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Biomedical subjects

R Hasegawa

Publications and source records attributed to R Hasegawa.

At least 19 recordsLinked to original sources

Change of membrane potential in rat urinary bladder epithelium treated with sodium L-ascorbate.

We previously showed that 5% sodium L-ascorbate (Na-AsA) in the diet promotes rat urinary bladder carcinogenesis, whereas 5% ascorbic acid (AsA) and 1% sodium chloride (NaCl) in the diet do not. In order to cast light on basic properties of these compounds regarding the rat urinary bladder, we examined membrane potential levels in the bladder epithelium of F344 rats treated with 5% Na-AsA, 5% AsA or 1% NaCl in the diet for 2, 4 or 8 weeks. Microelectrode measurement showed Na-AsA to induce hyperpolarization of the membrane potential, which was, however, lacking with AsA and NaCl from week 2 until the end of experiment. Thus a good correlation between the effects on membrane potential and tumor promoting activity could be established.

Animals

Lack of synergism among DMAB, BOP, and MNU in induction of carcinomas of the rat ventral prostate.

The present experiment was undertaken to investigate possible synergism in induction of rat prostate tumor. F344 rats were repeatedly administered the prostate carcinogens 3,2'-dimethyl-4-aminobiphenyl (DMAB),N-nitrosobis(2-oxopropyl)amine(BOP), and N-methylnitrosourea (MNU) sequentially or together at times of hormonal castration induced regenerative cell proliferation of prostate epithelial cells. Group 1 animals received two 100 mg/kg doses of DMAB, two 20 mg/kg applications of BOP, and two times 15 mg/kg of MNU. Groups 2, 3, and 4, respectively, received each of the carcinogen treatment alone. Group 5 was given 6 applications of all three in combination, each at one-third the dose administered to the other groups. The results showed a clear synergism in enhanced tumor development in the colon but not in the prostate, in which the incidence of lesions induced by the three carcinogens was similar to that with DMAB alone.

Aminobiphenyl Compounds

N-nitrosoheptamethyleneimine-induced pulmonary and esophageal carcinogenesis and effects of concomitant treatment with bleomycin in rats.

The combination effects of bleomycin with N-nitrosoheptamethyleneimine (NHMI) or dihydroxy-di-N-propylnitrosamine (DHPN) on pulmonary carcinogenesis were investigated. Male F344 rats were given NHMI (20 or 40 ppm) or DHPN (200 ppm) in the drinking water and intraperitoneally injected with bleomycin (1 mg/kg) once a week for 18 weeks and then killed at week 24. Many rats treated with NHMI died before the termination of the experiment due to toxicity or development of advanced esophageal carcinomas, considered to be the main cause of death. Detailed histological examination performed on rats killed at week 24 revealed no statistically significant effects of bleomycin on NHMI or DHPN induction of neoplastic lesions in the lung or esophagus, although pulmonary carcinomas were only found in two rats treated with NHMI plus bleomycin. Under the present experimental conditions, NHMI exerted stronger carcinogenic activity in the esophagus than in the lung, and no obvious modifying effects of simultaneously administered bleomycin were evident on NHMI- or DHPN-induced pulmonary carcinogenesis.

Adenoma

Effect of acyl derivatives of 4,4,4-trifluoro-1-phenyl-1,3-butanedione on 2-acetylaminofluorene-induced glutathione S-transferase positive foci in the rat liver.

Acyl derivatives of 4,4,4-trifluoro-1-phenyl-1,3-butanedione (TFPB), 1-benzoyl-2-trifluoromethyl-2-acetoxyethene (BTAE), and 1-benzoyl-2-trifluoromethyl-2-(4-methylthio)benzoyloxyethene (BTME), were synthesized and investigated for inhibition of tRNA binding by N-acetoxy-2-acetylaminofluorene (N-AcO-AAF), and induction of glutathione S-transferase placental form (GST-P) positive foci in the rat liver by 2-acetylaminofluorene (2-AAF). Male F344 rats were given BTAE or BTME intraperitoneally and 2-AAF by intragastric intubation. Two weeks following the treatment, the rats were maintained on the diet containing 0.05% phenobarbital for an additional 6 weeks and then killed. Development of GST-P positive foci was not affected by concomitant treatment with BTAE or BTME. These two compounds inhibited the in vitro binding of N-AcO-AAF to tRNA. Thus, although these diacylmethane derivatives had the in vitro inhibitory activity, they did not inhibit tumor-initiating activity of 2-AAF in the rat liver.

