Atypical follicular hyperplasia with clonal rearrangement for immunoglobulin and T-cell receptor genes: biclonal proliferation of B cell and T cell.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to S Ohmori.
Explore the source record for details and available documents.
Donryu male albino rats were fed a diet containing 0.064% 3'-methyl-4-dimethylaminoazobenzene (MDAB) for 21 weeks. During the ensuing rat liver carcinogenesis, changes in the concentrations of methylglyoxal, D-lactate and glutathione as well as activities of glyoxalase I and II in liver and plasma were examined. After the start of the diet, hepatic contents of methylglyoxal and D-lactate increased to about 7 and 3 times that of the control, respectively. However, after 21 weeks the D-lactate content decreased from the elevated level, but remained at a higher level of 1.4 times the control. The hepatic glyoxalase I activity increased 1.2 to 1.7 times over the control during carcinogenesis, while glyoxalase II activity increased 160% during the precancerous state and decreased to 55% of control at 21 weeks. the hepatic level of reduced glutathione (GSH) increased and peaked after 4 weeks of the MDAB diet and decreased thereafter to 57% of the control level after 21 weeks. Both pyruvate and L-lactate levels increased in the liver and plasma of MDAB-fed rats when rats had obvious symptoms of hepatoma.
The metabolism of diacetyl (2,3-butanedione), acetoin (3-hydroxy-2-butanone), and 2,3-butanediol, which are metabolites of acetaldehyde was quantitatively investigated using rat liver homogenate, liver perfusion, and in vivo experiments. Diacetyl and acetoin were reduced to 2,3-butanediol in these experiments, but acetoin and 2,3-butanediol were scarcely oxidized to diacetyl, indicating that the reduction reaction to 2,3-butanediol from diacetyl occurs actively in rat liver. The formation of acetoin from diacetyl required either NADH or NADPH as a reductant, while the reduction of acetoin to 2,3-butanediol required NADH. Acetoin and 2,3-butanediol were more readily accumulated than diacetyl in brain tissue.
The present study was designed to test whether hyperglycemia or hyperinsulinemia influences left ventricular mass and geometry. An echocardiogram and 75-g oral glucose tolerance test were performed in 210 normotensive and 180 mildly to moderately hypertensive male workers in a bus company who were free from cardiac diseases and were not taking medication for hypertension and diabetes mellitus. When we divided subjects into four groups according to the left ventricular geometric pattern using left ventricular mass index of 110 g/m2 and relative wall thickness (ratio of 2 x posterior wall thickness to end-diastolic left ventricular diameter) of 0.44, body mass index and systolic blood pressure were higher in those with concentric hypertrophy and eccentric hypertrophy. In addition, hemoglobin A(Ic) level and the sum of fasting and 2-hour postload serum glucose levels were higher in subjects with concentric hypertrophy. In subjects without diabetes mellitus (n=336), 2-hour postload serum insulin level and the sum of fasting and 2-hour postload serum insulin levels tended to be higher in those with concentric hypertrophy and concentric remodeling. In multiple regression analysis, the sum of glucose levels (or hemoglobin A(Ic) level) in all subjects and the sum of insulin (or 2-hour postload insulin) levels in subjects without diabetes mellitus significantly correlated with relative wall thickness, independent of age, systolic blood pressure, and body mass index. Neither glucose nor insulin levels correlated with left ventricular mass index. Our results suggest that hyperglycemia and hyperinsulinemia may promote concentric changes in the left ventricle in normotensive and mildly to moderately hypertensive men.
The administration of acetaminophen (APAP, 500 mg/kg, i.p.) produced liver necrosis and increased aspartate aminotransaminase (AST) activity in serum. The pretreatment of S-(1,2-diethoxycarbonyl)glutathione isopropyl ester (DCE-Et-GS iPr, 0.5 mmol/kg, p.o.) prevented hepatic necrosis and the elevation of serum AST activity by 99.9%. DCE-Et-GS iPr inhibited APAP-induced hepatotoxicity much more strongly than reduced glutathione (GSH), DCE-GS and other esters of DCE-GS. To clarify this protective effect, the hepatic GSH concentration was determined 2h after APAP administration. It was found that the DCE-Et-GS iPr administration significantly inhibited the GSH depletion caused by APAP, suggesting that the protective effect of DCE-Et-GS iPr on APAP-induced hepatotoxicity was due, at least in part, to the retention of hepatic GSH level.
The stereoselectivity in 4-hydroxylation of bunitrolol (BTL), a beta-adrenoreceptor blocking agent, was examined in liver microsomes from monkeys (marmosets and Japanese monkeys) and compared with the results of human liver microsomes. The formation of (+)-4-OH-BTL from (+)-BTL from (+)-BTL was significantly higher than that of (-)-4-OH-BTL from (-)-BTL in the liver microsomal fractions from the two kinds of monkeys. The 4-OH-BTL-forming activity from racemic BTL was significantly lower than from enantiomeric BTL, indicating a possible metabolic interaction between BTL enantiomers. The in vitro profiles observed in the monkeys were very similar to those in humans, but the stereoselectivity in BTL metabolism [(+)-BTL > (-)-BTL] in the primates was found to be reverse to that in rats [S. Narimatsu et al., Anal. Biochem., 222, 256-261 (1994)]. The 4-OH-BTL-forming activity from BTL enantiomers was significantly suppressed by quinidine and quinine, while the former was more potent than the latter, and also by alpha-naphthoflavone. Furthermore, the activity was also suppressed by antisera against rat cytochromes P450-2D2 and -1A2 in concentration-dependent manners. However, kinetics showed that enantiomeric BTL 4-hydroxylation was monophasic in liver microsomes from marmosets of both genders and from male Japanese monkeys. These results suggest that cytochrome P450-2D and -1A enzymes with similar Km values are involved in BTL 4-hydroxylation in monkey liver microsomes.
