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Microcystins (cyanobacterial toxins) in drinking water enhance the growth of aberrant crypt foci in the mouse colon.

Microcystis aeruginosa produces toxic cyclic peptides called microcystins, potent hepatotoxins that have been implicated in tumor promotion in skin and liver. The model used in this investigation was the azoxymethane (AOM)-induced aberrant crypt focus (ACF) in the male C57Bl/6J mouse colon. Three intraperitoneal (i.p.) injections of 5 mg/kg AOM were administered at 7-d intervals to mice; 19 d after the last AOM injection, drinking water containing Microcystis extract was commenced and continued for a further 212 d. The content of microcystins in the drinking water was determined by mouse bioassay, high-performance liquid chromatography (HPLC), capillary eletrophoresis, and protein phosphatase inhibition. The doses employed were 0, 382, and 693 micrograms/kg bodyweight/d at the midpoint of the trial. Following postmortem examination blood cells, serum enzymes and organ pathology were investigated. A significant microcystin dose-dependent increase in the area of aberrant crypt foci was observed. There was no marked increase in the number of crypts/colon. Two overt colonic tumors (approximately 30 mm3) were seen in microcystin-treated mice, and one microscopic colonic tumor in an AOM-alone-treated mouse. This investigation provides the first evidence for the stimulation of preneoplastic colon tumor growth by microcystin.

Animals↗

The effects of a "low-risk" diet on cell proliferation and enzymatic parameters of preneoplastic rat colon.

The relationship between various dietary constituents and colon cancer has been demonstrated by previous research. This study was conducted to investigate the combined effects of several dietary constituents on the preneoplastic stage of azoxymethane (AOM)-induced colon cancer in rats. A nutritionally adequate, "low-risk" (LR) diet was formulated through the modulation of dietary fat, fiber, protein, vitamins A and E, and selenium. Female F344 rats were given three weekly subcutaneous injections of AOM and were maintained on either the LR diet or a "high-risk" (HR) diet. After 12 weeks, the rats were killed and the following parameters were determined: pH of colon contents, fecal beta-glucuronidase activity, tissue ornithine decarboxylase (ODC) activity, and colonic labeling index. The pH of the colon contents and incremental labeling index were lower in the group given the LR diet and treated with AOM compared with the group given the HR diet and treated with AOM; however, no statistically significant dietary effects were observed for beta-glucuronidase and ODC activities. The results of this study indicated that the colons of rats fed the LR diet exhibited different proliferative characteristics than did the colons of rats fed the HR diet.

Animals↗

Colonic protein fermentation and promotion of colon carcinogenesis by thermolyzed casein.

Thermolyzed casein is known to promote the growth of aberrant crypt foci (ACF) and colon cancer when it is fed to rats that have been initiated with azoxymethane. We speculated that the promotion was a consequence of increased colonic protein fermentation (i.e., that the thermolysis of the casein decreases its digestibility, increases the amount of protein reaching the colon, and increases colonic protein fermentation and that the potentially toxic products of this fermentation promote colon carcinogenesis). We found that the thermolysis of casein reduces its digestibility and increases colonic protein fermentation, as assessed by fecal ammonium and urinary phenol, cresol, and indol-3-ol. Thermolysis of two other proteins, soy and egg white protein, also increases colonic protein fermentation with increased fecal ammonia and urinary phenols, and thermolysis of all three proteins increases the levels of ammonia and butyric, valeric, and i-valeric acids in the cecal contents. We found, however, that the increased protein fermentation observed with thermolysis is not associated with promotion of colon carcinogenesis. With casein, the kinetics of protein fermentation with increasing thermolysis time are clearly different from the kinetics of promotion of ACF growth. The formation of the fermentation products was highest when the protein was thermolyzed for one hour, whereas promotion was highest for protein that had been thermolyzed for two or more hours. With soy and egg white, thermolysis increased colonic protein fermentation but did not promote colon carcinogenesis. Thus, although thermolysis of dietary casein increases colonic protein fermentation, products of this fermentation do not appear to be responsible for the promotion of colon carcinogenesis. Indeed, the results suggest that protein fermentation products do not play an important role in colon cancer promotion.

