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Increased susceptibility of adult rats to azoxymethane-induced aberrant crypt foci.

The purpose of this study was to compare azoxymethane-induced aberrant crypt foci development in the colons of young and adult rats. Young (4 weeks of age) and adult (50 weeks of age) Sprague-Dawley rats were treated with two weekly injections of azoxymethane or saline. Rats were killed either 6 or 14 weeks following the first injection, and the number, size and location of aberrant crypt foci were determined. At both the 6- and 14-week time points, the number of aberrant crypt foci in older rats was significantly greater than in young rats (P<0.01). A higher percentage of aberrant crypt foci were found in the region from the mid-colon to the cecum in older rats as compared to young rats. Colonic cell proliferation was evaluated using bromodeoxyuridine immunohistochemistry. Colonic cell proliferation indices in the rectal, mid-colon and cecal regions of young and older rats were similar in young compared to adult rats. Ten large ACF from each group were screened for mutations in the beta-catenin gene (Ctnnb1) by PCR single strand conformation polymorphism. No mutations were detected. These results demonstrate that older female rats are more susceptible to the induction of aberrant crypt foci by azoxymethane than young female rats. Differences in colonic cell proliferation or beta-catenin mutations in these two age groups do not appear to be responsible for differences in aberrant crypt foci development.

Age Factors↗

K-ras mutations in aberrant crypt foci, adenomas and adenocarcinomas during azoxymethane-induced colon carcinogenesis.

Ras mutations are an important early event in a number of carcinogen-induced rodent tumors. Colon carcinogenesis induced in rats by azoxymethane is a useful model as it mimics the adenoma-carcinoma sequence observed in humans. In addition, aberrant crypt foci develop in the rat and these lesions appear to be potentially important precursors to adenomas in colorectal cancer. Recent studies have shown that specific K-ras codon 12 and 13 mutations are present in up to 66% of carcinogen-induced rat colon adenocarcinomas. We studied the frequency of these mutations during the aberrant crypt focus-adenoma-carcinoma sequence in azoxymethane-induced Fisher F344 rats. K-ras codon 12 GAT and codon 13 GAC mutations were detected with a sensitive assay based on the amplification of DNA using the polymerase chain reaction. No mutations were present in normal mucosa. Of 27 aberrant crypt foci, K-ras mutations were identified in 2 lesions containing 5 and 10 aberrant crypts, respectively. Mutations were present in 1 of 23 and 10 of 27 adenomas and adenocarcinomas, respectively. These data suggest that K-ras mutations play a role during the stages of carcinogenesis in azoxymethane-induced rat colon cancer. The demonstration of a genetic mutation in aberrant crypt foci provides further evidence for the significance of these lesions as precursor markers of malignant potential during colorectal tumorigenesis.

Adenocarcinoma↗

Chemoprevention by amiloride of experimental carcinogenesis in rat colon induced by azoxymethane.

The effects of amiloride on the incidence and histology of colon tumors induced by azoxymethane, on the labeling index of the colon mucosa and on the activity of ornithine decarboxylase in the colon wall were investigated in Wistar rats. Rats received 10 weekly injections of 7.4 mg/kg body wt azoxymethane and s.c. injections of 5 or 7.5 mg/kg body wt amiloride in depot form every other day for 35 weeks. Prolonged administration of amiloride at a dose of 7.5 mg/kg, but not 5 mg/kg, significantly reduced the incidence of colon tumors at week 35. However, administration of amiloride had little or no significant influence on the histological types of colon tumors and cancers. Administration of amiloride at 7.5 mg/kg significantly decreased the labeling index of the colon mucosa and ornithine decarboxylase activity in the colon wall during and after administration of azoxymethane. These findings suggest that amiloride inhibits development of colon tumors. A possible mechanism of inhibition of colon carcinogenesis by amiloride is its suppression of proliferation of colon tumor cells.

