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Immunosuppression in primary liver and colon tumor induction with N-hydroxy-N-2-fluorenylacetamide and azoxymethane.

The question was examined as to whether immunosuppression in a rat model system would affect the carcinogenic processes leading to tumors in the liver and the large bowel. The protocols were designed to detect an increased incidence or a shorter latent period stemming from a change in immune status. Groups of rats were given injections prior to initiation of the carcinogen regimen and continuously thereafter with a purified gamma fraction of antilymphocytic serum (ALG). Appropriate controls received the gamma fraction of normal rabbit serum or 0.9% NaCl solution. Permanence of skin allografts showed that ALG was an effective immunosuppressive treatment. For liver cancer induction, rats were fed 120 ppm N-hydroxy-N-2-fluorenylacetamide in the diet for 16 weeks, then were continued on control diet. The animals given ALG developed liver tumors at a rate similar to that of controls. For cancer of the large bowel, rats received a single s.c. dose of 7.5 mg azoxymethane per kg per week for 16 weeks and were then held on control diet. With an identical ALG treatment, there were fewer intestinal tumors in the early part of the treatment, because of the important early development of liver angiosarcoma, not seen in control rats given injections of 0.9% NaCl solution. At a later time, the incidence of intestinal cancer was similar in rats on ALG or on 0.9% NaCl solution. Thus, immunosuppression had little effect on the rate of liver tumor formation with a liver carcinogen. Also, ALG led to the precocious development of liver angiosarcomas, but failed to affect intestinal cancer induction in animals given azoxymethane.

2-Acetylaminofluorene↗

Identification of mucin-depleted foci in the unsectioned colon of azoxymethane-treated rats: correlation with carcinogenesis.

We tested the association between aberrant crypt foci (ACF) and tumor induction by feeding azoxymethane-induced rats (15 mg/kg x 2, s.c.) with synbiotics (Raftilose Synergy 1, a derivative of inulin, 10% of the diet, along with lactobacilli and bifidobacteria). After 16 weeks of feeding, synbiotics significantly increased ACF multiplicity. On the contrary, after 32 weeks, synbiotics significantly decreased intestinal tumors. When the same unsectioned colon used for ACF determination was stained with high-iron diamine Alcian blue, foci of crypts with scarce or absent mucins were identified. We defined these lesions as mucin-depleted foci (MDF), and they were visible in all azoxymethane-treated rats and correlated with tumor induction (MDF/colon: 8.2 +/- 0.9 and 3.8 +/- 0.9 in controls and synbiotic-fed rats, respectively, P < 0.01; crypts/MDF: 12.2 +/- 2 and 6.4 +/- 1 in controls and synbiotic-fed rats, respectively, P < 0.05, means +/- SE, n = 7). There were fewer MDF/colon than ACF, and they were histologically more dysplastic than mucinous lesions identified as ACF in high-iron diamine Alcian blue-stained colon. In conclusion, MDF may be premalignant lesions that predict colon carcinogenesis.

Animals↗

Inhibition by the dopamine antagonist haloperidol of experimental carcinogenesis induced by azoxymethane in rat colon.

The effects of the dopamine agonist bromocriptine and antagonist haloperidol on the incidence and histology of colon tumors induced by azoxymethane and on the labeling index of colon mucosa were investigated in Wistar rats. Rats received weekly s.c. injections of 7.4 mg/kg of body weight azoxymethane for 10 weeks and s.c. injections of 2 mg/kg of body weight bromocriptine or 2 mg/kg of body weight haloperidol, in depot form, every other day until the end of the experiment in week 30. Administration of haloperidol resulted in a significant decrease in the incidence of colon tumors. It also caused a significant decrease in the incidence of adenocarcinomas, with 75% of the tumors being adenomas, and in the labeling index of the colon epithelial cells. In contrast, bromocriptine had no influence on the incidence or histology of colon tumors or the labeling index of the colon mucosa. These findings indicate that the dopamine antagonist haloperidol inhibits colon carcinogenesis and that this effect may be related to its effect in decreasing the proliferation of colon epithelial cells.