Animals↗

Protective effects of calcium from nonfat dried milk against colon carcinogenesis in rats.

A number of studies have demonstrated the protective effect of dietary calcium against risk for colon cancer. The objective of this experimental study was to test the efficacy of two sources of dietary calcium, elemental calcium in the form of CaCO3 and dairy calcium as nonfat dried milk (NFDM), in colon tumor inhibition. Male weanling F344 rats were fed six test diets containing low (LF, 5%) and high (HF, 20%) levels of corn oil and low (0.5%) and high (1.0%) levels of calcium supplemented as CaCO3 or NFDM in a 2 x 3 factorial design. Tumors were induced with two weekly injections of azoxymethane at 12 mg/kg body wt. After 27 weeks on the test diets, animals were necropsied for tumor analysis. There was no difference in tumor incidence for fat or calcium source main effects, but a significant interaction was seen between fat and calcium source, with the lowest tumor incidence seen in the HF/NFDM group. Calcium compartmentalization studies demonstrated no effects of calcium on serum calcium levels but increased urinary and fecal water calcium in the higher-calcium diets. Increased dietary calcium also decreased fecal bile acid concentrations, but there was no effect on fecal water bile acids. Intermediate biomarkers of colon carcinogenesis were not affected by the dietary treatments except for fat effects on carcinogen-induced nuclear aberrations. These results indicate that source of calcium is not critical but that total dietary context may affect efficacy of calcium against colon carcinogenesis.

Animals↗

Dietary cholesterol inhibits the development of aberrant crypt foci in the colon.

We evaluated the effect of dietary cholesterol and oxidized cholesterol on the promotion of aberrant crypt foci (ACF), which are putative precancerous lesions in the colon. Sixty female C57BL/6J mice were given four weekly injections (ip) of azoxymethane (AOM) then fed either a control AIN-76 diet or the control diet supplemented with 0.3% cholesterol or 0.3% oxidized cholesterol for 100 days. The oxidized cholesterol was prepared by heating cholesterol at 110 degrees C for 48 hours. Gas chromatographic analysis of the oxidized cholesterol showed that 96% of the cholesterol was unchanged and less than 2% of the cholesterol was oxidized. The remaining 2% impurities were unidentified and present in both the cholesterol and heated cholesterol. The number of ACF in the group fed cholesterol was significantly lower than the control group (7.9 +/- 1.0 vs. 12.5 +/- 1.2, p < 0.01). The number of ACF in the group fed oxidized cholesterol (10.1 +/- 1.1) was not different from the control or cholesterol groups. The size of the ACF (no. of crypts per focus) did not differ between the three dietary groups. Serum low-density lipoprotein (LDL) cholesterol was greater in the cholesterol-fed group than the control group (40.5 +/- 4.6 vs. 24.3 +/- 3.6 mg/dl, p < 0.05). LDL cholesterol from the animals fed oxidized cholesterol (37.7 +/- 4.7 mg/dl) was not different from the control or cholesterol-fed animals. Total and high-density lipoprotein (HDL) cholesterol did not differ between the groups. The results show that dietary cholesterol significantly inhibits the promotion of ACF in the colon. The elevated LDL cholesterol may inhibit de novo cholesterol synthesis in the preneoplastic colonic epithelial cells, thereby inhibiting DNA synthesis and cell proliferation.

Animals↗

Regional distribution of carcinogen-induced colonic neoplasia in the rat.

Carcinogen induction of neoplasms in rodent colon has been used as a model for human colon cancer development and for evaluating chemopreventive regimens. We studied the regional distribution of small and large intestinal tumors in 229 rats given azoxymethane (AOM) once weekly for two weeks (15 mg/kg sc). The AOM regimen induced 63% more tumors in distal (DC) than in proximal colon (PC), although tumor volume was greater in PC. A high-fat (23% corn oil) diet increased tumors in PC and DC (p < 0.01). Caloric restriction of 10-30% of the ad libitum diet progressively reduced DC tumor formation but did not alter PC tumors. Tumor volume was unaffected by either regimen. Small intestinal tumors were concentrated in the proximal 15 cm of the intestine and were unaffected by dietary manipulation. This AOM model of colon tumor formation approximates human colon cancer distribution and is an appropriate model for rodent chemopreventive studies.

