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Termination of piroxicam treatment and the occurrence of azoxymethane-induced colon cancer in rats.

Piroxicam has been shown to prevent azoxymethane (AOM)-induced colon cancer when administered during the promotion/ progression phase. The requirement for continued treatment with piroxicam in order to maintain prevention of colon cancer was investigated. Male F344 rats were administered 15 mg/kg AOM at 7 and 8 weeks of age and started to receive piroxicam (200 mg/kg) in their diet at 11 weeks after the second dose of AOM. Piroxicam was removed from the diet of some of the rats at weeks 19 and 28 and the animals were held until week 47. Other rats continued to receive piroxicam until sacrificed at week 47. Treatment with piroxicam from week 11-47 reduced the yield of colon tumors. When treatment was terminated at week 19 or 28 the yield of tumors at week 47 was not reduced. Within 1 week of the start of piroxicam treatment, the number of aberrant crypt foci (ACF)/animal was decreased. Termination of treatment resulted in the recurrence of ACF. Apoptosis in adenomas was increased when piroxicam treatment was continued to week 47 but not when treatment was terminated earlier at week 19 or 28. The proliferating cell nuclear antigen-labeling index in adenomas was not affected by piroxicam even when treatment was from week 11 to 47. In summary, termination of treatment resulted in the occurrence of ACF and colon cancer indicating that prevention by piroxicam was reversible. Furthermore, enhancement of apoptosis and not decreased cell proliferation correlated with prevention of colon cancer.

Adenocarcinoma↗

Suppression of azoxymethane-induced colonic aberrant crypt foci by a nitric oxide synthase inhibitor.

Nitric oxide synthase (NOS), an important bioregulator of a variety of biological processes, is overexpressed in colonic tumors of humans and rodents. In this study, effects of L-N(G)-nitroarginine methyl ester (L-NAME), a NOS inhibitor, on development of aberrant crypt foci (ACF) induced by azoxymethane (AOM) in F344 male rats were investigated. Six-week-old male F344 rats were fed diets containing 0 or 100 ppm L-NAME, and given s.c. injections of AOM at 15 mg/kg body wt, once a week for 2 weeks. At 17 weeks of age, all animals were sacrificed and their colons were evaluated for numbers of ACF. Feeding of 100 ppm L-NAME inhibited the development of ACF in different sizes by 24-39%, those containing four or more crypts being most markedly affected. Assessment of silver-stained nucleolar organizer regions protein (AgNORs)/nucleus further revealed a 44% reduction by administration of L-NAME. These results suggest that the NOS inhibitor, L-NAME, may be an effective chemopreventive agent against colon carcinogenesis due to depression of cell proliferation.

Animals↗

Inhibitory effects of feeding with carrots or (-)-falcarinol on development of azoxymethane-induced preneoplastic lesions in the rat colon.

The effects of intake of dietary amounts of carrot or corresponding amounts of (-)-(3R)-falcarinol from carrots on development of azoxymethane (AOM)-induced colon preneoplastic lesions were examined in male BDIX rats. Three groups of eight AOM-treated rats were fed the standard rat feed Altromin supplemented with either 10% (w/w) freeze-dried carrots with a natural content of 35 mug falcarinol/g, 10% maize starch to which was added 35 mug falcarinol/g purified from carrots, or 10% maize starch (control). After 18 weeks, the animals were euthanized and the colon was examined for tumors and aberrant crypt foci (ACF), which were classified into four size classes. Although the number of small ACF was unaffected by the feeding treatments, the numbers of lesions as a function of increasing size class decreased significantly in the rats that received one of the two experimental treatments, as compared with the control treatment. This indicates that the dietary treatments with carrot and falcarinol delayed or retarded the development of large ACF and tumors. The present study provides a new perspective on the known epidemiological associations between high intake of carrots and reduced incidence of cancers.

Alkynes↗

Suppression by nimesulide of bombesin-enhanced peritoneal metastasis of intestinal adenocarcinomas induced by azoxymethane in Wistar rats.

