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M Futakuchi

Publications and source records attributed to M Futakuchi.

At least 37 records · Page 2Linked to original sources

Prevention by antioxidants of heterocyclic amine-induced carcinogenesis in a rat medium-term liver bioassay: results of extended and combination treatment experiments.

The effects of 1-O-hexyl-2,3,5-trimethylhydroquinone (HTHQ) and other antioxidants on heterocyclic amine (HCA)-induced rat hepatocarcinogenesis were examined in a medium-term liver bioassay. In one study the experimental period was extended for up to 28 weeks to confirm the inhibition of 2-amino-6-methyldipyrido[1,2-a:3',2'-d]imidazole (Glu-P-1)-induction of glutathione-S-transferase placental form (GST-P) positive foci detected earlier in an 8-week experiment. Six-week-old male F344 rats were given a single i.p. injection of diethylnitrosamine (DEN) (200 mg/kg b.w.), and starting 2 weeks later, groups of 20 animals received a diet containing 0.03% Glu-P-1 together with 0.5% HTHQ, Glu-P-1 alone, HTHQ alone or a basal diet alone for 26 weeks. Three weeks after the DEN injection, animals were subjected to partial hepatectomy. The combined incidence of hepatocellular adenomas and carcinomas in the group fed Glu-P-1 alone was 89%, in contrast to 40% with simultaneous HTHQ treatment, and near the control level of 30% without Glu-P-1 and HTHQ. In the second experiment, to assess the effects of HTHQ on HCAs in combination, to mimic the human situation, after DEN initiation groups of 15 rats received diets containing a 0.0155% HCA mixture (0.003% Glu-P-1, 0.0015% 3-amino-1,4-dimethyl-5-H-pyrido[4,3-b]indole (Trp-P-1), 0.004% 2-amino-3-methyl-9H-pyrido[2,3-b]indole (MeAaC), 0.003% 2-amino-3-methylimidazo[4,5-f]quinoline (IQ) and 0.004% 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx), which are all heptocarcinogens) together with 0.5 or 0.125% HTHQ, HCA alone, 0.5 or 0.125% HTHQ alone, or basal diet alone for 6 weeks. The numbers of GST-P positive foci decreased in a dose-dependent manner to 12.2+/-3.1 and 7.2+/-2.4 by the simultaneous treatment with 0.125 and 0.5% HTHQ, respectively, from a value of 17.6+/-3.6 for the HCA mix alone. In a third experiment, after DEN initiation, groups of 15 rats were placed on diets containing 0.02% MeIQx together with 0.25% HTHQ, 0.05% phenylethyl isothiocyanate (PEITC), 1% green tea catechins (GTC) or a mixture of HTHQ, PEITC and GTC, MeIQx alone, antioxidants alone or in combination, or basal diet alone for 6 weeks. These compounds were previously shown to inhibit HCA-associated GST-P positive foci. The numbers of GST-P positive foci in rats treated with MeIQx together with HTHQ (7.7+/-2.6) or antioxidant mixture (0.4+/-2.8) were significantly lower than with MeIQx alone (12.1+/-3.1), but a clear synergistic effect was not demonstrated. These results confirmed the ability of HTHQ to inhibit hepatocarcinogenesis induced by HCAs.

Amines↗

Inhibition of DMBA-initiated rat mammary tumour development by 1-O-hexyl-2,3,5-trimethylhydroquinone, phenylethyl isothiocyanate, and novel synthetic ascorbic acid derivatives.

The effects of a synthetic phenolic antioxidant, 1-O-hexyl-2,3,5-trimethylhydroquinone (HTHQ), two novel synthetic ascorbic acid derivatives, 3-O-ethyl ascorbic acid (EAsA) and 3-O-dodecylcarbomethylascorbic acid (DAsA), and phenylethyl isothiocyanate (PEITC) on 7,12-dimethylbenz[a]anthracene (DMBA)-induced mammary carcinogenesis were examined in female Sprague-Dawley rats. Groups of 20, 7 week-old rats received an intra-gastric dose (50 mg/kg, b.w.) of DMBA, and starting one week thereafter received powdered diet containing 1.0% HTHQ, 1.0% EAsA, 1.0% DAsA, 0.1% PEITC or a basal diet alone for 35 weeks. Although the final incidences of mammary adenocarcinomas did not significantly differ among the DMBA-treated groups, multiplicities were significantly lowered in the EAsA (1.6+/-1.6 per rat, P < 0.01) and HTHQ (2.6+/-1.9, P < 0.05) animals as compared with the basal diet case (4.1+/-2.9). The average carcinoma volumes were also significantly smaller in rats given EAsA (2.1+/-3.8 cm3, P < 0.05), DAsA (2.5+/-5.3, P < 0.05) or PEITC (2.4+/-5.9, P < 0.05) than in those receiving DMBA alone (4.9+/-9.2). The results indicate that HTHQ, EAsA and PEITC all exert chemopreventive influence on the promotion/progression stage of DMBA-induced rat mammary carcinogenesis, with EAsA being particularly effective. To our knowledge this is the first documented example of an ascorbic acid derivative possessing chemopreventive potential against mammary cancer in vivo.