Animals↗

Diet and carcinogen alter luminal butyrate concentration and intracellular pH in isolated rat colonocytes.

A 2 x 2 factorial experiment was conducted to examine the effects of two different dietary fibers and carcinogen treatment on colonic luminal short-chain fatty acid (SCFA) concentrations and intracellular pH (pHi) in rats. Twenty-four male Sprague-Dawley rats were divided into four groups, injected with a carcinogen [azoxymethane (AOM)] or normal saline (Sal), and fed one of two diets differing only in the type of dietary fiber [cellulose (Cell) or pectin (Pect)]. After 38 weeks of consuming these diets, the rats were euthanized, luminal contents were collected for analysis of SCFA concentrations, and colonocytes were isolated from the proximal and distal colon for subsequent determination of pHi. Changes in pHi after the addition of exogenous sodium butyrate to the culture medium were also tested. The highest concentrations of SCFAs were produced by the control rats (saline injected) consuming the pectin diet. Luminal butyrate concentrations were reduced in three of four colonic segments of carcinogen-injected groups [proximal and distal cellulose (Prox Cell and Dist Cell) and distal pectin (Dist Pect)] compared with saline controls. The pHi was consistently higher in colonocytes isolated from carcinogen-injected rats (Prox Cell/AOM = 6.95 vs. Prox Cell/Sal = 6.65, Prox Pect/AOM = 6.75 vs. Prox Pect/Sal = 6.65, Dist Cell/AOM = 6.94 vs. Dist Cell/AOM = 6.85, Dist Pect/AOM = 6.92 vs. Dist Pect/Sal = 6.79) than in cells from saline-injected rats. Furthermore, in the majority of rats, pHi was lower in the proximal than in the distal colon. Addition of butyrate to cultured colonocytes consistently lowered pHi, but the effect was more pronounced in the carcinogen-injected animals. These data identify changes that occur intraluminally and intracellularly in colons of rats injected with AOM and suggest that, during tumorigenesis, alterations in butyrate production and basic colonocyte physiology may play an important role in the process.

Animals↗

Insulin resistance and promotion of aberrant crypt foci in the colons of rats on a high-fat diet.

McKeown-Eyssen and Giovannucci recently proposed that the etiology of insulin resistance (IR) and colorectal cancer (CRC) are related. They suggested that diets high in fat and energy and low in complex carbohydrates and a sedentary life-style lead to IR and that the associated hyperinsulinemia, hypertriglyceridemia, and glycemia lead to increased CRC risk through the growth-promoting effect of insulin or the increased availability of energy. We reasoned that if diet affects colon carcinogenesis through its effect on IR, evidence of colon cancer promotion would be preceded by evidence of IR. To test this expectation, we compared the effects of a high-fat (HF, 59% energy) diet and a low-fat (LF, 11% energy) diet on indirect measures of IR and promotion in azoxymethane-initiated F344 rats. Promotion was assessed as growth of aberrant crypt foci (ACF) at 100 days after initiation. The HF diet increased ACF size 1.4 times (95% confidence interval = 1.30-1.58) that of the LF diet. The HF diet also led to impaired oral glucose tolerance tests measured at 4, 32, 60, and 88 days and characterized by an average increased glucose concentration of 0.78 +/- 0.17 mmol/l (p < 0.001). It also resulted in an impaired intravenous glucose tolerance test and elevated levels of serum insulin after a glucose gavage. We concluded that with this model a high-fat diet leads to evidence of IR before it is possible to demonstrate CRC promotion, thus providing support, necessary but not sufficient, for the causal hypothesis linking IR and CRC. Possible mechanisms linking diet, IR, and promotion are considered.

Administration, Oral↗

Glycemic index, nutrient density, and promotion of aberrant crypt foci in rat colon.