2-Acetylaminofluorene

Analysis of carcinogenic activity of some pesticides in a medium-term liver bioassay in the rat.

Eight pesticides were tested in a medium-term bioassay based upon the induction of preneoplastic lesions in the liver. Rats were initially given diethylnitrosamine intraperitoneally at a dose of 200 mg/kg body weight and 2 weeks later were treated with the pesticides for 6 weeks and then killed; all rats had a partial hepatectomy at week 3. Hepatocarcinogenic potential was assessed by comparing the number and area of glutathione S-transferase placental form positive foci in the liver with those of controls given diethylnitrosamine (DEN) alone. Positive results were seen with p,p-DDT and Triadimefon. Permethrin (mixture of 39% cis form and 61% trans form) showed borderline results. Permethrin (25/75), Deltamethrin, Cypermethrin (52/48), while Trimorphamide and Propineb gave negative results. Our findings provide experimental evidence to indicate that compounds active in this assay have a potential for liver carcinogenicity in rodents.

Animals

Effects of antioxidants on induction of micronuclei in rat peripheral blood reticulocytes by potassium bromate.

Micronucleus induction in male F344 rat peripheral blood by potassium bromate (KBrO3), a rat renal carcinogen, and its inhibition by several antioxidants were studied using the acridine orange supravital staining method. The frequency of micronucleated reticulocytes (MNRETs) peaked 32 h after a single i.p. treatment of rats with KBrO3 at a dose of 60 mg/kg. Co-treatment with glutathione (GSH) or cysteine (Cys) i.p. at doses of 800 mg/kg and 400 mg/kg, respectively, 30 min before and 30 min after the KBrO3 treatment significantly inhibited the micronucleus induction by KBrO3. Daily i.g. administration of vitamin C for 5 days at a dose of 200 mg/kg/day was also effective in protecting against micronucleus induction by KBrO3 given on the 4th day. However, co-treatment with superoxide dismutase in liposome-encapsulated form by i.p. injection at a dose of 18,000 U/kg 30 min before and 30 min after the KBrO3 application exerted no effect. The results indicate that antioxidants, especially sulfhydryl compounds, have protective potential against the clastogenicity of KBrO3, also suggesting that active oxygen species may play an important role in its clastogenicity.

Acridine Orange

Liver medium-term bioassay in rats for screening of carcinogens and modifying factors in hepatocarcinogenesis.

The present report describes a study of the hepatocarcinogenic potential of a second large assay series of 94 compounds carried out using the rapid bioassay system (DEN-PH model) developed in this laboratory and based on the two-step concept of hepatocarcinogenesis. Male F344 rats were initially given a single dose of diethylnitrosamine (DEN, 200 mg/kg body weight ip) and, starting 2 wk later, were treated with test compounds for 6 wk and then killed, all rats being subjected to a two-thirds partial hepatectomy at wk 3. Carcinogenic potential was scored by comparing the numbers (no./cm2) and areas (mm2/cm2) of induced glutathione S-transferase placental form (GST-P) positive foci in the livers of groups of about 15 rats with those of corresponding control groups given DEN alone. Positive was scored for a significant increase (P < 0.05) in quantitative values of GST-P positive foci, negative for no change or a decrease. Results for the 94 compounds were also compared with previously published data from Salmonella/microsome (Ames) tests and long-term carcinogenicity studies in rats and mice. Of the known liver carcinogens, 14 out of 14 (100%) mutagenic (Ames test) compounds and 10 out of 12 (83%) non-mutagenic compounds gave positive results in our DEN-PH system (mean 92%). Two hepatocarcinogenic peroxisome proliferators did not enhance the development of GST-P positive foci. Carcinogens other than hepatocarcinogens gave fewer positive results (five out of 17, 29%). One of the 13 compounds reported as non-carcinogenic, malathion, gave positive results in the DEN-PH assay, suggesting that this compound is a weak hepatocarcinogen or tumour promoter for hepatocarcinogenesis based on the two-stage hypothesis for carcinogenesis. The present study also provided information regarding the inhibitory potential of nine compounds. The practical usefulness and benefits of the DEN-PH protocol for the rapid screening of carcinogenic agents are discussed.

