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Updated: Sep 29, 2026

Non-invasive Assessment of the Efficacy of New Therapeutics for Intestinal Pathologies Using Serial Endoscopic Imaging of Live Mice
Published on: March 10, 2015
Inhibitory effects of mofezolac, a cyclooxygenase-1 selective inhibitor, on intestinal carcinogenesis
Tomohiro Kitamura1, Toshihiko Kawamori, Naoaki Uchiya
1Cancer Prevention Division, National Cancer Center Research Institute, 1-1 Tsukiji 5-chome, Chuo-ku, Tokyo 104-0045, Japan.
Abstract:
Cyclooxygenase (COX)-2, one enzyme isoform responsible for producing prostanoids from arachidonic acid, contributes to colon carcinogenesis. Recently, genetic disruption of COX-1, the other isoform, was shown to decrease the number of intestinal polyps and prostaglandin E(2) levels in intestinal mucosa, like the case with COX-2 gene disruption, in Min mice. We therefore investigated whether a COX-1 selective inhibitor, mofezolac, suppresses intestinal carcinogenesis in rodents. F344 male rats, receiving azoxymethane (AOM, 15 mg/kg body wt) s.c. injections at 5 and 6 weeks of age, were fed a diet containing 600 or 1200 p.p.m. mofezolac for 4 weeks. The number of aberrant crypt foci (ACFs) per rat and the bromodeoxyuridine labeling index of the crypt epithelium were dose-dependently decreased by administration of mofezolac, the value for the former at 1200 p.p.m. being 60% of control value. When Apc gene knockout mice (APC1309 mice) were given 600 or 1200 p.p.m. mofezolac in their diet for 8 weeks, the numbers of intestinal polyps were also dose-dependently decreased, with reduction to 59% of that in the control diet group at the higher dose. Nimesulide, a COX-2 selective inhibitor used as positive control, showed similar suppressive effects on the development of ACFs in AOM-treated rats and polyps in Apc gene knockout mice. The data indicate that both COX-1 and COX-2 can contribute to intestinal tumorigenesis.
Insights
This study reveals that both cyclooxygenase-1 (COX-1) and cyclooxygenase-2 (COX-2) inhibitors can suppress intestinal tumorigenesis. Mofezolac, a COX-1 inhibitor, reduced aberrant crypt foci and polyps in rodent models, indicating dual roles in cancer development.
Area of Science:
- Oncology
- Gastroenterology
- Pharmacology
Background:
- Cyclooxygenase-2 (COX-2) is implicated in colon cancer development.
- Recent studies suggest cyclooxygenase-1 (COX-1) also plays a role in intestinal polyp formation.
Purpose of the Study:
- To investigate the efficacy of mofezolac, a selective COX-1 inhibitor, in suppressing intestinal carcinogenesis in rodent models.
- To compare the effects of COX-1 inhibition with COX-2 inhibition in intestinal tumorigenesis.
Main Methods:
- Azoxymethane (AOM)-induced aberrant crypt foci (ACFs) in F344 male rats treated with mofezolac.
- Intestinal polyp development in Apc gene knockout (APC1309) mice fed a mofezolac-containing diet.
- Nimesulide, a COX-2 selective inhibitor, was used as a positive control.
Main Results:
- Mofezolac administration dose-dependently decreased the number of ACFs and crypt epithelial cell proliferation in rats.
- Mofezolac significantly reduced intestinal polyp numbers in APC1309 mice in a dose-dependent manner.
- Both mofezolac (COX-1 inhibitor) and nimesulide (COX-2 inhibitor) demonstrated suppressive effects on intestinal tumorigenesis.
Conclusions:
- Both COX-1 and COX-2 enzymes contribute to intestinal tumorigenesis.
- Targeting COX-1 with selective inhibitors like mofezolac may represent a therapeutic strategy for preventing intestinal cancer.
- These findings highlight the potential of dual COX inhibition in cancer chemoprevention.
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