The effects of the cyclooxygenase (COX)-2 inhibitor nimesulide on bombesin-enhanced peritoneal metastasis of azoxymethane (AOM)-induced intestinal adenocarcinomas were investigated in male Wistar rats. From the beginning of the study, the rats were given 10 weekly s.c. injections of AOM (7.4 mg/kg body weight) and s.c. injections of bombesin (40 microg/kg body weight) every other day. From week 16, the rats were given chow pellets containing 200 ppm or 400 ppm nimesulide ad libitum until termination of the study at week 45. Nimesulide at the higher dose significantly decreased the incidence of bombesin-enhanced metastasis to the peritoneum at week 45, although its administration had little or no effect on the location, histologic type, depth of involvement or infiltrating growth patterns of the tumors. Nimesulide also significantly decreased the incidence of bombesin-enhanced lymphatic vessel invasion by adenocarcinomas. Finally, it also inhibited bombesin-induced matrix metalloproteinase (MMP)-9 and pro-MMP-9 inductions. Our findings indicate that nimesulide may inhibit cancer metastasis through inhibition of pro-MMP-9 and MMP-9 inductions.

Adenocarcinoma↗

Enhancement by neurotensin of experimental carcinogenesis induced in rat colon by azoxymethane.

The effects of neurotensin on the incidence, number, size, and histology of colon tumours induced by azoxymethane (AOM) were investigated in Wistar rats. Rats were given 10 weekly injections of AOM (7.4 mg kg-1 body weight) and were also given 200 micrograms kg-1 of neurotensin in depot form every other day until the end of the experiment. In week 40, prolonged alternate-day administration of neurotensin resulted in significant increases in the number and size of colon tumours and the incidence of adenocarcinomas penetrating muscle layer and deeper. However, neurotensin did not influence the incidence of tumour-bearing rats and the histological appearance of colon tumours. Administration of neurotensin caused a significant increase in the labelling index of the colon cancers but not that of colon mucosa. These findings indicate that neurotensin enhanced the growth of colon tumours, possibly related to its effect in increasing proliferation of colon cancer cells.

Adenocarcinoma↗

Mutations of the Apc gene in experimental colorectal carcinogenesis induced by azoxymethane in F344 rats.

We investigated in the rat the role of the Apc gene, which is mutated in familial adenomatous polyposis and sporadic colon cancer in the process leading from normal colonic mucosa to aberrant crypt foci (ACF) and finally to adenomas and adenocarcinomas. We analysed mutations in exon 15 of the rat Apc gene using in vitro synthesized protein assay in 66 ACF and in 28 colon tumours induced by azoxymethane. No Apc mutations were found in ACF, whereas five mutations were found in the tumours. The data suggest that mutations of the Apc gene are associated with the transition from ACF to adenoma and adenocarcinoma and not from normal mucosa to ACF.

Adenocarcinoma↗

Deletion of functional gastrin gene markedly increases colon carcinogenesis in response to azoxymethane in mice.

BACKGROUND & AIMS: We recently reported that transgenic mice overexpressing progastrin were at a higher risk for developing colon cancers in response to azoxymethane (AOM), whereas mice overexpressing gastrin-17 were at a reduced risk. To examine further the role of gastrins in colon carcinogenesis, we generated gastrin gene knockout mice (GAS-KO). METHODS: The height and proliferative index (PI) of colonic crypts were similar in GAS-KO and wild-type (WT) mice, suggesting that the absence of gastrins in GAS-KO mice did not significantly affect the growth of colonic mucosa. GAS-KO and WT mice were treated with AOM for 3-4 weeks; control mice received saline. RESULTS: Colonic proliferation in response to AOM was significantly increased in GAS-KO vs. WT mice. Aberrant crypt foci (ACFs) were similarly increased significantly by approximately 2-5-fold in GAS-KO vs. WT mice after 2 weeks of AOM treatment. Female GAS-KO mice developed adenomas (Ads) and adenocarcinomas (AdCAs) at earlier times ( approximately 10 months) than the male GAS-KO mice and the male and female WT mice ( approximately 12 months). The total numbers of Ads and AdCAs were significantly higher in GAS-KO than in WT mice. CONCLUSIONS: These results suggest the novel possibility that loss of gastrin expression (and hence amidated gastrins) significantly increases susceptibility to colon carcinogenesis in response to AOM. Previous studies with FVB/N transgenic mice similarly suggested a protective role of amidated gastrins against colon carcinogenesis, which supports the present findings of an increase in colon carcinogenesis in GAS-KO mice lacking normal physiological levels of amidated gastrins.