Amiloride↗

Dietary copper affects azoxymethane-induced intestinal tumor formation and protein kinase C isozyme protein and mRNA expression in colon of rats.

Previous studies have show that changes in protein kinase C (PKC) isoform expression may be related to increased susceptibility of copper-deficient rats to aberrant crypt formation. The purpose of this study was to determine whether dietary copper would affect azoxymethane-induced intestinal tumor formation and PKC isozyme expression in normal colonic mucosa and tumor samples. Eighty weanling Fischer-344 rats were randomly assigned to diets that contained either 0.8 or 5.3 microg Cu/g diet. After 24 and 31 d of diet consumption, 30 rats/diet were administered azoxymethane (15 mg/kg i.p.) and 10 rats/diet were administered saline. Rats continued to consume their respective diets for an additional 38 wk. Rats injected with azoxymethane and fed the low copper diet had a significantly (P < 0.0001) greater small intestinal and total tumor incidence compared with rats fed adequate dietary copper. However, dietary copper did not affect colon tumor incidence. Low dietary copper significantly (P < 0.004) decreased PKC alpha protein expression in normal but not in tumor tissue. In contrast, low dietary copper did not affect PKC delta or zeta protein expression in either the normal or tumor tissue. PKC alpha and delta protein and mRNA expression were lower in tumor tissue than in normal tissue. These results along with previous observations suggest that dietary copper-mediated changes in PKC alpha, delta and zeta protein expression are not as important for colon tumor promotion/progression as they are for tumor initiation.

Animals↗

Tomato and garlic can modulate azoxymethane-induced colon carcinogenesis in rats.

Tomato (Lycopersicon esculentum) and garlic (Allium cepa) are important constituents of the human diet. Compounds like diallyl sulfides, diallyl disulfides and quercetin, which are active components of garlic, have known anti-inflammatory, antimutagenic activities. Similarly, active components in tomato, such as kaempferol and chlorogenic acid, have antimutagenic activities and lycopene is the most active oxygen quencher with potential chemopreventive activities. In view of this, an endeavour was made to evaluate the anticarcinogenic effect, if any, of tomato and garlic consumption individually and in combination on azoxymethane-induced colonic precancerous lesion, the aberrant crypt foci in animal model. Sprague-Dawley rats (4-5 weeks old) were injected with azoxymethane (15 mg/kg b.w.) and orally administered with 2% (w/v) of tomato, garlic and a combination of both. After 12 weeks of first azoxymethane injection, colons were assessed for aberrant crypt foci and compared with the carcinogen control group. Lipid peroxidation level and glutathione-S-transferase (GST) activity were assessed in liver as well as in colon. Furthermore, in situ cell proliferation and apoptosis were estimated using the Brdu incorporation method and TUNEL method respectively. It was observed that aberrant crypt foci were reduced in all treated groups (by 32.11% in garlic, by 76.14% in tomato and by 55.96% in the combination group). Among treated groups, GST activity was found to be induced in both liver and colon, whereas considerable reduction in lipid peroxidation level was observed in liver as well as in colon with respect to the carcinogen control group. Significant reduction in Brdu labelling index and increase in apoptotic index in colon was noted in the treated groups. These results suggest that tomato and garlic suspensions have a protective effect on colon carcinogenesis, which is mediated by modulation of different biological pathways during carcinogenesis.

Animals↗

Enhanced formation of azoxymethane-induced colorectal adenocarcinoma in gammadelta T lymphocyte-deficient mice.