9,10-Dimethyl-1,2-benzanthracene↗

Highly metastatic hepatocellular carcinomas induced in male F344 rats treated with N-nitrosomorpholine in combination with other hepatocarcinogens show a high incidence of p53 gene mutations along with altered mRNA expression of tumor-related genes.

The carcinogenic and metastatic processes are thought to consist of a sequence of steps, and animal models featuring highly metastatic lesions are clearly necessary to allow analysis of the whole process of transformation from preneoplastic changes to high grade metastatic tumors, and to access effectiveness of therapeutic treatments of advanced cancers in vivo. The purpose of the present study was to establish a model and to screen for reported genetic alterations in induced lesions. In the present study, it was confirmed that lung metastasis of hepatocellular carcinomas (HCCs) induced in male F344 rats by N-nitrosomorpholine (NNM), given in the drinking water at a dose of 120 ppm for 24 weeks, was significantly enhanced by additional carcinogenic pretreatments and that a single i.p. injection of 100 mg/kg body weight N-diethylnitrosamine (DEN) alone was sufficient for that purpose. Molecular biological analyses of the induced lesions revealed point mutations in the p53 gene in 60.9% of HCCs, and elevated expression of mRNAs for p53, c-myc, c-fos, TGF-alpha, TGF-beta1, alpha-fetoprotein, GST-P, and GGT, and decreased mRNA expression of EGF and EGFR in HCCs when compared to controls. No obvious association of gene alterations with metastatic potential of primary tumors was found except for an increase in the incidence of p53 mutations. Since the process of metastasis is thought to be sequential and selective, further comparative analysis of metastatic and primary lesions should clarify the mechanisms involved in the multi-step process of metastasis.

Animals↗

The prostate: a target for carcinogenicity of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) derived from cooked foods.

Prostate tissues obtained from rats given a food-derived carcinogen, 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), at a dose of 400 ppm in the diet for 52 weeks were histopathologically evaluated and found to contain prostate carcinomas limited to the ventral lobe in 18 of 27 cases. Atypical hyperplasias were also detected in the ventral and anterior prostate as well as the seminal vesicles. 32P-Postlabeling analysis of DNA demonstrated that PhIP-DNA adducts are produced in all lobes of the prostate of rats receiving PhIP. The findings indicate that PhIP is carcinogenic to rat prostate in addition to the previously demonstrated targeting of the colon and mammary glands, providing evidence of a possible role of PhIP in human prostate carcinogenesis and highlighting the potential importance of PhIP for man.

Animals↗

Clinicopathological analysis on cancers of autopsy cases in a geriatric hospital.

It is generally accepted that cancers in the elderly are of low grade malignancy. In order to clarify this point, autopsy cases from a medical center for the elderly between 1982 and 1994 were pathologically analyzed. Three hundred and fifty (160 males, 190 females) out of a total of 871 (361 males, 510 females) autopsy cases were examined. The incidence of cancer in various age groups were found to be as follows: < or = 69 years, 24/67 (36%); 70-74 years, 40/102 (39%); 75-79 years, 54/136 (39%); 80-84 years, 79/180 (44%); 85-89 years, 66/172 (38%); 90-94 years, 59/137 (43%); 95-99 years, 17/56 (30%); and > or = 100 years, 12/21 (57%). The incidences did not significantly differ among the groups, that is, there was no age-dependency in the incidence of cancer. Furthermore, the incidences of multiple cancers (two or more different malignancies in one patient) also did not differ. However, deaths due to the cancers showed a tendency to decrease with age. The survival periods of clinical cancer cases without a surgical operation history (time period between the date of diagnosis and death), were age-related for female cases. However, the rate of distant metastasis was not age-related. The incidence of latent cancers in individuals over 85 years of age was 79/174 (45.4%) and significantly higher than the value of 69/234 (29.5%) for those under 85. The number of malignant tumors in various organs for the different age groups was also counted and the total numbers of clinical cancers and latent cancers in each organ were, 50 and 23 in the lung, 46 and 20 in the stomach, 41 and 31 in the colon, 0 and 39 in the prostate, and 14 and 0 in the mammary glands, respectively. All prostate cancers were latent cancers, and all mammary cancers were clinical cancers. These findings provide strong evidence that cancers in individuals of advanced age have less malignancy potential.