We speculated that a diet with a high glycemic index (GI) or a diet with a low nutrient density (nutrient-to-calorie ratio) would enhance colon carcinogenesis, presumably via increased insulin resistance. Forty-eight Sprague-Dawley (SD) rats received an azoxymethane injection (20 mg/kg) and were randomized into five groups given an AIN-76 diet containing 1) 65% starch by weight, 2) 65% glucose (GI = 100), 3) 65% fructose (GI = 23), 4) 82% starch, or 5) 39% oil and 39% sucrose. The nutrient density of Diets 4 and 5 was one-half that of Diets 1-3. Promotion was assessed by the multiplicity (number of crypts) of aberrant crypt foci (ACF), an early marker of colon carcinogenesis. Insulin resistance was estimated by the FIRI index (blood insulin x blood glucose), by plasma triglycerides, and by visceral fat. To confirm the results in another rat strain, the experiment was duplicated in 48 Fischer (F344) rats. Results show that 1) the ACF multiplicity was not different in glucose- and fructose-fed rats (p > 0.7): diets with contrasting GI had the same effect on ACF growth; 2) diets of low nutrient density increased visceral fat (p < 0.05) but reduced the ACF size in F344 rats (p < 0.001, no reduction in SD rats); and 3) indirect insulin resistance markers (FIRI index, blood triglycerides, and visceral fat) did not correlate with ACF multiplicity. These results do not support the hypothesis that diets with a high GI or low nutrient density or diets that increase some indirect insulin resistance markers can promote colon carcinogenesis in F344 or SD rats.

Adipose Tissue↗

Dietary fiber differentially alters cellular fatty acid-binding protein expression in exfoliated colonocytes during tumor development.

We investigated the utility of noninvasive technology utilizing feces containing exfoliated colonocytes to determine whether changes in fecal fatty acid-binding proteins have predictive value in monitoring the neoplastic process. Ninety male Sprague-Dawley rats were randomly divided into four groups in a 2 x 2 factorial design, with two dietary fiber sources (wheat bran or oat bran) and two treatment groups (injection with a carcinogen, azoxymethane, or saline). Fresh fecal samples were collected at Week 16 postinjection, and tumor frequency was determined at Week 36 of the study. Semiquantitative "mimic" reverse transcriptase polymerase chain reaction was used to quantitate the expression of liver fatty acid-binding protein (L-FABP), intestinal fatty acid-binding protein (i-FABP), and acyl CoA-binding protein (ACBP) mRNA in fecal samples to establish their prognostic value. Rats fed wheat bran diets had a lower incidence of tumors (p < 0.05). There was no effect of carcinogen injection or tumor incidence on the expression of L-FABP, i-FABP, or ACBP mRNA, L-FABP and i-FABP mRNA expression were significantly higher (p < 0.05) in feces from animals fed a wheat bran diet than in feces from animals fed an oat bran diet. In contrast, the expression of ACBP mRNA was significantly lower (p < 0.05) in animals fed a wheat bran diet than in animals fed an oat bran diet. Wheat bran also increased (p < 0.05) the total excretion of L-FABP, i-FABP, and ACBP over a 48-hour period. These data suggest that exfoliated colonocyte fatty acid-binding protein mRNA status may provide insight into the mechanisms by which diet influences colonic physiology.

Animals↗

Vehicle and mode of administration effects on the induction of aberrant crypt foci in the colons of male F344/N rats exposed to bromodichloromethane.

Bromodichloromethane (BDCM) and tribromomethane given by corn oil gavage were previously found to induce neoplasia in the large intestine of rats. Our chronic bioassay of BDCM administered in drinking water failed to produce colon neoplasia in male F344/N rats. We recently reported that BDCM induces aberrant crypt foci (ACF), putative precursor lesions in the development of colon cancer, when included in the drinking water of male rats. To investigate whether ACF induced by BDCM could be promoted by corn oil (CO), male F344/N rats were exposed to 0.7 g BDCM/L in drinking water or 50 mg BDCM/kg body weight by oral gavage in CO. Animals exposed to drinking water, CO, or 15 mg/kg azoxymethane (AOM) (ip) constituted the negative, vehicle, and positive controls. After 26 wk, colons were examined for ACF. A significant decrease in water consumption was observed in both the positive controls and BDCM-treated animals; however, no difference was noted in final body weight. The administration of CO to AOM-exposed animals produced a significant increase in total ACF when compared to AOM alone. BDCM produced a significant increase in ACF when compared to control, but no difference was noticed between BDCM exposure by oral CO gavage and control. Additionally, no difference was noted between BDCM exposure by drinking water and by oral CO gavage. This study demonstrates that the formation of ACF is independent of the route of BDCM exposure (drinking water vs. oral corn oil gavage), with both routes producing similar ACF values of 1.33 +/- 0.49 and 1.5 +/- 0.51 ACF/colon.