Adenocarcinoma↗

Enhancement by methionine enkephalin of colon carcinogenesis induced by azoxymethane.

The effect of the opioid receptor agonist methionine enkephalin (Met-enkephalin) and the opioid receptor antagonist naloxone on colonic carcinogenesis induced by azoxymethane was investigated in Wistar rats. Rats received ten weekly injections of 7.4 mg/kg of body weight of azoxymethane and injections of Met-enkephalin (50 micrograms/kg of body weight), naloxone (2 mg/kg of body weight), or Met-enkephalin (50 micrograms/kg of body weight) plus naloxone (2 mg/kg of body weight) once every 2 days. In wk 40, the group treated with Met-enkephalin had a significantly increased incidence of colonic tumors. A combination of Met-enkephalin and naloxone attenuated the enhancing effect by Met-enkephalin on the development of colonic tumors. Administration of naloxone alone had no influence on colonic tumorigenesis. During and after administration of the carcinogen, the bromodeoxyuridine-labeling indices of the colon mucosa and/or cancers were significantly increased in rats treated with Met-enkephalin. However, a combination of Met-enkephalin and naloxone significantly decreased the labeling indices of the colon mucosa and/or cancers. These findings indicate that Met-enkephalin enhanced colon carcinogenesis and that naloxone attenuated this enhancement. Because naloxone is an opioid receptor antagonist, these findings also indicate that the enhancing effect of Met-enkephalin on colon carcinogenesis may be mediated through opioid receptors.

Adenocarcinoma↗

Alpha-difluoromethylornithine-induced inhibition of growth of autochthonous experimental colonic tumors produced by azoxymethane in male F344 rats.

Ornithine decarboxylase, the first regulatory enzyme in polyamine biosynthesis, is inhibited by alpha-difluoromethylornithine (DFMO), a specific enzyme-activated irreversible inhibitor. DFMO has been shown previously to inhibit experimental colonic tumorigenesis in rodents given the large bowel carcinogen azoxymethane or dimethylhydrazine. Therefore, we assessed the effects of DFMO on growth of established autochthonous experimental colonic tumors. Ten-wk-old male F344 rats were given 10 weekly s.c. injections of azoxymethane, 10 mg/kg. Starting 5 wk after the last dose, colonoscopy to the splenic flexure was performed weekly with a pediatric fiberoptic bronchoscope. When a tumor was visualized, its growth was assessed by computer image analysis of weekly colonoscopic photographs which included a scale. After two measurements for baseline tumor growth, the tumor-bearing rats were assigned in predetermined alternating sequence to the DFMO group (n = 26) or control group (n = 28). DFMO, 30 mg/ml (3%), was given in drinking water for 4 wk, resulting in mean weekly intake of 16 +/- 1 (SE) to 18 +/- 1 mg of DFMO/g of body weight. Control rats were pair-fed, resulting in reduced body weights comparable to DFMO rats. DFMO dramatically inhibited tumor growth, beginning in the first week of administration: mean tumor volume of DFMO rats reached only 7.0 +/- 2.0 mm3 compared with 17.4 +/- 3.2 mm3 in controls (P less than 0.02); and tumors in three DFMO rats disappeared. Mean change in tumor volume in DFMO rats was less than controls during all 4 wk of administration, although there was a suggestion of escape from DFMO suppression of tumor growth in the last 2 wk. At necropsy, tumor ornithine decarboxylase activity was 115 +/- 22 pmol/h/mg of protein in DFMO rats as compared with 842 +/- 576 in controls. There was a suggestion of greater tumor desmoplasia in DFMO rats, but tumor differentiation, depth of invasion, inflammation, and labeling index with tritiated thymidine showed no statistically significant differences between the DFMO and control groups. Our findings suggest that (a) ornithine decarboxylase plays a key role in growth of autochthonous experimental colonic tumors, and (b) DFMO may have potential for chemotherapy and chemoprophylaxis of colorectal neoplasms in human beings.