T cell receptor (TCR) gammadelta-positive T lymphocytes, which are localized mostly within the intraepithelial space of intestinal epithelium, have been suggested to play a role in maintaining the normal configuration of intestinal epithelium. However, the role of TCRgammadelta-positive T lymphocytes in the formation and progression of colorectal adenocarcinoma that originates from colorectal epithelial cells remains to be elucidated. In this study, TCRalphabeta and TCRgammadelta-positive T lymphocyte-deficient mice (homozygous TCRa and TCRd-gene knockout mice) and the background wild-type mice were administered azoxymethane, and the formation of macroscopic tumors and microscopic aberrant crypt foci in colorectal mucosa were compared among the three types of mice. Well-differentiated adenocarcinoma appeared 5 months after 5 administrations of azoxymethane (10 mg/kg weight) only in a few TCRd -gene knockout mice and the frequency of the carcinoma-bearing mice was increased at 7 and 9 months after the administration. Aberrant crypt foci were also detected in the colorectal mucosa of TCRd -gene knockout mice to a greater extent than in colorectal mucosa of TCRa-gene knockout mice 1 month after the azoxymethane administration. These results suggest that TCRgammadelta-positive T lymphocytes, which are present mainly in the intraepithelial space, play a role in suppression of the formation and progression of colorectal adenocarcinoma in mice.

Adenocarcinoma↗

Immunohistochemical characterisation of the local immune response in azoxymethane-induced colon tumours in the BDIX inbred rat strain.

The aim of the present study was to characterise the local immune response in a chemically induced colon tumour model in the rat. Elucidating the character of the immune reaction may contribute to optimizing immunotherapeutic regimens for colon carcinoma in this model. Colon cancer was induced by four weekly subcutaneous azoxymethane injections in inbred rats of the BDIX/OrlIco strain in two separate studies. Azoxymethane-induced tumours show many similarities to spontaneously occurring human colon carcinomas with respect to histopathological appearance. In our studies, the overall inflammatory reaction of the submucosa below the tumour was evaluated in haematoxylin-eosin-stained tissue sections. Phenotypic characterization of leukocyte infiltration in the tumour tissue was performed by immunohistochemical staining using antibodies detecting various leukocyte subsets, i.e. T cells, natural killer cells, macrophages/monocytes, and dendritic cells. The results showed that the azoxymethane-induced colon tumours were strongly infiltrated by macrophages. Furthermore, the tumours showed a moderate degree of infiltrating CD4-positive cells. Very few natural killer, CD8-positive T cells and dendritic cells (identified by the OX62 antibody) were seen in the tumour tissue. Virtually no CD25-positive cells were found. This immunohistochemical characterisation of the tumour-infiltrating immune response in this rat model could form the basis for studies aimed at developing new immunotherapeutic regimens for human colon cancer.

Animals↗

Cyclooxygenase-1 and cyclooxygenase-2 gene expression in human colorectal adenocarcinomas and in azoxymethane induced colonic tumours in rats.

Increased prostaglandin E2 synthesis is considered important in both human and experimental colon carcinogenesis. It is not known, however, which cyclooxygenase isoenzyme is involved. The aim of this study was to compare the content of mRNA for cyclooxygenase-1 and cyclooxygenase-2 in colorectal cancers with the content in normal colonic specimens. Fifteen human colorectal adenocarcinomas, 35 azoxymethane induced colonic tumours from rats, and specimens of normal colon were analysed by reverse transcription and polymerase chain reaction (RT-PCR). It was found that cyclooxygenase-1 and cyclooxygenase-2 mRNA were increased in azoxymethane induced colonic tumours, compared with specimens taken adjacent to the tumours or from the macroscopically normal intestine distant from the tumours. Cyclooxygenase-1 and cyclooxygenase-2 mRNA were increased in specimens from the macroscopically normal intestine of azoxymethane treated animals, compared with colonic specimens from saline treated rats. Cyclooxygenase-2 mRNA, but not cyclooxygenase-1 mRNA, was increased in human colorectal cancers, compared with the adjacent mucosa or macroscopically normal mucosa distant from the tumours. The results suggest that cyclooxygenase-2 is involved in the increased prostaglandin E2 synthesis in colonic cancers, and that activation of this isoenzyme is an early event in colon carcinogenesis. However, cyclooxygenase-1 may also be involved, at least in experimental colon carcinogenesis.