Administration, Oral↗

Overexpression of protein kinase C betaII induces colonic hyperproliferation and increased sensitivity to colon carcinogenesis.

Protein kinase C betaII (PKC betaII) has been implicated in proliferation of the intestinal epithelium. To investigate PKC betaII function in vivo, we generated transgenic mice that overexpress PKC betaII in the intestinal epithelium. Transgenic PKC betaII mice exhibit hyperproliferation of the colonic epithelium and an increased susceptibility to azoxymethane-induced aberrant crypt foci, preneoplastic lesions in the colon. Furthermore, transgenic PKC betaII mice exhibit elevated colonic beta-catenin levels and decreased glycogen synthase kinase 3beta activity, indicating that PKC betaII stimulates the Wnt/adenomatous polyposis coli (APC)/beta-catenin proliferative signaling pathway in vivo. These data demonstrate a direct role for PKC betaII in colonic epithelial cell proliferation and colon carcinogenesis, possibly through activation of the APC/beta-catenin signaling pathway.

Animals↗

Inositol and inositol hexaphosphate suppress cell proliferation and tumor formation in CD-1 mice.

In previous studies, we have shown that inositol hexaphosphate (InsP6), a constituent of cereal diet, inhibited azoxymethane-induced experimental large intestinal cancer (LIC) in Fischer 344 rats. We now report a similar antineoplastic action of InsP6 in CD-1 mice injected with 1,2-dimethylhydrazine (DMH). We had hypothesized that InsP6 may bring about this effect by undergoing dephosphorylation to lower phosphorylated forms; the ready availability of Ins, to react with phosphates, may increase the total amount of the lower phosphorylated Ins and potentiate the action of InsP6. LIC induced by DMH (15 mg/kg/week x 13) in mice given a mixture of 1% InsP6 + 1% Ins show a significant reduction (P less than 0.005) in LIC prevalence over InsP6 treatment. Surprisingly, Ins, an in vitro growth promoting agent also caused a significant (P less than 0.001) suppression of LIC. InsP6 +/- Ins also showed a concomitant reduction in the mitotic rate in the non-neoplastic epithelium. Body weight data did not suggest any overt toxic effect of long-term administration of InsP6, Ins or InsP6 + Ins. Since InsP6 is antineoplastic in two species of experimental animals, it should, in combination with Ins, be considered in our strategies for prevention of large intestinal cancer.

1,2-Dimethylhydrazine↗

Expression of ras oncogene mRNA and protein in aberrant crypt foci.

The expression of the ras oncogene in aberrant crypt foci was studied by both in situ hybridization and immunohistochemical approaches. Aberrant crypt foci are hypothesized to represent the earliest identifiable microscopic lesions of colon cancer in rodent colons. Sprague-Dawley male rats were injected with azoxymethane (20 mg/kg s.c.) once. Twelve weeks later, aberrant crypt foci were identified topographically, microdissected and processed for histology. In situ hybridization with an antisense oligomer of c-ras demonstrated increased expression of ras-specific RNA in aberrant crypts compared to normal crypts. A low amount of non-specific hybridization was obtained with the corresponding sense oligomer. The percentage of cells with grains (labeling index) was calculated in early and advanced aberrant crypt foci. This index was also calculated in normal appearing crypts. The labeling indices for the early and advanced aberrant crypt foci were significantly greater than that of normal crypts (18.0 and 25.0 versus 11.9). In the same tissue specimens, immunohistochemical staining for ras p21 with the monoclonal antibody (Y13-259) revealed strong staining intensity in early aberrant crypts (15/22) and advanced aberrant crypts (22/30) compared to normal crypts (3/50). The immunohistochemical results demonstrate the presence of elevated levels of ras p21 in the same tissue as increased levels of ras-specific message. This investigation provides the earliest demonstration of increased expression of the ras oncogene in precursor lesions of colon cancer possessing dysplastic features.