Animals↗

Inhibition by dietary ethanol of experimental colonic carcinogenesis induced by high-dose azoxymethane in F344 rats.

Epidemiological studies have shown an association between consumption of alcoholic beverages and increased occurrence of large bowel carcinoma, but studies in experimental models of colonic carcinogenesis have produced conflicting results. We assessed the effects of chronic dietary ethanol consumption during the preinduction and induction phase (period of acclimatization and carcinogen administration) in a high-dose azoxymethane-treated rat model (14 mg/kg/wk for 10 wk). Ten-wk-old male Fischer 344 rats were given 33% of calories as ethanol or no ethanol (controls). Pair-feeding with Lieber-DeCarli-type liquid diets provided comparable total carbohydrates, proteins, fats, and calories. After 3 wk of dietary acclimatization, injections of azoxymethane (AOM) were given s.c. to all rats in Wk 1 to 10. At necropsy in Wk 25, dramatic suppression of gastrointestinal tumorigenesis was evident in the ethanol-fed group: the prevalence of colonic tumors was 5% as compared with 91% in controls; and the prevalence of small bowel tumors was 0% versus 74% (P less than 0.0001). In an analogous study of [14C]AOM metabolism, exhaled 14CO2 was decreased in the ethanol-fed rats, indicating suppression of AOM metabolism. Similarly, in the ethanol-fed rats the levels of the DNA adducts O6-methylguanine and 7-methylguanine 24 h after AOM injection were reduced in the colonic mucosa to 14 +/- 7% and 61 +/- 11% of controls and in the liver to 80 +/- 9% and 86 +/- 6 of controls. By contrast, rats changed from the ethanol diet to no-ethanol diet for 12 h prior to the dose of [14C]AOM metabolized the carcinogen at a faster rate than controls, indicating loss of suppression with cessation of ethanol intake along with induction of metabolizing enzymes; DNA adduct levels were reduced in the colonic mucosa to 90 +/- 13% and 76 +/- 9% of controls and in the liver to 81 +/- 6% and 85 +/- 3% of controls. Our findings indicate that dietary ethanol during the preinduction and induction phase of the AOM model dramatically inhibits tumorigenesis, even with high dosage of carcinogen, and suggest that: (a) inhibition of tumorigenesis may result from suppression of metabolic activation of AOM and the consequent reduced formation of DNA adducts during the induction (initiation) phase of the model; (b) these anti-initiation effects of ethanol are unrelated to the epidemiological association between consumption of alcoholic beverages and large bowel cancer; and (c) mechanisms of action of agents found to modulate carcinogenesis in experimental models should be determined before the results can be generalized to human beings.

Alkylation↗

Cell kinetics and polyamine enzymes in the intestinal mucosa of rats with azoxymethane induced tumours.

We studied the proliferative activity and the modifications in ornithine decarboxylase (ODC) and diamine oxidase (DAO), enzymes involved in polyamine metabolism, in the apparently normal intestinal mucosae of rats with azoxymethane induced tumours. Fifty rats were treated with six weekly injections of 15 mg/kg body weight azoxymethane (AOM). Six rats died during the treatment. All the surviving rats developed intestinal tumours; tumour incidence was 93.1% (41/44) in the left colon, 40.9% (18/44) in the right colon and 45.4% (20/44) in the small bowel. In the normal-appearing mucosa close to intestinal tumours we found an extension of the normal proliferative compartment to the upper third of the crypts (stage I abnormality) and a shift of most of the DNA synthesizing cells from the basal region to the middle and upper third (stage II abnormality). Furthermore, the intestinal mucosa characterized by proliferative abnormalities showed an ODC activity significantly higher than the normal mucosa of control rats (small bowel: 1.01 +/- 0.26 vs 0.42 +/- 0.15, P < 0.01; right colon: 1.32 +/- 0.34 vs 0.25 +/- 0.02, P < 0.001; left colon: 1.93 +/- 0.35 vs 0.22 +/- 0.01, P < 0.01). We also detected a significant decrease of DAO activity in the mucosa of the small bowel and right colon of treated rats compared to controls (0.86 +/- 0.09 vs 4.39 +/- 0.85, P < 0.01; 1.04 +/- 0.43 vs 3.80 +/- 0.91, P < 0.01, respectively), while DAO activity in the left colon was unchanged. The lower incidence of tumours in the small bowel and right colon suggests the presence of factors protecting these segments from carcinogenesis.(ABSTRACT TRUNCATED AT 250 WORDS)