Adenocarcinoma↗

Effect of tea extracts, polyphenols, and epigallocatechin gallate on azoxymethane-induced colon cancer.

Studies were conducted to determine the chemopreventive efficacy of several types of tea extracts on azoxymethane-induced colon cancer in male F344 rats. After determining the maximally tolerated dosage of the tea products, their effect in a colon cancer model was investigated. Groups of 36 male F344 rats received 2 subcutaneous doses of 15 mg/kg azoxymethane (AOM) at Weeks 6 and 7. Experimental groups also received as drinking fluids 3600 ppm of black or green tea extracts, 1800 ppm of EGCG, or 1800 ppm of black or green tea polyphenols beginning at 5 weeks of age. Additional groups drank a lower dose of 360 ppm of the five tea products. The experiments were terminated 43 weeks after the first tea exposure. No evidence of toxicity was observed since the body weight gain of all groups was similar. The rats given AOM had carcinoma of the small intestine and of the colon, classified histologically as in situ carcinoma, exophytic, invasive, and Peyer's patch carcinoma. In the small intestine, most of the neoplasms were classified as invasive, but in the colon, most were exophytic. The various tea products failed to produce a significant difference in the incidence of the several types of colon and small intestine carcinoma. The multiplicity of colon cancers ranged from 1.2-2.8 in all groups. The group on 3600 ppm of green tea had a significantly higher tumor multiplicity than the control group on AOM and water. Also, the group on 3600 ppm of green tea had a significantly higher tumor multiplicity than the group on 360 ppm. The tea products did not affect the development aspects of the tumors in most groups. The mechanisms underlying these findings rest on the fact that azoxymethane is metabolized mainly by cytochrome P450 2E1, and this enzyme system is not affected by tea.

Animals↗

Colon carcinogenesis in germ-free rats with intrarectal 1,2-dimethylhydrazine and subcutaneous azoxymethane.

The effect of intestinal microflora on colon carcinogenesis by 1,2-dimethylhydrazine and azoxymethane was studied, with the use of germ-free and conventional female Fischer rats. At 7 weeks of age, germ-free and conventional rats were treated with 20 weekly intrarectal 1,2-dimethylhydrazine (20 mg per kg body weight per week) or subcutaneous azoxymethane (10 mg per kg body weight per week) doses and were autopsied 15 weeks later. Tumors were induced in the small intestine and colon of germ-free and conventional rats treated with intrarectal 1,2-dimethylhydrazine; the number of rats with colon tumors and the multiplicity of tumors were decreased in germ-free rats, compared with conventional animals. Azoxymethane given subcutaneously increased the incidence and multiplicity of colon tumors in germ-free rats, compared with conventional controls. It is concluded that the intestinal microflora alter the carcinogenic and/or cocarcinogenic effect of different compounds in the large intestine.

Animals↗

Tea can protect against aberrant crypt foci formation during azoxymethane induced rat colon carcinogenesis.

Tea shows many health promoting activities including chemopreventive action during carcinogenesis due to the presence of antioxidative polyphenolic constituents. The present experiment evaluated the anticarcinogenic role of black tea infusion on azoxymethane induced colonic preneoplastic lesions, the aberrant crypt foci in Sprague-Dawley rats. Rats were injected with azoxymethane (15 mg/kg b.w.) and received oral administration of 1% and 2% (w/v) tea infusions from first day of carcinogen application. This treatment was continued for twelve weeks and assessed for aberrant crypt foci and compared with untreated carcinogen control group. Levels of lipid peroxidation were determined in liver as well as in colon tissue. During initiation phase of carcinogenesis, glutathione-S-transferase (GST) and glutathione peroxidase (GPx) activities were also evaluated. Significant reduction in the number of aberrant crypt foci and levels of lipid peroxidation among the tea-treated groups were observed. Induction of GST and GPx activities was noted during the initiation phase of carcinogenesis. Results of the present study indicate that the protective effect of black tea infusions may be due to an outcome of antioxidative influence of tea components on azoxymethane induced carcinogenesis.