Animals

Pathological markers for non-genotoxic agent-associated carcinogenesis.

A variety of positive or negative enzyme altered foci have been proposed as preneoplastic marker lesions in the rat liver. Frozen sections are required in some cases. We have compared the suitability of various histochemically or immunohistochemically demonstrated markers and concluded that immunohistochemically-stained glutathione S-transferase placental form (GST-P) positive foci are particularly useful for practical application in risk assessment. Advantages include ease of quantitative foci analysis on a number of samples since acetone or formalin-fixed paraffin blocks can be used and clear contrast of foci against the surrounding liver tissue facilitates recognition. We have established a liver medium-term bioassay model of 8 weeks' duration using diethylnitrosamine as an initiator and GST-P positive foci as the endpoint lesions. At present, 58 non-genotoxic chemicals for which carcinogenicity data are available have been examined and many carcinogenic agents, mostly liver carcinogens, have been satisfactorily detected as having carcinogenic potential. Exceptional examples are two peroxisome proliferators, clofibrate and DEHP. For these chemical, several peroxisomal enzymes such as catalase and enoyl CoA hydratase have been tested as markers.

Animals

Generation of active oxygen species in vitro by the interaction of potassium bromate with rat kidney cell.

Active oxygen species derived from the interaction of potassium bromate (KBrO3), a rat renal carcinogen, with cells from rat kidney and other organs were examined by electron spin resonance spectrometry using the spin trapping agents 5,5-dimethyl-1-pyrroline-N-oxide (DMPO) and 2,2,6,6-tetramethylpiperidine (TEMP). DMPO-OH, an indicator of hydroxyl radical production, was generated from KBrO3 by kidney cells or homogenate, but not by liver preparations and to only a limited extent by heart and brain homogenates, suggesting relative kidney specificity. To assess what chemical components are responsible for production of DMPO-OH, several physiologically related materials were examined. Glucose, saccharose, albumin and methyl linolate were found not to be involved in the KBrO3 reaction, but reduced glutathione and also ferric ions participated to produce DMPO-OH. In addition, DMPO-OH production derived from the reaction of KBrO3 with kidney homogenate was not affected by superoxide dismutase, catalase or hydroxyl radical scavengers such as DMSO or ethanol, but was effectively inhibited by singlet oxygen scavengers such as histidine and NaN3, implying singlet oxygen production. To assess this possibility, TEMP was used as a trapping agent, and TEMPO, derived from singlet oxygen, was found to be produced by the reaction of KBrO3 with homogenates of kidney, but not of liver. Furthermore, singlet oxygen production was confirmed by studies of chemiluminescence using 2-methyl-6-phenyl-3,7-dihydroimidazo[1,2a]pyrazine-3-one. As a control, DMPO-OH was also demonstrated to be produced by a known singlet oxygen source, toluidine blue plus light. The results thus indicate that singlet oxygen is a very probably candidate for the active oxygen species generated in the specific interaction of KBrO3 with rat kidney cells in vitro. This raises the question of its concern with renal carcinogenicity in vivo.

Animals

Enhancement of GST-P-positive liver cell foci development by nivalenol, a trichothecene mycotoxin.

