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Anti-cancer effects of celecoxib in head and neck carcinoma
Young-Youn Kim1, Eun-Jin Lee, Yu-Kyoung Kim
1Department of Oral and Maxillofacial Surgery, School of Dentistry, Seoul National University, Seoul 110-749, Korea.
Abstract:
Although many studies highlighted cyclooxygenase2 (COX2) inhibition as a promising therapeutic strategy for cancer, more evidence is needed for clinical application. The purpose of this study was to investigate the feasibility of COX2 inhibition as a strategic treatment modality for head and neck carcinoma (HNC). We tested COX2 inhibitor, celecoxib in six types of HNC cells and analyzed the expression changes in proteins related to angiogenesis and apoptosis in vitro. We also evaluated proliferation, gelatinolysis and in vitro invasion. We used a hamster carcinogenesis model and a mouse tumorigenesis model for the in vivo evaluation of COX2 inhibition. We performed immunohistochemistry to assess changes in the expression of COX2, survivin and angiogenesis. Celecoxib administration caused decreases in the expressions of COX2, VEGF and survivin in vitro. Proliferation, in vitro invasion and gelatinolytic activity were reduced in HNC cell lines, but the effect was inconsistent across lines. COX2 inhibition retarded oral carcinogenesis from an early carcinogenic stage with increased apoptosis and decreased survivin expression. COX2 inhibition did not inhibit tumor growth, even with the COX2 downregulation and decrease in neovascularization. We conclude that COX2 inhibition has a chemopreventive effect, but its application as a treatment of HNC in a clinical setting still requires further research to overcome its limited anti-cancer effects.
Insights
Cyclooxygenase-2 (COX2) inhibition showed chemopreventive effects against head and neck cancer by reducing early carcinogenesis. However, its direct anti-cancer efficacy requires further investigation for clinical use.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Cyclooxygenase-2 (COX2) inhibition is a potential cancer therapy.
- Clinical application for head and neck carcinoma (HNC) requires more evidence.
Purpose of the Study:
- Investigate COX2 inhibition feasibility for HNC treatment.
- Evaluate celecoxib's effects on HNC cell lines and in vivo models.
Main Methods:
- In vitro analysis of HNC cell lines treated with celecoxib.
- In vivo studies using hamster and mouse carcinogenesis models.
- Immunohistochemistry to assess protein expression changes.
Main Results:
- Celecoxib reduced COX2, VEGF, and survivin expression in vitro.
- In vitro proliferation, invasion, and gelatinolysis were inconsistently reduced.
- COX2 inhibition retarded oral carcinogenesis with increased apoptosis and decreased survivin.
- Tumor growth was not inhibited despite COX2 downregulation and reduced neovascularization.
Conclusions:
- COX2 inhibition demonstrates chemopreventive potential in HNC.
- Clinical application as an anti-cancer treatment for HNC needs further research due to limited efficacy.
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