Animals↗

Peroxisome proliferator-activated receptor gamma ligands suppress colon carcinogenesis induced by azoxymethane in mice.

BACKGROUND & AIMS: Peroxisome proliferator-activated receptor gamma (PPARgamma) is known to regulate growth arrest and terminal differentiation of adipocytes and is used clinically as a new class of antidiabetic drugs. Recently, several studies have reported that treatment of cancer cells with PPARgamma ligands induces cell differentiation and apoptosis, suggesting a potential application as chemopreventive agents against carcinogenesis. However, contradictory results have been reported with regards to the biologic role of PPARgamma in carcinogenesis. Tanaka et al.(24) have recently reported the suppressive effect of a PPARgamma ligand, troglitazone (Tro), on the formation of aberrant crypt foci (ACF) in rats. In the present study, 3 different kinds of PPARgamma ligands were subjected to the experiments to confirm their suppressive effects on colon carcinogenesis. METHODS: Three PPARgamma ligands, pioglitazone (Pio) (200 ppm), rosiglitazone (Rosi) (200 ppm), and Tro (1000 ppm) were investigated on the induction of ACF, a putative precancerous lesion of the colon, and colon tumor formation using an azoxymethane (AOM)-induced colon cancer model in BALB/c mice, and dose dependency of a PPARgamma ligand was also examined. RESULTS: PPARgamma ligands reduced the ACF formation by AOM (10 mg/kg body weight) and induction of colon tumors were also markedly suppressed by a continuous feeding of Pio at 200 ppm. CONCLUSIONS: Our findings indicate that PPARgamma ligands are indeed potential chemopreventive agents for colon carcinogenesis.

Animals↗

Effect of azoxymethane and curcumin on transcriptional levels of cyclooxygenase-1 and -2 during initiation of colon carcinogenesis.

BACKGROUND: Curcumin is well documented as an effective colonic chemopreventive agent in preclinical studies. Inhibition of arachidonic acid metabolism has been considered one of anticarcinogenic mechanisms of curcumin. We recently reported resistance of middle-aged F344 male rats to inhibition of azoxymethane (AOM)-induced colonic aberrant crypt foci (ACF) by curcumin (Nutr Cancer, 48, 37-43). It was important to confirm this finding and to find potential mechanisms responsible, as loss of preventive activity of curcumin due to aging was a novel finding, with important implications for human intervention trials. METHODS: To confirm our previous findings, and investigate arachidonic acid metabolism as a potential mechanism of age-related differences in response to curcumin, middle-aged F344 male rats were given AOM injections after being fed their experimental diets, 0.6% curcumin or control diet. Colonic ACF were evaluated and colonic levels of cyclooxygenase (COX)-1 and 2 mRNA and prostaglandin E2 (PGE2) were measured. Next, we investigated the short-term effect of AOM and curcumin on arachidonic acid metabolism in young rats. Six week-old rats were given injections of either AOM or untreated following their experimental diets. Colonic COX-1 and COX-2 mRNA as well as PGE2 levels were measured shortly after AOM treatment. Lastly, three different ages of F344 rats were treated with either AOM or saline, and colonic COX-1 and COX-2 mRNA levels were measured shortly after the injections to find if aging alters the effect of AOM on COX mRNA expression. RESULTS: In middle-aged rats, dietary curcumin did not reduce the number of ACF and surprisingly increased colonic levels of COX-2 mRNA. Colonic COX-2 and PGE2 levels were also significantly increased in young rats fed curcumin after AOM injections. Interestingly, AOM did not affect COX-2 but decreased COX-1 expression in all ages. CONCLUSIONS: Our study suggests that during initiation, AOM inhibits colonic COX-1 expression without affecting COX-2 and dietary curcumin may increase COX-2 expression to compensate AOM-induced reduction of COX-1 expression.

