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Published on: August 5, 2022
First-in-class multifunctional TYMS nonclassical antifolate inhibitor with potent in vivo activity that prolongs
Maria V Guijarro1, Patrick C Kellish1, Peter E Dib1
1Department of Anatomy and Cell Biology.
A novel small molecule inhibitor of thymidylate synthase (TYMS) shows enhanced antitumor activity and improved survival in mouse models without inducing drug resistance. This nonclassical antifolate offers a promising new avenue for cancer therapy with a favorable safety profile.
Area of Science:
- Oncology
- Pharmacology
- Biochemistry
Background:
- Current thymidylate synthase (TYMS) inhibitors are limited by tumor drug resistance mechanisms, such as TYMS overexpression.
- Existing antifolates can be circumvented by cancer cells through alterations in folate metabolism.
- There is a need for novel TYMS inhibitors with improved efficacy and reduced resistance potential.
Purpose of the Study:
- To develop and characterize a novel small molecule inhibitor of TYMS.
- To evaluate the antitumor activity and safety profile of this new compound.
- To elucidate the mechanism of action and identify key structural features for optimal inhibition.
Main Methods:
- Synthesis and characterization of a novel small molecule inhibitor.
- In vitro and in vivo evaluation of antitumor activity in pancreatic xenograft and genetically engineered mouse models.
- Pharmacokinetic and pharmacodynamic studies, including assessment of TYMS expression and folate pathway alterations.
- Structure-activity relationship studies using a series of analogs.
Main Results:
- The novel inhibitor demonstrated enhanced antitumor activity compared to current fluoropyrimidines and antifolates.
- The compound did not induce TYMS overexpression and extended survival in preclinical models.
- Mechanistic studies confirmed it as a multifunctional nonclassical antifolate, inhibiting both TYMS and dihydrofolate reductase.
- The inhibitor was well tolerated and effective via both oral and intraperitoneal administration.
Conclusions:
- Nonclassical antifolate inhibitors targeting thymidylate biosynthesis represent a promising strategy for enhanced cancer therapy.
- This novel compound offers a favorable safety profile and overcomes resistance mechanisms associated with classical inhibitors.
- Further development of these inhibitors holds potential for improved patient outcomes in various cancers.
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