Age Distribution↗

Modification of the carcinogenic potency of quinoline, a hepatocarcinogen, by fluorine atom substitution: evaluation of carcinogenicity by a medium-term assay.

The potent mutagen, 5-fluoroquinoline (5-FQ), and non-mutagenic 3-fluoroquinoline (3-FQ) were tested for hepatocarcinogenicity using a medium-term assay system employing quinoline, a moderately mutagenic hepatocarcinogen, as a reference. F344 male rats were given a single i.p. injection of a submanifestational dose of diethylnitrosamine (DEN, 200 mg/kg). Then, quinoline, 3-FQ, or 5-FQ at two doses (0.1%, and 0.05%) was added to their diet for a period of 6 weeks, starting from 2 weeks after the DEN injection. Control groups were administered DEN alone. All rats were subjected to a partial (two-thirds) hepatectomy at the end of week 3 and sacrificed at the end of week 8. The number and areas of GST-P (placental glutathione S-transferase)-positive foci induced in the liver increased significantly as a result of treatment with 0.1% quinoline, and this increase was dramatic with 5-FQ at both doses, whereas no increases were noted with 3-FQ at either dose. Thus, the results of the medium-term carcinogenicity assay predicted that quinoline, a hepatocarcinogen, would be deprived of carcinogenicity by fluorine atom substitution at position 3, and would conversely be endowed with a higher carcinogenic capacity by substitution at position 5. A semi-quantitative relationship was demonstrated between carcinogenic and mutagenic potencies.

Animals↗

Effects of low dose mixtures of four N-nitroso compounds on hepatic foci development in the rat.

Potential synergism between four N-nitroso compounds (nitrosomorpholine, nitrosodimethylamine, nitrosodiethanolamine, nitroso-oxazolidine) in rat liver carcinogenesis was examined in the medium-term bioassay. Male F344 rats were initially given diethylnitrosamine (DEN, 200 mg/kg, ip) and beginning 2 weeks later received test chemicals for 6 weeks individually at a full or 1/4 dose of that proven to be carcinogenic individually or in combination. All animals were subjected to partial hepatectomy at week 3 and killed at week 8. Induction of immunohistochemically-demonstrated glutathione S-transferase placental form (GST-P) positive foci was evaluated. The numbers and size of GST-P positive foci were significantly higher than the control levels by the treatment with each nitrosamine at full (1/1) and one quarter doses (1/4), excepting nitrosodiethanolamine and by combination of the four chemicals at 1/4 and 1/16. Because the dose-response curves were considered non-linear for most nitrosamines, synergistic effects were not apparent for the 1/4 mixture. Interestingly, however, the values for rats treated with these four chemicals in combination at the 1/4 dose level were almost the same as the average of four individual treatments at the full dose, and those for the 1/16 dose mixture were almost the same as the average of 1/4 individual treatment groups. These results indicate that these nitrosamines worked additively, rather than synergistically, in rat liver carcinogenesis.

Animals↗

Low susceptibility of the spontaneously hypertensive rat (SHR) to quinoline-induction of hepatic hemangioendothelial sarcomas.

Effects of quinoline and captafol, both of which are hemangiocarcinogenic agents, were investigated in spontaneously hypertensive rats (SHR). Male SHR and Wistar Kyoto rats (WKY), the parent strain of SHR, were administered quinoline (0.2%) or captafol (0.15%) supplemented in the diet for 32 weeks. Resultant incidences of hepatic hemangioendothelial sarcomas were in animals receiving quinoline 93% for WKY and only 7% for SHR. A few hepatocellular nodules were also induced in both strains. No histopathological lesions were observed in the other organs. Thus, the SHR proved unexpectedly less susceptible to vascular carcinogenicity than its WKY counterpart.