Aging↗

Granulocyte marker protein is increased in stools from rats with azoxymethane-induced colon cancer.

BACKGROUND: We wanted to investigate the relationship between the fecal levels of granulocyte marker protein (GMP) and the presence of aberrant crypt foci (ACF) and colorectal cancer in rats given injections of azoxymethane (AOM) and fed either of two different diets, a basal diet plus 20% corn oil or 20% beef suet, respectively. METHODS: The rats received intraperitoneal injections of AOM, 15 mg/kg, once weekly for 6 weeks and were killed after 22 weeks. RESULTS: In the group fed beef suet 17 of 19 rats developed colon cancer, whereas in the group fed corn oil 4 of 14 rats developed cancer. None of the 20 control rats fed either the beef suet or corn oil diets developed cancer or aberrant crypts, and GMP remained unchanged. Surprisingly, the numbers of ACF were significantly higher (467 versus 295; P = 0.004) in the group fed corn oil than in the group fed beef suet. On the other hand, the size (crypts/focus) of the ACF was significantly higher (P = 0.03) in the beef suet group. Furthermore, fecal GMP was significantly higher in the beef suet group than in the corn oil group after 18 weeks, and this difference increased further toward the end of the study. GMP was greatly increased in all rats with colorectal cancer. CONCLUSIONS: Fecal GMP may have provided us with a valuable tool for further studies of the induction and progression of neoplasia in rats and, possibly, in mice, since the anti-GMP antibody cross-reacts with feces extracts from mice.

Animals↗

Effect of tea on the formation of DNA adducts by azoxymethane.

1. The effect of black tea on the conversion of azoxymethane (AOM) to DNA reactive metabolites was studied in four groups of the male F344 rat. Each received 1.25% solutions of tea for 2 or 6 weeks, and simultaneous controls drank water. All rats were injected s.c. twice with 15 mg/kg AOM after the first or fifth week respectively, on tea or water, and again 1 week later. Groups were killed 6 h after the last dose, or 18 h later. The liver and colon were rapidly removed and rinsed with buffer solution, pH 7.0. DNA was isolated from these tissues, and DNA methylation was examined by the typical fluorescence of 06-methylated and N-7-methylated products, separated by HPLC. 2. Two or 6 weeks of tea intake failed to affect significantly the formation of alkylated DNA from liver and colon compared with controls drinking water. Only in the group of rats on tea for 6 weeks, and killed 6 h after the last dose of AOM, was the O6-methyldG and 7-methyldG decreased in DNA obtained from colon. 3. Thus, solutions of tea affected the formation of alkylated products in DNA of the colon of rats given AOM only at one time point, but did not do so under most other experimental conditions. The underlying mechanism is based on our previous finding that tea does not affect cytochrome P4502E1 that our group established to be the enzyme metabolizing AOM.

Alkylation↗

Effect of simple phenolic compounds on azoxymethane-induced aberrant crypt foci in rat colon.

Because complex mixtures of plant polyphenols exert anticancer activity in animal models, we investigated whether low-molecular-weight natural phenolic compounds (2-OH-coumaric acid, 3-OH-coumaric acid, 4-OH-coumaric acid, 3-OH-flavone, 7-OH-flavone, 4-OH-benzoic acid, 3-OH-benzoic acid, and 2,3-OH-benzoic acid) affect azoxymethane (AOM)-induced aberrant crypt foci (ACF), which have been suggested to represent preneoplastic lesions, in the colon of rats. Male Fischer 344 rats were fed diets supplemented with 0.1% (wt/wt) of the different phenolic compounds, and after 2 wk they were treated twice (1 wk apart) with AOM (15 mg/kg s.c.); the dietary treatment continued until sacrifice, 7 wk after the first injection with AOM. The results showed that none of these phenolic compounds exerted chemopreventive activity on the ACF assay. On the contrary, 3-OH-flavone slightly, although significantly, increased (P < 0.05), the number of ACF per colon [157 +/- 7 and 198 +/- 14 (SE) in control and 3-OH-flavone groups, respectively, n = 10]. We also found that the number of "large" ACF was significantly increased in the group treated with 4-OH-benzoic acid. In conclusion, none of the phenolic compounds tested demonstrated a suppressive action on ACF induction by AOM.