Administration, Oral↗

The combined effects of dietary fat, protein, and energy intake on azoxymethane-induced intestinal and renal carcinogenesis.

Two 3 x 3 factorial experiments were conducted to examine the effects of dietary protein (8, 16, and 32% of energy from casein) and dietary fat (12, 24, and 48% of energy from corn oil) on the initiation and promotion of azoxymethane-induced carcinogenesis in rats. For the initiation study, 33 weanling male Sprague-Dawley rats were randomized to each of nine diets fed ad libitum. Azoxymethane was administered s.c. between the fourth to sixth weeks of feeding, providing a total dose of 6 mg/100 g body weight. All rats were subsequently fed a common diet containing 16% energy from protein and 24% energy from fat for an additional 30 to 38 weeks. For the promotion study, all rats were fed a common diet containing 16% of energy from protein and 12% of energy from fat until the completion of azoxymethane administration, when 33 rats were randomized to each of nine diets varying in fat and protein content and fed these diets until sacrifice. Low-protein diets during the initiation phase were associated with increased risk of renal adenocarcinomas (P less than 0.001) and mesenchymal (P = 0.005) malignancies. No other statistically significant relationships were found between the levels of dietary fat or protein and the prevalence of malignant lesions of the small intestine, colon, or kidney in either the initiation or promotion study (although polypoid adenocarcinoma of the colon increased suggestively from 13 to 19 to 26% of rats with increasing dietary protein during initiation). Results of a multiple logistic regression analysis, combining both studies, showed that ad libitum energy intake was significantly associated with intestinal carcinogenesis. The odds of finding an intestinal adenocarcinoma increased by 6.2 +/- 2.6% (SE) for each additional kilocalorie of mean daily ad libitum intake (P = 0.014). The quintile of rats which consumed the least averaged 60 kcal/day, while the most voracious quintile averaged 74 kcal/day. This 14 kcal/day difference in mean ad libitum intake corresponded to more than a doubling (146% increase) of the odds of developing an intestinal adenocarcinoma. These studies suggest that ad libitum energy intake is a critical factor modulating experimental colon carcinogenesis.

Adenocarcinoma↗

Effect of dietary eicosapentaenoic acid on azoxymethane-induced colon carcinogenesis in rats.

The effects of eicosapentaenoic acid (EPA, n-3 polyunsaturated fatty acid) and linoleic acid (n-6 polyunsaturated fatty acid) on azoxymethane-induced colon carcinogenesis in rats were studied. Male Donryu rats were given two types of semipurified diet containing 4.7% EPA plus 0.3% linoleic acid and 5% linoleic acid. The rats were given s.c. injection of azoxymethane (7.4 mg/kg body weight once a week for 11 weeks) and sacrificed 15 weeks after the last injection of azoxymethane. The tumor incidence and tumor yields (tumors per rat) of the colon were significantly lower in rats on the EPA diet compared to those on the linoleic acid diet; i.e., 33%, 0.41 +/- 0.61 and 69%, 1.66 +/- 1.69, respectively. In the analysis of phospholipid fatty acid composition, the colon tumor showed higher levels of arachidonic acid and lower levels of linoleic acid than those in the normal colon mucosa in both diet groups. Despite the increase of arachidonic acid in colon tumor, the EPA diet suppressed the excessive production of prostaglandin E2, which may be accompanied with neoplastic formation, whereas linoleic acid diet caused a marked increase in the tumor content of prostaglandin E2 compared to normal colon mucosa. These results suggest that EPA exerts its inhibitory effect on colon carcinogenesis by modulating lipid metabolism and inhibiting prostaglandin E2 synthesis in tumor cells.