In order to elucidate whether T-2 toxin (T-2) and nivalenol (NIV), the naturally occurring trichothecene mycotoxins in food and feed, are carcinogenic or possess an ability to modulate aflatoxin B1 (AFB1)-induced hepatocarcinogenicity, a medium-term liver bioassay was carried out. F344 male rats were given a single i.p. injection of diethylnitrosamine (DEN, 200 mg/kg), and then fed the test trichothecenes in diet (2 and 5 p.p.m. T-2 or 6 p.p.m. NIV) for 6 weeks beginning 2 weeks after the injection. Some control groups received DEN alone. For synergism between AFB1 and the trichothecenes, DEN-initiated rats as above were given a single i.p. injection of AFB1 (0.5 mg/kg) 2 weeks later and were fed a NIV-containing diet (6 p.p.m.) for 6 weeks. The other control group received the vehicle alone. Control rats not initiated with DEN were also treated with AFB1, NIV or T-2 alone as above. All rats were subjected to a two-thirds partial hepatectomy (PH) at week 3 and killed at week 8, and liver sections were analyzed by glutathione S-transferase placental form (GST-P) expression. In rats that did not receive DEN, AFB1 alone enhanced both the numbers and areas of GST-P-positive foci as reported earlier, while NIV or T-2 alone induced no marked changes. In rats initiated with DEN, AFB1 caused a marked expression of GST-P, and thus the hepatocarcinogenicity of AFB1 was reconfirmed. The expression of GST-P foci in rats fed T-2 or NIV was found to be at background level, indicating that the hepatocarcinogenicity was not predicted for the trichothecene mycotoxins such as T-2 and NIV by this medium-term bioassay system. In the group initiated by DEN followed by AFB1, on the other hand, an elevation of both the numbers and areas of GST-P-positive foci was observed by the subsequent feeding of rats with NIV, and this elevation was statistically significant from the sum totals of individual data of AFB1 or NIV alone. From this evidence, it is predicted that NIV causes an enhancing effect on AFB1-induced hepatocarcinogenesis.

Animals

Relationship between calculus formation and carcinogenesis in the urinary bladder of rats administered the non-genotoxic agents thymine or melamine.

Urinary bladder lesions induced by administration of thymine or melamine were investigated in male F344 rats. Animals, 6 weeks old at the beginning of the experiment, received either 3.0 or 1.0% thymine or 3.0, 1.0 or 0.3% melamine in the diet for 36 weeks followed by a 4 week period without chemicals, the total observation time being 40 weeks. Carcinomas of the urinary bladder were observed in 1/20 (5%) rats in each of the 3.0% thymine and 1.0% melamine groups, and in 15/19 (79%) animals given the 3.0% melamine treatment. Papillomas were induced in 9/20 (45%), 12/19 (63%) and 1/20 (5%) among rats receiving the 3.0% thymine, 3.0% and 1.0% melamine treatments respectively. Exploratory laparotomy at the end of week 36 revealed calculus formation in 9/10 (90%), 10/10 (100%) and 7/10 (70%) rats in these groups. In the ureter of the 3.0% melamine treated group, a carcinoma and papillomas were induced in 1/19 (5%) and 3/19 (16%) animals respectively. However, no tumors were observed in the renal pelvis in any of the other treated groups. Thus, administration of 3.0% thymine in the diet results in calculus formation in the urinary bladder of F344 rats, and is associated with development of tumors. It was also confirmed that a 3.0% dose level of melamine in the diet induces tumors in both the urinary bladder and the ureter.

Animals

Dose-dependent formation of preneoplastic foci and DNA adducts in rat liver with 2-amino-3-methyl-9H-pyrido[2,3-b]indole (MeA alpha C) and 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP).

Dose responses to two heterocyclic amines, 2-amino-3-methyl-9H-pyrido[2,3-b]indole (MeA alpha C) and 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), in induction of glutathione S-transferase placental form positive liver cell foci (GST-P+ foci) and DNA adduct formation in the liver were examined in male F344 rats. Beginning 2 weeks after a single diethylnitrosamine (DEN) injection (200 mg/kg, i.p.), rats received MeA alpha C or PhIP in the diet at various doses for 6 weeks. All rats were subjected to two-thirds partial hepatectomy (PH) 1 weeks after the test agents were added to the diet and were killed 8 weeks after DEN initiation. MeA alpha C (100, 200, 400 and 800 p.p.m.) significantly increased numbers and areas of GST-P+ foci over control levels in all dose groups with a clear dose-response. In contrast, PhIP (50, 100, 200 and 400 p.p.m.) only equivocally increased foci development in the highest dose group and rather was associated with decrease in the lower dose groups. DNA adduct formation assessed by 32P-postlabeling demonstrated a dose-dependent increase with both chemicals, the levels being much higher with MeA alpha C. Thus, two highly mutagenic heterocyclic amines that are produced in broiled foodstuffs exerted different influence on GST-P+ foci development and DNA adduct formation; these findings are consistent with liver carcinogenicity in rats and/or mice.