Animals↗

Effect of dietary Laminaria angustata (brown seaweed) on azoxymethane-induced intestinal carcinogenesis in male F344 rats.

The effect of dietary Laminaria angustata (brown seaweed) on azoxymethane (AOM)-induced intestinal carcinogenesis was studied in male F344 rats. Five-week old rats were fed semipurified diets containing 0 and 10% seaweed. When the rats were 7 weeks old, all except the vehicle-treated groups received weekly subcutaneous injections of AOM in normal saline for two weeks (20 mg/kg body wt/week). All animals were fed the experimental diets until the termination of the experiment, which was 28 weeks after the last AOM injection. The incidence (percent of animals with tumors) and multiplicity (tumors/animal) of small intestinal tumors did not differ significantly between the control and seaweed groups. The incidence and multiplicity of colon adenomas along with the size of colon tumors were increased in rats fed the seaweed diet compared with those fed the control diet. Dietary seaweed had no major effect on the concentration of fecal bile acids; however, the concentration of fecal cholesterol and total neutral sterols was decreased in the seaweed group. These results suggest that dietary seaweed increases the risk for colon tumors.

Adenocarcinoma↗

Effect of dietary benzylselenocyanate on azoxymethane-induced colon carcinogenesis in male F344 rats.

The effect of dietary benzylselenocyanate (BSC) and its analogue, benzylthiocyanate (BTC), and sodium selenite during the initiation and postinitiation phases of azoxymethane (AOM)-induced intestinal carcinogenesis was studied in male F344 rats. Animals intended for initiation study were fed the high-fat (23.5% corn oil) diets containing 25, 50, and 100 ppm BSC (10, 20, and 40 ppm selenium, respectively) and 100 ppm BTC and 4 ppm selenium (as sodium selenite in drinking water); those intended for postinitiation study were fed the high-fat control diet. Two weeks later, all animals were injected subcutaneously with AOM (15 mg/kg body wt) once weekly for two weeks. Three days after the last AOM injection, animals in the initiation and postinitiation studies were transferred respectively to the high-fat diet and high-fat diets containing BSC and BTC and sodium selenite in drinking water. This regimen was continued until 36 weeks post-AOM injection. BSC inhibited the small intestinal and colon adenocarcinoma incidence and multiplicity of colon adenocarcinomas when fed during the postinitiation phase. Sodium selenite inhibited the incidence and multiplicity of colon adenocarcinomas only during the postinitiation phase. BTC had no inhibitory effect when fed during the initiation and postinitiation phases. The colonic mucosal ornithine decarboxylase activity was significantly inhibited by the administration of all three compounds, BSC (78%), BTC (62%), and sodium selenite (44%). It is concluded that the BSC has an inhibitory effect on the intestinal carcinogenesis in animals fed the high-fat diet.

Analysis of Variance↗

The effect of treadmill exercise on azoxymethane-induced intestinal neoplasia in the male Fischer rat on two different high-fat diets.

A total of 120 eight-week-old male rats were exposed to azoxymethane (15 mg/kg body wt in saline s.c.) on Days 1, 4, and 8. Two days after the last injection of carcinogen, the rats were randomized into four experimental groups: two groups were given a chow high in corn oil (23% corn oil) and two groups a chow high in coconut oil (21% coconut oil and 2% corn oil). One group on each chow was kept sedentary, and one group was exposed to moderate exercise, running 2 km/day on weekdays for 38 weeks. At the end of the experiment, the exercising and sedentary rats fed coconut oil were significantly heavier than those fed corn oil. Among the rats fed the high-fat corn oil diet, exercise reduced the number of animals developing carcinomas in the colon (sedentary, 10; exercise, 0) and in the small intestine (sedentary, 5; exercise, 0). The same tendency was observed in the rats fed the coconut oil diet: colon (sedentary, 6; exercise, 3) and small intestine (sedentary, 3; exercise, 2). In the sedentary rats fed the high corn oil diet, 16 intestinal carcinomas were recorded; none were found in the exercised group. In the rats fed the high coconut oil diet, nine carcinomas were recorded in the sedentary groups as opposed to five in the exercised rats. Rats fed the high-fat coconut oil developed significantly fewer neoplasms than the rats fed the equally high-fat corn oil diet.