Animals↗

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

The effect of dietary intake of different levels of Menhaden fish oil on azoxymethane-induced carcinogenesis was examined in male F344 rats fed the semipurified diets. Starting at 5 weeks of age, groups of animals were fed the 5% corn oil (low corn oil) diet. At 7 weeks of age, all animals except the vehicle-treated controls were given s.c. injections of azoxymethane (15 mg/kg body weight/week for 2 weeks). After 4 days, groups of animals were fed the diets containing 4% Menhaden oil + 1% corn oil (low fish oil), 22.5% Menhaden oil + 1% corn oil (high fish oil), 5% corn oil, and 23.5% corn oil (high corn oil). Thirty-four weeks after azoxymethane injections, all animals were necropsied. High fish oil diet had no tumor promoting effect in the large intestine when compared to the high corn oil diet. There was no difference in large intestinal tumor incidence among the other dietary groups. The results of this study indicate that fish oils rich in highly polyunsaturated n-3 fatty acids do not enhance large bowel carcinogenesis and that the fatty acid composition of the dietary fat is one of the determining factors in large bowel carcinogenesis.

Animals↗

Enhanced colonic carcinogenesis with azoxymethane in rats after pancreaticobiliary diversion to mid small bowel.

Since biliary excretion of metabolites might determine the pattern of intestinal neoplasms induced by azoxymethane, the number and distribution of tumors were studied in rats after pancreaticobiliary diversion to the mid small bowel. Pancreaticobiliary diversion was performed either immediately before the first of 16 weekly injections of azoxymethane or 10 days after the last. Seven months after pancreaticobiliary diversion, persistent ileal hyperplasia was manifested by higher levels of mucosal RNA and DNA compared with controls (34--102%: P less than 0.001), while there was little residual adaptation in the colon. Qualitative and quantitative analysis of fecal bile acids 6--26 wk after pancreaticobiliary diversion showed few differences. Pancreaticobiliary diversion doubled the incidence of colonic tumors, whether operation preceded (P less than 0.005) or followed (P less than 0.02) the course of azoxymethane. Suture-line tumors were common in the small bowel, particularly in the transposed duodenal stump. Despite intense ileal hyperplasia as a consequence of pancreaticobiliary diversion, the ileum remained resistant to chemical carcinogenesis. The potentiation of colonic neoplasms by pancreaticobiliary diversion probably depends on the stimulation of colonic mucosal proliferation.

Adenocarcinoma↗

Chemopreventive effect of oltipraz during different stages of experimental colon carcinogenesis induced by azoxymethane in male F344 rats.

Oltipraz [5-(2-pyrazinyl)-4-methyl-1,2-dithiole-3-thione], a substituted 1,2-dithiole-3-thione, protects against the acute and chronic toxicities of many xenobiotics and prevents chemically induced carcinogenicity in several target organs of rodents. The effects of dietary oltipraz, fed during the initiation and postinitiation stages, on azoxymethane-induced colon carcinogenesis and on the levels of several detoxifying enzymes, namely, glutathione S-transferase, NAD(P)H:quinone reductase, and UDP-glucurinyl transferase activities, were studied in male F344 rats. At 5 weeks of age, groups of animals were fed the control diet (modified AIN-76A diet) or a diet containing 200 ppm (40% maximum tolerated dose) of oltipraz. At 7 weeks of age, all animals except those in the vehicle (normal saline solution)-treated groups were given two weekly s.c. injections of azoxymethane at a dose of 15 mg/kg body weight. Three days after the second injection of azoxymethane, the groups of animals fed the oltipraz diet were transferred to the control diet (termed the initiation period) and the groups of animals receiving the control diet were transferred to the oltipraz diet (termed the postinitiation period). All groups were continued on this regimen until the termination of the experiment at 52 weeks after the carcinogen treatment. Intestinal tumors were evaluated histopathologically using routine procedures. Liver, colonic mucosa, and tumors were analyzed for glutathione S-transferase, NAD(P)H:quinone reductase, and UDP-glucurinyl transferase activities. The results indicate that oltipraz administered during the initiation stage significantly inhibited the incidence and multiplicity of invasive adenocarcinomas of the colon (P < 0.001), as well as the multiplicity of invasive and noninvasive adenocarcinomas (P < 0.01). Feeding of oltipraz during the postinitiation phase completely suppressed the formation of invasive adenocarcinomas (P < 0.0001) and significantly inhibited the formation of noninvasive and total adenocarcinomas, as well as the multiplicity (tumors/tumor-bearing animal, P < 0.001). Furthermore, oltipraz significantly suppressed the tumor volume when administered during the initiation phase (> 80%) or the postinitiation (> 93%) phase. Animals fed the oltipraz diet during the postinitiation stage showed increased levels of glutathione S-transferase, NAD(P)H:quinone reductase, and UDP-glucurinyl transferase activities (2-6-fold). Although the precise mechanism by which oltipraz inhibits colon tumor initiation and/or promotion remains to be elucidated, it is likely that the effect during the initiation stage may be due to an alteration of carcinogen metabolism.

