucial enzymes implicated in various diseases, notably cancer, making them significant therapeutic targets.
- The pharmaceutical industry has developed a substantial number of drugs targeting protein kinases, with a notable increase in recent approvals.
Purpose of the Study:
- To review the physicochemical properties of all 68 FDA-approved small molecule protein kinase inhibitors.
- To provide a comprehensive summary of drug properties, including lipophilic efficiency and ligand efficiency, for 68 approved agents.
Main Methods:
- Systematic review of FDA-approved small molecule protein kinase inhibitors.
- Analysis of physicochemical properties, including lipophilic efficiency and ligand efficiency, for each drug.
Main Results:
- Currently, 68 FDA-approved drugs target protein kinases, with 58 used for neoplasms and three for inflammatory conditions.
- Six new protein kinase inhibitors received FDA approval in 2021 for various diseases, including cancers and graft versus host disease.
- Most approved drugs are orally administered, with a few exceptions like netarsudil, temsirolimus, and trilaciclib.
Conclusions:
- The landscape of protein kinase inhibitors is expanding, with ongoing development and approvals for diverse therapeutic areas.
- Understanding the physicochemical properties of these inhibitors is essential for the rational design of future targeted therapies.
- The review provides a valuable resource for researchers and clinicians involved in kinase-targeted drug discovery and treatment.
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