Animals↗

Effects of a high-fat diet on azoxymethane-induced aberrant crypt foci and fecal biochemistry and microbial activity in rats.

To shed light on the association of dietary fat with the development of colon cancer, we studied the ability of azoxymethane (AOM) to induce aberrant crypt foci (ACF) and biochemical changes in rats fed high- or normal-fat diets. Six-week-old male Fischer 344 rats were placed on a high-fat [7% (wt/wt) soybean oil + 15% (wt/wt) beef tallow] or a normal-fat (7% soybean oil, AIN-93G) diet. Rats fed each of these diets were given two weekly subcutaneous injections of AOM (15 mg/kg body wt) or saline at seven and eight weeks of age. Fecal samples were obtained at 10 weeks of age, and animals were sacrificed for ACF scoring and analysis of cecal contents at 13 weeks of age. We observed greater numbers of ACF in the high- than in the low-fat group. Biochemically, rats fed the high-fat diet showed dramatically elevated fecal and cecal long-chain free fatty acid levels and intestinal alkaline phosphatase activity. These animals also showed increased cholesterol and decreased coprostanol levels. We did not detect significant differences in the fecal and cecal concentrations of total and soluble bile acids or total neutral sterols (cholesterol + coprostanol) between the two groups. Thus a high-fat diet does show certain striking effects on colon biochemistry in rats.

Alkaline Phosphatase↗

Effect of soya bean saponins on azoxymethane-induced preneoplastic lesions in the colon of mice.

The effect of saponins isolated from soya bean flour on the incidence of aberrant crypt foci (ACF) induced by azoxymethane (AOM) in the colonic wall of CF1 mice was investigated. Four weekly injections of AOM, a known colon carcinogen, were administered to mice. One week after the last injection, mice were placed on an AIN-76 diet supplemented with 3% soya bean saponins or continued on the basal AIN-76 diet. Another group of mice was placed on the saponin diet without AOM initiation to observe the effect of saponins on the growth characteristics of mice. Dietary intake of soya saponins significantly reduced the incidence of ACF at the end of 14 weeks (postinitiation). Noninitiated mice maintained on a similar soya bean saponin-supplemented diet did not show any adverse effects on the growth and overall health of the animals. These findings suggest that soya bean saponins can play an important role in inhibiting the incidence of ACF in the colon of mice.

Animals↗

Modification of azoxymethane intestinal carcinogenesis in rats by feeding sucrose boluses, pasta, and glucose.

We studied whether repeated boluses of sucrose or diets containing carbohydrates with a variable glycemic index (GI) affect intestinal carcinogenesis in rats. Male F344 rats were treated twice (1 wk apart) with 15 mg/kg sc azoxymethane (AOM) and then divided into four experimental dietary groups with different carbohydrate composition and administration schedules: the sucrose group was fed 44% (wt/wt) sucrose (GI = 65), the bolus group was fed sucrose as carbohydrate and 43 boluses of sucrose (10-15 g/kg) at various time intervals, the pasta group was fed pasta [77% (wt/wt) cooked pasta, GI = 55], and the glucose group was fed 44% (wt/wt) glucose (GI = 97). All nutrients, including carbohydrates, were provided in similar amount to the different groups. The experiment was terminated between Day 230 and Day 245 after AOM administration. At this time the pasta group had significantly higher cecal short-chain fatty acids than the other groups. Intestinal adenomas and cancers occurred with the same frequency in the bolus, sucrose, and glucose groups. On the contrary, we observed a significant decrease (p = 0.03) in the cumulative incidence of intestinal adenomas, but not adenocarcinomas, in the pasta group compared with the sucrose group (intestinal adenoma incidence in the pasta group was 31% compared with 63% in the sucrose group, 46% in the bolus group, and 37% in the glucose group). In conclusion, these results do not support the hypothesis that sucrose boluses or carbohydrates with a high GI stimulate colon carcinogenesis, but they indicate that foods such as pasta may exert a protective effect.

Adenoma↗