Animals↗

Increased risk of mammary carcinoma development following transplacental and trans-breast milk exposure to a food-derived carcinogen, 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), in Sprague-Dawley rats.

Effects of transplacental and trans-breast milk exposure to a food-derived mammary and colon carcinogen, 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), were investigated in rats. Female Sprague-Dawley rats were administered PhIP in the diet (100 ppm) for 4 weeks before mating with nontreated males and also during gestation and lactation. As controls, additional females were maintained on the basal diet without PhIP and mated as with the treated animals. The offspring of both groups were subdivided for each sex at weaning into three dietary groups receiving 100, 25, and 0 ppm and were killed at 47 weeks of age. Effects of the transplacental and neonatal exposure to PhIP on mammary carcinogenesis were most evident in females administered 25 ppm PhIP after weaning; the incidence and multiplicity of adenocarcinomas in offspring from the PhIP fed dams (42.9%, 0.62/rat) was significantly higher than the value for offspring from nontreated dams (4.8%, 0.05/rat). Furthermore, in the basal diet groups, the incidence of adenocarcinomas in females was higher, albeit not significantly, in offspring of the PhIP-treated than the nontreated dams (16.7%, 0.22/rat as compared with 3.3%, 0.07/rat). Although the highest incidence of mammary adenocarcinomas was found in the female progeny given 100 ppm PhIP from PhIP-treated dams (70.0%, 1.55/rat), this was only slightly higher than the 61.9% and 0.90/rat of the same dose group from the nontreated dams. In males, no apparent effects of transplacental and neonatal exposures were evident. In a separate experiment, excretion of PhIP into breast milk and transfer of PhIP to fetuses and neonates with resultant hepatic PhIP-DNA adduct formation were demonstrated. Thus, maternal exposure to this food-derived carcinogen may be a critical risk factor for generation of mammary carcinomas.

Animals↗

Ki-ras mutations with frequent normal allele loss versus absence of p53 mutations in rat prostate and seminal vesicle carcinomas induced with 3,2'-dimethyl-4-aminobiphenyl.

We have developed a prostate carcinogenesis model in Fischer 344 rats using 3,2'-dimethyl-4-aminobiphenyl (DMAB) as a carcinogen to examine various potential modifying factors. In this study, mutational changes in the ras and p53 genes were assessed in DMAB-induced rat prostate and seminal vesicle carcinomas by single-strand conformation polymorphism analysis and subsequent direct DNA sequencing. Eight of 22 prostate adenocarcinomas (three of nine (33.3%) from the ventral lobe and five of 13 (38.5%) from the dorsolateral lobe, including three transplantable tumors) and one of 11 seminal vesicle adenocarcinomas (9.1%) demonstrated point mutations in the Ki-ras gene. One prostate malignant fibrohistiocytoma examined was negative. Among the positive cases, five (three ventral prostate carcinomas and two transplantable tumors) also showed loss of the normal allele. In contrast, other than one mutation in the p53 gene in the malignant fibrohistiocytoma, there were no mutations in the Ha-ras or p53 genes. These results indicate that mutational activation of the Ki-ras gene, but not of the Ha-ras or p53 genes may play a mechanistic role in prostate and seminal vesicle carcinogenesis by DMAB and that a loss of the normal allele of the Ki-ras gene may also be involved in the process.

Adenocarcinoma↗

Site-specific effects of testosterone propionate on the prostate of rat pretreated with 3,2'-dimethyl-4-aminobiphenyl: dose-dependent induction of invasive carcinomas.

It has been shown that testosterone propionate (TP) strongly promotes induction of invasive carcinomas in previously initiated accessory sex organs. In this study, in order to clarify the dose-dependence of this promotion, TP was given at 3 different levels (high, medium or low doses) using different sizes (2, 1 and 0.5 cm long) of Silastic tube for 40 weeks after administration of 3,2'-dimethyl-4-aminobiphenyl to male F344 rats. The data showed development of invasive carcinomas in the dorso-lateral and anterior prostate and in the seminal vesicle to be dose-dependent with the high dose of TP being most effective for tumor induction. Average levels of serum testosterone were approximately 800, 600, 300 and 150 ng/dl in rats given the high to low doses and in control rats, respectively. Development of neoplastic lesions in the ventral prostate demonstrated an inverse dependence on the dose of TP. These findings, together with previous data, suggest that the tumor-promoting potential of TP on rat prostate is unlikely to be simply due to its androgenic action and other factors should also be considered.

