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Novel selective Cox-2 inhibitors induce apoptosis in Caco-2 colorectal carcinoma cell line
Reza Entezari Heravi1, Farzin Hadizadeh, Mojtaba Sankian
1Biotechnology Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
Abstract:
The cyclooxygenase-2 (COX-2) inhibitors including celecoxib inhibit cell growth and induce apoptosis in cancer cells. As COX-2 is over expressed in solid tumors such as colorectal cancer, it can be a suitable target for cancer treatment studies. In this study we designed and synthesized 4,5-bisaryl imidazolyl imidazoles as novel COX-2 inhibitors and evaluated their apoptosis inducing activities. The ability of our synthetic compounds to inhibit ovine COX-1 and COX-2 was determined using a colorimetric method. The effects of these COX-2 inhibitors and celecoxib on the proliferation of Caco-2 cells were evaluated by MTT assay. Cell apoptosis was determined by flow cytometry and DNA fragmentation assay. cDNA microarray technique was used to evaluate the effects of these synthetic compounds on 112 genes involved in apoptosis pathways. The expression of five apoptosis-related genes Bak-1, Bcl-x, BIRC (Survivin), TNFSF10 and CASP3 were evaluated by quantitative real-time PCR. Among our synthetic compounds (3a-c), 4,5-bis(4-methoxyphenyl)-1H-imidazol-2-yl derivative (compound 3c) exhibited the highest COX-1/COX-2 selectivity index (SI=262.9) and lowest growth inhibitory concentration (IC(50)=21.20μM). In addition, compounds 3a-c could up-regulate pro-apoptotic genes and down-regulate anti-apoptotic genes. So, these synthetic compounds seem to be inducers of apoptosis in Caco-2 cell line. This study indicates that 4,5-bisaryl imidazolyl imidazole is a suitable scaffold to design COX-2 inhibitors and 4,5-bis(4-methoxyphenyl)-1H-imidazol-2-yl derivative exhibited highly COX-2 inhibitory potency and selectivity even more than celecoxib. It seems that it could induce apoptosis in Caco-2 colorectal carcinoma cell line.
Insights
Novel imidazole derivatives were synthesized as cyclooxygenase-2 (COX-2) inhibitors. Compound 3c showed high COX-2 selectivity and induced apoptosis in colorectal cancer cells, outperforming celecoxib.
Area of Science:
- Medicinal Chemistry
- Cancer Biology
- Pharmacology
Background:
- Cyclooxygenase-2 (COX-2) is overexpressed in solid tumors, including colorectal cancer, making it a potential therapeutic target.
- COX-2 inhibitors, such as celecoxib, demonstrate efficacy in inhibiting cancer cell growth and inducing apoptosis.
Purpose of the Study:
- To design and synthesize novel 4,5-bisaryl imidazolyl imidazole derivatives as potential COX-2 inhibitors.
- To evaluate the apoptosis-inducing activities of these novel compounds in colorectal cancer cells.
Main Methods:
- Synthesis of 4,5-bisaryl imidazolyl imidazole derivatives.
- Inhibition assays for ovine COX-1 and COX-2 using a colorimetric method.
- Cell proliferation assay (MTT) on Caco-2 cells.
- Apoptosis determination via flow cytometry and DNA fragmentation.
- Gene expression analysis (cDNA microarray and qRT-PCR) of apoptosis-related genes.
Main Results:
- Compound 3c (4,5-bis(4-methoxyphenyl)-1H-imidazol-2-yl derivative) exhibited the highest COX-1/COX-2 selectivity index (262.9) and lowest IC(50) (21.20μM).
- Synthetic compounds (3a-c) demonstrated potent COX-2 inhibition and induced apoptosis in Caco-2 cells.
- Compounds modulated apoptosis pathways by up-regulating pro-apoptotic and down-regulating anti-apoptotic genes.
Conclusions:
- 4,5-bisaryl imidazolyl imidazole serves as a promising scaffold for developing COX-2 inhibitors.
- Compound 3c displays superior COX-2 inhibitory potency and selectivity compared to celecoxib.
- The synthesized compounds effectively induce apoptosis in the Caco-2 colorectal carcinoma cell line.
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