Adenocarcinoma↗

Importance of the fecal stream on the induction of colon tumors by azoxymethane in rats.

The effect of the fecal stream on intestinal carcinogenesis with azoxymethane was studied in male rats. Colostomies were performed approximately 2 cm distal to the cecum in 50 Sprague-Dawley rats to produce a 20-cm segment of nonfunctional large bowel; an additional 50 animals were left intact. Each of these groups was divided equally and was fed a normal diet or a diet containing 2% cholestyramine by weight. All animals were given azoxymethan s.c. At the end of 7 months all rats were sacrificed. The animals with colostomies developed significantly fewer tumors in the defunctionalized bowel than did intact animals in the same bowel segment. Cholestyramine appeared to increase the tumor yield in the large bowel of the intact animals but had no effect on the number of tumors in the defunctionalized bowel. Further, the intact animals on both dietary regimens developed a greater number of large tumors in the distal 20 cm of bowel. The results show that the fecal stream alters the carcinogenic activity of azoxymethane in the large bowel of the rat. It also appears that the carcinogen can reach its target tissue by a route other than the fecal stream.

Animals↗

Inhibition of angiogenesis as a mechanism for inhibition by 1alpha-hydroxyvitamin D3 and 1,25-dihydroxyvitamin D3 of colon carcinogenesis induced by azoxymethane in Wistar rats.

The effects of 1alpha-hydroxyvitamin D3[1alpha(OH)D3] and 1,25-dihydroxyvitamin D3[1,25(OH)2D3] on the incidence of colon tumors induced by azoxymethane and on the labeling index and angiogenesis of colon tumors were investigated in Wistar rats. Rats received 10 weekly injections of 7.4 mg/kg body weight of azoxymethane and i.p. injections of 1alpha(OH)D3 and 1,25(OH)2D3 at lower and higher doses every other day for 45 weeks. Prolonged administration of both 1alpha(OH)D3 and 1,25(OH)2D3 at a higher dose significantly reduced the incidence of colon tumors in week 45. However, administration of 1alpha(OH)D3 or 1,25(OH)2D3 had little or no effect on the histologic type of colon tumors and cancers. Administration of 1alpha(OH)D3 and 1,25(OH)2D3 at higher doses significantly decreased the labeling index, the immuno-histochemical staining for vascular endothelial growth factor and microvessel counts in colon tumors. Our findings suggest that both 1alpha(OH)D3 and 1,25(OH)2D3 inhibit development of colon tumors. A possible mechanism of inhibition of colon carcinogenesis by 1alpha(OH)D3 and 1,25(OH)2D3 is the inhibition of angiogenesis as well as an anti-proliferative effect.

Animals↗