Aminobiphenyl Compounds↗

Hepatocyte growth factor enhancement of preneoplastic hepatic foci development in rats treated with diethylnitrosamine and N-ethyl-N-hydroxyethylnitrosamine.

Effects of hepatocyte growth factor were investigated in a two-stage rat liver carcinogenesis protocol. Male F344 rats were first treated with diethylnitrosamine (200 mg/kg, i.p.) and then, starting two weeks later, with N-ethyl-N-hydroxyethylnitrosamine (EHEN) for 6 weeks at a dose of 0.01% in drinking water. Hepatocyte growth factor, which was injected i.v. at a dose of 200 micrograms/kg body weight one (at week 3) or two times (at weeks 3 and 4) during EHEN administration, significantly increased the development of preneoplastic glutathione S-transferase placental form-positive foci. Although the observed effects of hepatocyte growth factor were weaker than that of the two-thirds partial hepatectomy (PH) performed at week 3, the present results suggest that the enhancing effects of PH performed during the promotion stage may be largely mediated through induction of hepatocyte growth factor.

Animals↗

Phenotypic alteration of hepatocellular foci in rats treated with clofibrate and phenobarbital.

In male F344 rats pretreated with diethylnitrosamine (DEN), subsequent administration of clofibrate increased the proportion of eosinophilic foci, to become the most abundant type, and reduced numbers of basophilic, clear and vacuolated foci, the total not being changed. A similar shift towards eosinophilia was also observed in phenobarbital-treated animals, but in this case clear increases in total number and area were apparent. Expression of the glutathione S-transferase placental form (GST-P) in foci was much lowered by clofibrate treatment, while the proportion of positive foci was very high in both phenobarbital and control groups. A marked contrast was found with eosinophilic foci, with 74% positive after phenobarbital as compared to only 15% for clofibrate. Thus, the decrease in GST-P positive foci by clofibrate was mainly due to increased negativity in the most abundant eosinophilic type foci. In a long-term feeding study without DEN initiation, similar negativity of foci was observed and, furthermore, only minimal effects of clofibrate on foci development was revealed in both young and old animals.

Animals↗

Inhibition of mammary gland carcinogenesis by green tea catechins and other naturally occurring antioxidants in female Sprague-Dawley rats pretreated with 7,12-dimethylbenz[alpha]anthracene.

Effects of the naturally occurring antioxidants on mammary gland carcinogenesis were examined in female Sprague-Dawley rats pretreated with 7,12-dimethylbenz[alpha]anthracene (DMBA). Groups of 15-16 7-week-old rats received a 50 mg/kg body weight intra-gastric dose of DMBA, and starting one week thereafter placed on diet containing 0.4% catechol, 1.0% gamma-oryzanol, 2.0% phytic acid, 1.0% green tea catechins (GTC), 1.0% tannic acid or basal diet alone for 35 weeks. Although the final incidences and multiplicities of mammary tumors were not significantly different between DMBA-treated groups, the numbers of survivors in the antioxidant-treated groups at the end of the experiment at week 36 were significantly higher than in the basal diet group. In particular, the survival rate of the GTC group at 93.8% strongly contrasted with that of only 33.3% for rats on the basal diet. At the end of week 18, when all the animals were still alive, the average size of palpable mammary tumors was significantly smaller in the catechol, phytic acid and catechins groups. These results indicate that antioxidants, and GTC in particular, inhibit rat mammary gland carcinogenesis after DMBA initiation.

9,10-Dimethyl-1,2-benzanthracene↗

Thirteen-week oral toxicity study of magnesium chloride in B6C3F1 mice.

Magnesium chloride (MgCl2.6H2O) was administered at dietary levels of 0 (control), 0.3, 0.6, 1.25, 2.5 or 5% to groups of 10 male and 10 female B6C3F1 mice for 13 weeks. In both sexes of the 5% treatment group a decrease in body weight was observed. While clinical signs and hematological or blood biochemistry parameters showed no treatment-related effects, histopathologically, vacuolation of kidney tubular cells was apparent in males of the 2.5 and 5% concentration groups. Thus, the study demonstrated that diet containing over 2.5% MgCl2.6H2O exerts toxic effects in B6C3F1 mice. We therefore conclude that a 2.5% level of MgCl2.6H2O in the diet is the minimal toxic dose.