Amine Oxidase (Copper-Containing)↗

Increased expression of inducible and endothelial constitutive nitric oxide synthases in rat colon tumors induced by azoxymethane.

Nitric oxide (NO) is an important bioregulatory mediator involved in a variety of biological processes under both physiological and pathological conditions. To assess whether NO production is altered in colon carcinogenesis, the expression levels and localization of two isoforms of NO synthase, inducible NO synthase (iNOS) and endothelial constitutive NO synthase (eNOS), were examined by immunoblot and immunohistochemical methods in normal colonic mucosa and colon carcinomas induced by azoxymethane in male F344 rats. All colon carcinoma tissues examined were found to have an increased expression of iNOS and eNOS proteins as compared to normal colonic mucosa. In particular, the pronounced staining of iNOS protein localized to the luminal surface of carcinoma epithelial cells was not detectable in normal colon epithelium. The neovasculature in tumor tissues also demonstrated intense eNOS immunoreactivity in endothelial cells. These findings indicate that NO production is markedly elevated in azoxymethane-induced rat colon carcinomas, suggesting that regulatory pathways involving this mediator have some biological relevance to colon carcinogenesis in this model.

Adenocarcinoma↗

Sulindac sulfone inhibits azoxymethane-induced colon carcinogenesis in rats without reducing prostaglandin levels.

Nonsteroidal anti-inflammatory drugs (NSAIDs), such as sulindac, have cancer chemopreventive properties by a mechanism that has been suggested to involve cyclooxygenase inhibition and reduction of prostaglandin (PGE2) levels in the target tissue. To test this hypothesis, we studied the effect of dietary sulindac sulfone (500-2000 ppm), a metabolite of sulindac reported to lack cyclooxygenase inhibitory activity, on tumor formation and PGE2 levels in the azoxymethane model of colon carcinogenesis. Rats treated with sulindac at 400 ppm and piroxicam at 150 ppm were used as positive controls. Rats received two s.c. injections of azoxymethane (15 mg/kg) for 2 weeks and were fed either experimental or control diets until necropsy. After 31 weeks of sulfone treatment, a dose-related increase in sulfone levels in both serum and cecal contents was measured; there was no evidence of metabolic conversion to sulindac or other metabolites. Rats treated with sulfone at 1000 and 2000 ppm, sulindac, and piroxicam had significantly fewer colonic adenomas and carcinomas compared with rats fed control diet as measured by tumor incidence, multiplicity, and tumor burden. Sulfone-treated rats also showed a dose-response relationship for inhibiting all tumor parameters. Colons from rats treated with sulindac or piroxicam contained PGE2 levels that ranged from approximately 16-49% of control levels. PGE2 levels in rats treated with sulfone up to 2000 ppm ranged from 78-118% of control levels. Moreover, the effects of sulindac sulfone on various enzymes responsible for regulating prostaglandin levels were evaluated. No significant inhibitory effects were observed for cyclooxygenase, lipoxygenase, or phospholipase A2. These results suggest that reduction of prostaglandin levels in the target tissue may not be necessary for the chemopreventive properties of sulindac.

Animals↗

Beta-catenin is frequently mutated and demonstrates altered cellular location in azoxymethane-induced rat colon tumors.