Animals

Histogenesis of human stomach cancers based on assessment of differentiation.

The histogenesis of human stomach cancer was assessed based on the determination of the differentiation of component cancer cells. Specimens of 229 surgically obtained primary gastric cancers were used. Histochemical staining of mucins [paradoxical concanavalin A, galactose oxidase-Schiff (GOS), and sialidase-GOS sequence] and immunohistochemical demonstration of pepsinogens (Pg) I and II allowed the differentiation of gastric elements including mucous neck cells, pyloric gland cells, and surface mucous cells as well as intestinal goblet and absorptive cell types. Of 122 papillary and tubular adenocarcinomas, the proportion consisting mainly of intestinal type cells increased with progression from 22.9% (early) to 41.9% (advanced). Similarly, intestinal features increased with progression from 8.3% (early) to 25.4% (advanced) in the 107 poorly differentiated adenocarcinomas, signet ring cell carcinomas, and mucinous adenocarcinomas studied. A phenotypic shift from gastric- to intestinal-type expression was thus observed with progression of each histologic type of gastric cancer. Furthermore, tumors consisting mainly of gastric-type cells were commonly found within intestinal metaplastic mucosa, suggesting that this latter is not a preneoplastic lesion for gastric cancers in humans.

Adult

Suppression of diethylnitrosamine-initiated preneoplastic foci development in the rat liver by combined administration of four antioxidants at low doses.

Potential synergism between 4 antioxidants acting at low doses on development of glutathione S-transferase placental form (GST-P)-positive liver cell foci was examined in male rats initially given diethylnitrosamine (200 mg/kg, i.p.). Beginning 2 weeks after the initiation, rats received the antioxidants, individually or in combination, in the diet for 6 weeks. All rats were subjected to two-thirds partial hepatectomy at week 3 and killed at week 8. The numbers and areas of GST-P-positive foci were significantly decreased by single treatment with butylated hydroxyanisole (BHA, 1%), tert-butylhydroquinone (TBHQ, 1%) and catechol (0.8%), but not with sesamol (0.5%). Combined treatments (BHA + TBHQ, catechol + sesamol, or all 4 chemicals) at a quarter of the above dose levels resulted in decrease in numbers and areas of foci to levels less than the sums of individual inhibition data obtained with the one-quarter levels. Although these combined effects were not statistically significant in the additive model, the results indicate possible synergistic suppression of carcinogenesis by low-dose combined treatment with anti-cancer agents and the usefulness of the present protocol for this type of analysis.

Animals

Enhancing effects of harman and norharman on induction of preneoplastic and neoplastic kidney lesions in rats initiated with N-ethyl-N-hydroxyethylnitrosamine.

The modifying potential of two nephrotoxic agents, harman and norharman, on N-ethyl-N-hydroxyethylnitrosamine (EHEN)-induced renal and hepatic carcinogenesis was investigated in male F344/DuCrj rats. Animals were given 0.1% EHEN in their drinking water for the first 2 weeks as an initiator. Subsequently, starting 3 weeks from the commencement, they were fed diet containing these compounds at concentrations of 1000, 500 or 0 ppm until week 26, and then killed for light microscopic examination. The mean numbers of renal tubular cell hyperplasias/cm2 and those of tumors/cm2 in rats given harman and norharman at 1000 ppm after initiation, but not at 500 ppm, were significantly increased as compared to the control values. However, neither compound modified liver carcinogenesis. It is concluded that harman and norharman show enhancing effects on rat kidney carcinogenesis, when ingested at dose levels which cause renal tubular damage.

Animals

The protective role of glutathione, cysteine and vitamin C against oxidative DNA damage induced in rat kidney by potassium bromate.