Animals↗

Colonic aberrant crypt foci are associated with increased expression of c-fos: the possible role of modified c-fos expression in preneoplastic lesions in colon cancer.

Aberrant crypt foci represent the earliest detectable lesions of colon cancer. The expression of c-fos in these aberrant crypts was determined by in situ hybridization and immunohistochemistry. These lesions were induced in the colonic epithelium with azoxymethane using the rat model system. Expression of c-fos was markedly increased in the aberrant colonic crypts. Increases of approximately 60 and approximately 70% in the proportion of epithelial cells labelled were observed in the early and advanced aberrant crypts respectively. This was found to be statistically significant (P less than 0.001). Consistent with cell proliferation patterns in the colonic crypts, the epithelial cells of the lower crypt had greater levels of c-fos mRNA than those of the upper part of the crypts. In addition, immunohistochemical staining with c-fos polyclonal antibodies demonstrated increased levels of c-fos protein in aberrant crypts. This combined approach using in situ hybridization and immunohistochemistry has shown that increased c-fos expression at the RNA level in these lesions is associated with increased amounts of c-fos protein. Since c-fos has been implicated in the process of cell proliferation and differentiation, modifications in its expression may be significant to understanding the mechanisms whereby preneoplastic lesions transform to neoplastic lesions in colon cancer.

Animals↗

Effect of the chemopreventive agents piroxicam and D,L-alpha-difluoromethylornithine on intermediate biomarkers of colon carcinogenesis.

Our previous studies have shown that dietary piroxicam, a non-steroidal anti-inflammatory drug (NSAID), and D,L-alpha-difluoromethylornithine (DFMO), an ornithine decarboxylase (ODC) inhibitor, act as potential chemopreventive agents in inhibiting azoxymethane (AOM)-induced colon carcinogenesis in male F344 rats. The present study was designed to determine the effect of these chemopreventive agents on intermediate biomarkers, namely colonic epithelial cell proliferation and levels of prostaglandins, which can be used as effective predictors of colon cancer. Starting at 6 weeks of age, groups of animals were fed the control diet and experimental diets containing piroxicam or DFMO. At 7 weeks of age, all animals, except the vehicle controls, were injected s.c. with AOM at a dose level of 15 mg/kg body wt/week for 4 weeks. Vehicle controls received an equal volume of normal saline. Groups of animals were then killed at the end of last AOM or saline injection (baseline) and at week 4, 16, 24 and 32 following the last AOM or saline treatment. Animals intended for cell proliferation study were injected with bromodeoxyuridine (BrdU) at a dose level of 20 mg/kg body wt 1 h prior to being killed. The rate of colonic cell proliferation at all time points was assessed immunohistochemically using anti-BrdU. The levels of colonic mucosal prostaglandins were estimated by radioimmunoassay. The results indicate that carcinogen treatment increased the colonic cell proliferation measured as the crypt labeling index in proximal and distal colons and the concentrations of colonic prostaglandin E2 (PGE2) and 6-keto PGF1 alpha. The data demonstrate that DFMO significantly inhibited the AOM-induced labeling index in the distal and proximal colon at all time points, whereas piroxicam slightly decreased the labeling index. On the other hand, piroxicam exerted a pronounced inhibitory effect on the levels of both PGE2 and 6-keto PGF1 alpha. DFMO suppressed the colonic PGE2 levels to a lesser degree than piroxicam. The results demonstrate that DFMO, an inhibitor of ODC, suppresses cell proliferation, whereas piroxicam, a NSAID, inhibits prostaglandins, and emphasize the need to develop agent-dependent intermediate biomarker(s) to validate the efficacy of chemopreventive agent(s) in colon carcinogenesis.