Beta-Catenin is a key regulator of the cadherin-mediated cell-cell adhesion system and an important element in the Wnt signal transduction pathway. Stabilization and accumulation of cytoplasmic beta-catenin, which result from mutations in either the adenomatous polyposis coli or beta-catenin genes, are causatively associated with colon carcinogenesis. In the present study, we examined the expression of beta-catenin in rat colon tumors induced by azoxymethane in comparison with adjacent normal colon mucosa by immunostaining and immunoblotting. Cytoplasmic and nuclear immunostaining was pronounced in all colon adenoma and carcinoma tissues, whereas antibody binding was limited to membranes at the intercellular borders in normal colon epithelial cells. Increase of the free beta-catenin fraction in tumor cells was also indicated by immunoblot analysis of fractionated tissue lysates. Investigation of mutations in the glycogen synthase kinase-3beta phosphorylation consensus motif of the beta-catenin gene by PCR-single strand conformation polymorphism methods and direct sequencing revealed eight mutations in six of the eight colon carcinomas, and seven of these were shown to be G:C to A:T transitions, with five being CTGGA to CTGAA. Such frequent mutations of the beta-catenin gene in azoxymethane-induced rat colon tumors suggest that consequent alterations in the stability and localization of the protein may play an important role in this colon carcinogenesis model.

Adenocarcinoma↗

Enhanced ligand-induced activation of EGF-receptor and overall tyrosine kinase and phospholipase C in colonocytes isolated from azoxymethane-treated rats.

BACKGROUND/AIMS: In order to evaluate the role of epidermal growth factor (EGF) and transforming growth factor alpha (TGF-alpha) in colorectal cancer, the present investigation examines changes in EGF and TGF-alpha-mediated activation of overall and EGF receptor (EGF-R) associated tyrosine kinase activity in isolated rat colonocytes after administration of the colonic carcinogen azoxymethane. METHODOLOGY: Five days after a single injection of azoxymethane (20 mg/kg) or saline solution to 3-4 month old Fischer-344 rats, colonocytes were isolated, exposed for 2 minutes to 1 x 10(8) M EGF and TGF-alpha, and assessed for overall and EGF-R associated tyrosine kinase and phospholipase C activity. RESULTS: In colonocytes isolated from control animals, incubation with EGF and TGF-alpha resulted in a small (21-35%) increase in overall tyr-k. However, a marked (113-127%) rise of this enzyme occurred in colonocytes from AOM-treated rats, when compared with the corresponding basal levels. These differences were even more pronounced in colonocytes isolated from the distal part of the colon, as regards to the proximal part. In addition, EGF and TGF-alpha activated EGF-R tyr-k by 40-60% in controls and by 84-85% in AOM-treated animals. Incubation of colonocytes with these growth factors also stimulated PLC activity (in controls by 120-150% and in AOM injected rats by 204-271%) when compared with corresponding basal values. CONCLUSIONS: We conclude that AOM enhances the responsiveness of colonocytes to EGF and TGF-alpha, which may be one of the mechanisms involved in colorectal carcinogenesis.

Animals↗

Inhibition of Cell Proliferation and Induction of Apoptosis During Azoxymethane Induced Colon Carcinogenesis by Black Tea.

Tea (Camellia sinensis) is one of the most popular beverages, consumed worldwide. The health promoting properties of tea have been attributed to its antioxidative polyphenolic constituents and their oxidative products. The aim of the present study was to evaluate the chemopreventive efficacy of a black tea infusion on azoxymethane induced colonic preneoplastic lesions, the aberrant crypt foci in Sprague-Dawley rats. Rats were injected with azoxymethane (15mg/kg.b.w.) and received oral administration of 1% and 2% (w/v) tea infusions from the 1(st)day of carcinogen application. The treatment was continued for 12 weeks. The colons were then assessed for aberrant crypt foci and compared with the untreated carcinogen control group. In situ cell proliferation and in situ apoptosis were also estimated using Brdu incorporation and the TUNEL method, respectively. Aberrant crypt foci were reduced significantly (by 44% in the 1% tea-treated and by about 40% in 2% tea-treated group). Significant decrease in proliferation and increase in apoptosis suggest a possible interplay between the two processes resulting in inhibition of colon carcinogenesis by black tea.