The roles of glutathione (GSH), cysteine, vitamin C, liposome-encapsulated superoxide dismutase (L-SOD) and vitamin E in preventing oxidative DNA damage and cytotoxicity in the rat kidney after administration of potassium bromate (KBrO3) to male F344 rats were investigated by measuring 8-hydroxydeoxyguanosine (8-OH-dG), an oxidative DNA product, lipid peroxidation (LPO) levels and relative kidney weight (RKW). Combined pre- and posttreatment of animals with 2 x 800 mg/kg GSH i.p. inhibited the increase of 8-OH-dG, LPO levels and RKW caused by 80 mg/kg KBrO3 i.p. administration. In contrast, pretreatment with 0.3 ml/kg diethylmaleate (DEM) i.p., a depletor of tissue GSH, was associated with elevation of 8-OH-dG, LPO levels and RKW after a 20 mg/kg KBrO3 i.p. treatment, which itself caused no change. Administration of KBrO3 itself reduced renal non-protein thiol levels, but this was inhibited by the two doses of exogenous GSH. Combined treatment with DEM and KBrO3 lowered the non-protein thiol level in the kidney more than did DEM treatment alone. Protective effects against the oxidative damage caused by KBrO3 were also observed for pre- and posttreatment with 400 mg/kg cysteine i.p., another sulfhydryl compound, and daily i.g. application of 200 mg/kg vitamin C for 5 days. However, no influence was evident after pre- and posttreatment with 18,000 U/kg L-SOD i.p. or daily i.g. 100 mg/kg of vitamin E for 5 days. The results suggest that intracellular GSH plays an essential protective role against renal oxidative DNA damage and nephrotoxicity caused by KBrO3.

8-Hydroxy-2'-Deoxyguanosine

3,2'-Dimethyl-4-aminobiphenyl-induced gallbladder carcinogenesis and effects of ethinyl estradiol in hamsters.

The effects of ethinyl estradiol (EE) on 3,2'-dimethyl-4-aminobiphenyl (DMAB)-induced carcinogenesis were examined in Syrian golden hamsters. DMAB was subcutaneously injected in corn oil at a concentration of 100 mg/kg once a week for 20 weeks and EE was administered in the diet at a dose of 0.75 ppm throughout the experiment. Some animals were killed at week 20 and all surviving ones were killed at week 50. Gallbladder tumors (adenomas and carcinomas) were induced in 6 of 15 hamsters (40%) in the DMAB + EE group and 5 of 14 (36%) in the DMAB alone group in males, and in 6 of 13 (46%) in the DMAB + EE group and 1 of 8 (13%) in the DMAB alone group in females at week 50. A clearer enhancing effect of EE on DMAB gallbladder carcinogenesis was observed for tumor multiplicity (No./animal) for both sexes; from 0.36 to 0.67 in males and from 0.14 to 0.62 in females. Thus, DMAB was demonstrated to be carcinogenic in the gallbladder of hamsters and EE enhanced this DMAB-induced gallbladder tumorigenesis.

Adenocarcinoma

Toxicity studies of a synthetic antioxidant, 2,2'-methylenebis (4-ethyl-6-tert-butylphenol) in rats. 1. Acute and subchronic toxicity.

The acute and subchronic toxicity studies on 2,2'-methylenebis (4-ethyl-6-tert-butylphenol) (MBEBP) were conducted using male and female Wistar rats. In acute toxicity test, the LD50 values were estimated to be greater than 10 g/kg BW by oral and intraperitoneal administration in each sex. In subchronic toxicity test, groups of 10 rats of each sex were fed a diet containing 0.2, 1.0 or 5.0% of MBEBP and examined at 4 and 12 weeks. Body weight gain was significantly depressed at doses of 1.0 and 5.0% in both sexes, but the depression in the 1.0% group was severer than that in the 5.0% group in males. Hematological analysis showed slight but significant decrease of hemoglobin in the 1.0 and 5.0% groups of both sexes. Urine analysis showed no remarkable changes in all treated rats of both sexes. In biochemical analysis of serum, decrease of triglyceride level and cholinesterase activity, and increase of amylase activity were observed in treated rats. Histopathologically, testicular atrophy and decrease of spermatogenesis were observed in male rats fed 1.0 or 5.0% MBEBP for 4 and 12 weeks and vacuolization of parathyroid gland cells was observed in female rats fed 1.0 and 5.0% MBEBP for 12 weeks. In subchronic test, the lowest observable adverse effect levels for MBEBP toxicity were estimated to be 171 mg/kg BW/day in male rats and 180 mg/kg BW/day in female rats.

Administration, Oral