6-Ketoprostaglandin F1 alpha↗

Modulating effect of amount and types of dietary fat on ornithine decarboxylase, tyrosine protein kinase and prostaglandins production during colon carcinogenesis in male F344 rats.

Epidemiological and laboratory animal model studies suggest that the effect of dietary fat on colon carcinogenesis depends on the amount and its type. In the present study, we investigated the modulating effect of high-fat diets rich in omega-3, omega-6 and omega-9 fatty acids on liver, colon and small intestine mucosal ornithine decarboxylase (ODC) and tyrosine-specific protein kinase (TPK) activities and plasma, liver and colon mucosal prostaglandin E2 (PGE2) and 6-keto prostaglandin F1 alpha (6-keto PGF1 alpha) levels in male F344 rats. At 6 weeks of age, groups of animals were fed the low-fat diet containing 5% corn oil (LFCO), or high-fat diets containing 23.5% corn oil (HFCO), 23.5% olive oil (HFOO) and 20.5% fish oil + 3% corn oil (HFFO). Two weeks later, all animals except the vehicle-treated groups received azoxymethane (AOM) s.c. once weekly for 2 weeks at a dose rate of 15 mg/kg body wt. All animals were killed 5 days later and liver, colon and small intestine mucosa were analyzed for ODC, TPK and PGs and plasma for PGs. Carcinogen treatment enhanced the ODC and TPK activities (P < 0.0001) in the liver and colon of animals, irrespective of dietary treatment. Dietary HFCO compared with LFCO significantly increased the ODC (P < 0.01) and membrane TPK (P < 0.05) activities in the liver and colon of carcinogen-treated animals, whereas the HFOO and HFFO diets significantly (P < 0.002) suppressed the ODC and membrane TPK (P < 0.05) activities in the liver and colon mucosa compared with the HFCO diet. Carcinogen treatment also significantly (P < 0.01) increased the PG levels in plasma, liver and colon. Feeding of the HFFO diet significantly suppressed both the basal levels and ex vivo production of PGE2 and 6-keto PGF1 alpha levels compared with the HFCO diet, whereas the HFOO diet only decreased PGE2 in liver and colon. These results thus demonstrate that high levels of corn oil in the diet increase colon and liver ODC, TPK and PGs whereas high dietary levels of fish oil and olive oil suppress these activities.

6-Ketoprostaglandin F1 alpha↗

The influence of flaxseed and lignans on colon carcinogenesis and beta-glucuronidase activity.

Flaxseed, the richest source of mammalian lignan precursors, such as secoisolariciresinol diglycoside (SD), has been shown over the short term to decrease some early markers of colon cancer risk. This study determined whether over the long term flaxseed still exerts a colon cancer protective effect, whether its effect may, in part, be due to its high content of SD and whether any change in beta-glucuronidase activity plays a role in the protective effect. Six groups of male Sprague-Dawley rats were fed for 100 days either a basal high fat (20%) diet (BD), BD supplemented with 2.5 or 5% flaxseed or 2.5 or 5% defatted flaxseed (equivalent to the respective flaxseed diets) or BD with a daily gavage of 1.5 mg SD. All rats were injected with a single dose of azoxymethane (15 mg/kg body wt) 1 week prior to commencing the dietary treatments. Urinary lignan excretion, which is an indicator of mammalian lignan production, was significantly increased in the flaxseed and defatted flaxseed groups. The total activity of cecal beta-glucuronidase was significantly increased in a dose-dependent manner by the flaxseed and defatted flaxseed diet groups. Compared with the control the number of aberrant crypts per focus was significantly reduced in the distal colon of the treated rats. Four microadenomas and two polyps were observed in the control group, but not in the treated groups. The total activity of beta-glucuronidase was positively correlated with total urinary lignan excretion and negatively with the total number of aberrant crypts and the total number of aberrant crypt foci in the distal colon. There were no significant differences between the flaxseed and the corresponding defatted flaxseed groups. It is concluded that flaxseed has a colon cancer protective effect, that it is due, in part, to SD and that the protective effect of flaxseed is associated with increased beta-glucuronidase activity.

Animals↗