Journal Article↗

Colon carcinogenesis with azoxymethane and dimethylhydrazine in germ-free rats.

The effect of intestinal microflora on the sensitivity of the colon to the carcinogenic effect of azoxymethane and a large dose of 1,2-dimethylhydrazine was studied using germ-free and conventional female Fischer rats. Injection s. c. of 1,2-dimethylhydrazine-induced tumors of the ear duct, kidney, and small intestine of conventional rats but none in germ-free animals. Only 20% germ-free rats showed 1,2-dimethylhydrazine-induced colonic tumors, whereas 93% of conventional rats developed multiple colonic tumors. Intrarectal instillation of azoxymethane appreciably increased the multiplicity of colonic tumors in germ-free rats and in gnotobiotic rats contaminated with Clostridium perfringens, as compared to conventional controls. None of the germ-free rats showed ear duct tumors. The incidence of kidney tumors was lower in germ-free rats than in other groups. It is concluded than the intestinal microbial populations alter the effect of carcinogens in the large intestine.

Adenocarcinoma↗

Fasting/re-feeding before initiation enhances the growth of aberrant crypt foci induced by azoxymethane in rat colon and rectum.

In contrast to the protective effect of chronic caloric restriction on tumor development, we have shown that fasting sustained tumor initiation in rat liver by a noninitiating dose of diethylnitrosamine. Here we investigated whether fasting had a similar favorable effect on initiation in the colorectal mucosa in 80 male F344 rats. Animals fasted for 4 days were given a single s.c. dose of azoxymethane (AOM) (20 mg/kg) on the first day of re-feeding, and rates of kinetic proliferative parameters, and development of the pre-neoplastic lesions such as aberrant crypt foci (ACF), were evaluated. Starvation before AOM treatment enhanced the growth of ACF, as shown by the significantly higher crypt multiplicity of fasted/re-fed rats as compared with fully fed rats (3.97 +/- 0.50 vs. 2.64 +/- 0.20, p < or = 0.025). This difference was associated with perturbations in cell death and cell proliferation. Fasting induced apoptosis and depressed cell division, while re-feeding had opposite effects, resulting in a higher percentage of S-phase cells at the time of AOM injection and 2 days thereafter. Starvation-induced apoptosis may represent the mitogenic stimulus to an increase in the number of cells susceptible to AOM damage, and may favor its fixation, leading to enhanced growth of ACF. Our data therefore suggest that fasting/re-feeding enhances colon cancer.

Animals↗

Genistein attenuates peritoneal metastasis of azoxymethane-induced intestinal adenocarcinomas in Wistar rats.

The effects of the soybean isoflavonoid genistein on the development of bombesin-enhanced peritoneal metastasis from intestinal adenocarcinomas induced by azoxymethane (AOM) were investigated in male inbred Wistar rats. From the beginning of the experiment, 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, and from week 16, s.c. injections of genistein (5 or 10 mg/kg body weight) every other day until the end of the experiment in week 45. Bombesin significantly increased the incidence of intestinal tumors and of cancer metastasis to the peritoneum. Although genistein administered at either dose had little or no effect on the enhancement of intestinal carcinogenesis by bombesin or on the location, histologic type, depth of involvement, labeling index, or growth pattern of intestinal cancers, it significantly decreased the incidence of cancer metastasis. Genistein also significantly decreased the incidence of lymphatic vessel invasion of adenocarcinomas, which was enhanced by bombesin. Our findings indicate that genistein attenuates cancer metastasis by inhibiting cancer cell invasion into lymphatic vessels through activities that do not affect the growth of intestinal cancers.

Animals↗

Expression of bcl-2, bax, and bcl-XL proteins in azoxymethane-induced rat colonic adenocarcinomas.