Animals↗

Synergistic enhancement of hepatic foci development by combined treatment of rats with 10 heterocyclic amines at low doses.

Potential synergism between 10 carcinogenic heterocyclic amines [3-amino-1,4-dimethyl-5H-pyrido[4,3-b]indole (Trp-P-1), 3-amino-1-methyl-5H-pyrido[4,3-b]indole (Trp-P-2), 2-amino-6 methyldipyrido[1,2-a:3',2'-d]imidazole (Glu-P-1), 2-amino-dipyrido[1,2-a:3',2'-d]imidazole (Glu-P-2), 2-amino-3-methylimidazo[4,5-f]quinoline (IQ), 2-amino-3,4-dimethyl-imidazo[4,5-f]quinoline (MeIQ), 2-amino-3,8-dimethyl-imidazo[4,5-f]quinoxaline (MeIQx), 2-amino-3-methyl-9H-pyrido[2,3-b]indole (MeA alpha C), 2-amino-9H-pyrido[2,3-b]indole (A alpha C) and 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP)] in rat liver carcinogenesis was examined. Male F344 rats were initially given diethylnitrosamine (200 mg/kg, i.p.) and beginning 2 weeks later received heterocyclic amines individually at doses 1/10 of that proven to be carcinogenic or in combination at 1/10 or 1/100 doses for 6 weeks. All animals were subjected to partial hepatectomy at week 3 and killed at week 8. The induction of immunohistochemically demonstrable placental glutathione S-transferase positive foci was significantly increased in rats given all 10 chemicals in combination at the 1/10 dose level while values were almost the same as in controls with the 1/100 dose mixture and the individual chemicals, except for Glu-P-1 which significantly increased foci development and Glu-P-2 and A alpha c which significantly decreased levels of foci at the 1/10 dose level. Thus apparent synergism was observed with the 1/10 dose level combination. When the data are considered together with our previous results obtained with five heterocyclic amines using 1/1, 1/5 and 1/25 dose levels, combined effects were found to be related to the number of chemicals included and the dose levels of each, with a possible isoadditive influence being common. The findings are of particular significance since heterocyclic amines and other carcinogenic agents might be simultaneously generated during cooking.

Amines↗

Effects of sodium nitrite and catechol, 3-methoxycatechol, or butylated hydroxyanisole in combination in a rat multiorgan carcinogenesis model.

Effects of simultaneous treatment with NaNO2 and butylated hydroxyanisole, catechol, or 3-methoxycatechol were examined in a rat multiorgan carcinogenesis model. Groups of 15 animals were given a single i.p. injection of 100 mg/kg of body weight diethylnitrosamine, 4 i.p. injections of 20 mg/kg of body weight N-methylnitrosourea, 4 s.c. injections of 40 mg/kg of body weight dimethylhydrazine, p.o. treatment with 0.05% N-butyl-N-(4-hydroxybutyl)nitrosamine in the drinking water for the first 2 weeks and p.o. treatment with 0.1% 2,2'-dihydroxy-di-n-propylnitrosamine in the drinking water for the next 2 weeks of the initial 4-week initiation period. Starting 3 days after the completion of these carcinogen treatments, animals were given diets containing 2% butylated hydroxyanisole, 0.8% catechol, 2% 3-methoxycatechol, or basal diet either alone or in combination with 0.3% sodium nitrite until week 28, when complete autopsy was performed. Histological examination showed that NaNO2 strongly enhanced development of forestomach lesions but inhibited that of glandular stomach lesions in rats simultaneously given catechol or 3-methoxycatechol with or without prior carcinogen exposure. 3-Methoxycatechol promoted esophageal carcinogenesis either with or without NaNO2, but promoting effects of catechol were evident only in the presence of NaNO2. In addition, treatment with NaNO2 after carcinogen exposure enhanced forestomach carcinogenesis. These results indicate that NaNO2 can modify phenolic antioxidant-induced cell proliferation and/or carcinogenesis, particularly in the upper digestive tract.

Animals↗