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Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Celecoxib analogs that lack COX-2 inhibitory function: preclinical development of novel anticancer drugs
Axel H Schönthal1, Thomas C Chen, Florence M Hofman
1University of Southern California, Department of Molecular Microbiology and Immunology, 2011 Zonal Avenue, HMR-405, Los Angeles, California, CA 90089-9094, USA. schontha@usc.edu
Abstract:
Celecoxib is an NSAID that was developed as a selective inhibitor of COX-2 and approved by the FDA for the treatment of various forms of arthritis and the management of acute or chronic pain. In addition, it was more recently approved as an oral adjunct to prevent colon cancer development in patients with familial adenomatous polyposis and is presently being investigated for its chemotherapeutic potential in the therapy of advanced cancers. However, in laboratory studies it was discovered that celecoxib was able to suppress tumor growth in the absence of any apparent involvement of COX-2, and additional pharmacologic activities associated with this drug were found. Intriguingly, the two pharmacologic effects, inhibition of COX-2 and suppression of tumor growth, were found to reside in different structural aspects of the celecoxib molecule and, therefore, could be separated. This dualism enabled the synthesis of close structural analogs of celecoxib that exhibited increased antitumor potency in the absence of COX-2 inhibition. In theory, such compounds should be superior to celecoxib for antitumor purposes because they might reduce gastrointestinal and cardiovascular risks and the life-threatening side effects that appear during the long-term use of selective COX-2 inhibitors. In this review, the authors present the status of preclinical development of anticancer analogs of celecoxib that are COX-2 inactive, with an emphasis on 2,5-dimethyl-celecoxib (DMC) and OSU-03012.
Insights
New celecoxib analogs show potent anticancer effects independent of COX-2 inhibition. These novel compounds may offer safer, more effective cancer therapies by reducing side effects associated with traditional NSAIDs.
Area of Science:
- Oncology
- Pharmacology
- Drug Development
Background:
- Celecoxib, a selective COX-2 inhibitor, treats arthritis and pain, and prevents colon cancer.
- Celecoxib also exhibits anti-tumor properties independent of COX-2 inhibition.
- These dual activities stem from distinct molecular structures within celecoxib.
Purpose of the Study:
- To review the preclinical development of novel celecoxib analogs.
- To highlight compounds with potent anti-cancer activity and no COX-2 inhibition.
- To discuss potential advantages over celecoxib for cancer therapy.
Main Methods:
- Review of preclinical studies on celecoxib analogs.
- Focus on COX-2 inactive compounds like 2,5-dimethyl-celecoxib (DMC) and OSU-03012.
- Evaluation of anti-tumor potency and potential side effect profiles.
Main Results:
- Celecoxib analogs were synthesized with enhanced anti-tumor potency.
- These analogs lack COX-2 inhibitory activity.
- Compounds like DMC and OSU-03012 demonstrate significant preclinical anti-cancer effects.
Conclusions:
- COX-2 inactive celecoxib analogs represent a promising new class of anti-cancer agents.
- Separating anti-tumor activity from COX-2 inhibition may reduce toxicity.
- Further development of these analogs could lead to improved cancer treatments with fewer side effects.
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