Using western blotting and immunochemical analysis, we investigated alterations in the expression of the apoptosis-related proteins bcl-2, bax, and bcl-X in colonic adenocarcinomas induced by subcutaneous injection of azoxymethane (AOM) (15 mg/kg body weight weekly for 2 wk) into male Sprague-Dawley rats. Expression of the apoptosis-repressor bcl-2 in the colonic tumors was significantly weaker (0.6-fold) than that in adjacent non-neoplastic mucosa. The expression of bax protein, an apoptosis accelerator, was significantly stronger (7.33-fold) in all the tumors than in the non-tumoral mucosa. bcl-XL protein, which functions as a repressor of apoptosis, was significantly upregulated (3.23-fold) in all the tumors when compared with the non-neoplastic mucosa. There was no significant difference between the expression of these proteins in the non-neoplastic mucosa of the AOM-treated rats and in the normal mucosa of saline-treated control rats. As determined by immunohistochemical analysis, the tumor cells had more bax and bcl-X protein. These findings indicate that the regulation of the apoptosis-related proteins bcl-2, bax, and bcl-XL was altered in the AOM-induced colonic neoplastic tissue. In terms of resistance to apoptosis, elevated levels bcl-XL protein may have considerable meaning in this experimental model as well as in human colorectal cancer.

Adenocarcinoma↗

Assessment of mutations in Ki-ras and p53 in colon cancers from azoxymethane- and dimethylhydrazine-treated rats.

Mutations in the Ki-ras oncogene and the p53 tumor suppressor gene are known to occur at high frequencies in human colon cancers. We measured the frequency of mutations in these two genes in colon adenocarcinomas obtained from a widely used experimental model of human colon carcinogenesis: F344 rats treated with the carcinogens azoxymethane (AOM) or dimethylhydrazine (DMH). We detected codon 12 mutations in Ki-ras in approximately 60% of colon adenocarcinomas induced by either carcinogen. We characterized the rat p53 intron-exon junctions to construct primers for polymerase chain reaction amplification of this gene. We discovered that the rat p53 gene was structurally different from the human p53 gene, as the rat gene was missing one intron between exons 6 and 7. Both single-stranded DNA conformational polymorphism analysis and direct DNA sequencing of the highly conserved regions of rat exons 5-7 were conducted because the corresponding human regions (exons 5-8) have been reported as being mutated most frequently in human colon cancers. Using these methods, we were unable to identify any p53 mutations in the highly conserved regions of exons 5-7 in either AOM- or DMH-induced colon adenocarcinomas. These data confirm that Ki-ras was mutated in most colon cancers in AOM- or DMH-treated rats but indicate that molecular alterations in the p53 gene, if they occur in this animal model, are different from most p53 mutations in human colon cancers.

Animals↗

Investigations into the metabolism and mode of action of the colon carcinogens 1,2-dimethylhydrazine and azoxymethane.

Colon cancer can be induced reliably in rodents with 1,2-dimethylhydrazine and azoxymethane (AOM). Our studies deal with the mode of action of these compounds and their organotropism. A partial summary of our previous work on the metabolism of 1,2-dimethylhydrazine and its inhibition by disulfiram, carbon disulfide and other thiono-sulfur compounds is presented. On-going studies with AOM-14C indicate that in male F-344 rats, this carcinogen is rapidly metabolized to 14CO2 (37%, 48 hours), and to methylazoxymethanol-14C (MAM) (0.6--1%), which, along with other metabolites, appears in the urine. Pretreatment of rats with phenobarbital or chyrsene increased exhaled 14CO2 to 53% and 65%, respectively. Pretreatment with disulfiram or CS2 causes a complete, although transient, inhibition of exhaled 14CO2, decreases urinary MAM, and increases significantly the levels of unmetabolized AOM in the exhaled air and in urine. Thus, phenobarbital and chrysene appear to stimulate, while disulfiram and CS2 appear to inhibit, the metabolism of AOM. In vitro hydroxylation of AOM to MAM was demonstrated with rat liver homogenates and microsomal fractions. A hypothetical scheme for the endogenous formation of AOM is presented.

Animals↗