To elucidate the effect of glucose intolerance on cardiovascular disease in the current Japanese population, we performed a 75-g oral glucose tolerance test in 2,427 Hisayama residents aged 40-79 years in 1988, who were free from a previous history of stroke or myocardial infarction, and followed them prospectively for 5 years. The prevalence of diabetes (NIDDM) among men was 13% and that of impaired glucose tolerance (IGT) was 20%; the corresponding values for women were 9 and 19%, respectively. The age- and sex-adjusted incidence of cerebral infarction (6.5 per 1,000 person-years, P < 0.01) and coronary heart disease (5.0 per 1,000 person-years, P < 0.05) was significantly higher in subjects with NIDDM than in those with normal glucose tolerance (1.9 and 1.6 per 1,000 person-years, respectively). In addition, subjects with IGT and NIDDM had a higher risk of cardiovascular disease including stroke and coronary heart disease than did those with normal glucose tolerance after adjustment for age and sex, namely the relative risk for IGT was 1.9 (95% CI 1.2-3.2), and the relative risk for NIDDM was 3.0 (95% CI 1.8-5.2). These associations remained significant even after controlling for six other risk factors including hypertension in multivariate analysis. Our data suggest that NIDDM is a significant risk factor for both cerebral infarction and coronary heart disease and also that IGT itself is a risk factor for cardiovascular disease in the general Japanese population today.
1. The antiepileptic agent zonisamide, 1,2-benzisoxazole-3-methanesulphonamide, was metabolized reductively to 2-sulphamoyl-acetylphenol (SMAP) not only under anaerobic conditions but also under aerobic conditions in liver microsomes of rat pretreated with phenobarbital or dexamethasone. 2. NADPH was required for the formation of SMAP from zonisamide under aerobic conditions. In addition, the reductive metabolism of zonisamide under these conditions was substantially inhibited by carbon monoxide, ketoconazole, and cimetidine, known inhibitors of cytochrome P450. 3. The formation of SMAP under aerobic conditions in liver microsomes was increased by pretreatment of rat with triacetyloleandomycin (TAO) and was increased by the treatment of the microsomes with ferricynaide. 4. These results imply that zonisamide is metabolized reductively to SMAP by a cytochrome P450 belonging to the 3A subfamily under aerobic conditions as well as anaerobic conditions.
Our previous studies demonstrated that tail suspension causes early, transient increases in osteoclastic activity, followed by a decrease in osteoblastic activity in the hind limbs of rats. To assess whether this early increase in bone resorption is important in the development of disuse atrophy, the effect of YH529, a third generation bisphosphonate, was studied on hind limb atrophy in rats subjected to tail suspension. YH529 (YH group) or PBS (control group) were administered subcutaneously in 5-week-old male Wistar rats suspended for 7 days. In the control group, wet weight, calcium and phosphorus contents decreased significantly in the femur but they did not change in the humerus. In the YH group, however, these parameters did not change significantly in the femur, but both calcium and phosphorus increased significantly in the humerus. These results indicate that the inhibition of bone resorption by YH529 prevents the development of disuse atrophy induced by tail suspension. It is thus suggested that early increases in bone resorption are important for the development of disuse bone atrophy.
To study the effects of mechanical unloading on systemic calcium homeostasis, we determined the changes in serum concentration of calcium, 1,25-dihydroxyvitamin D3 and parathyroid hormone (PTH) during tail-suspension experiments in rats. The serum concentration of ionized calcium significantly increased during the 14 days of the suspension, reflecting increased bone resorption in the hind limbs. This hypercalcemic condition should cause suppression in PTH secretion. Indeed, serum PTH levels decreased on Day 3 of the suspension. This decrease was associated with lower serum levels of 1,25-dihydroxyvitamin [correction of dihyroxyvitamin] D3 probably due to a decrease in the activity of 1 alpha-hydroxylase in the kidneys resulting from a decrease in PTH secretion. Since it is known that 1,25-dihydroxyvitamin D3 stimulates osteoblastic function, it is suggested that endocrine responses evoked by tail suspension aggravate disuse atrophy of the hind limbs.
The ability of linetastine (TMK688, 1-[¿5'-(3"-methoxy-4"-ethoxycarbonyloxyphenyl)-2',4'-pentadieno yl¿ aminoethyl]-4-diphenylmethoxypiperidine, CAS 110501-66-1) to inhibit leukotriene production and to antagonize the effect of histamine was examined in comparison with the ability of azelastine, an antiallergic drug having an antihistamine activity. Linetastine and its active metabolite TMK777 (1-[¿5'-(3"-methoxy-4"-hydroxyphenyl)-2',4'-pentadienoyl¿ aminoethyl]-4-diphenylmethoxypiperidine, CAS 101619-11-8) inhibited the release of leukotrienes B4 and C4 from calcium ionophore-stimulated human leukocytes. The respective IC50 values of leukotriene B4 were 1.2 x 10(-7) mol/l and 8.6 x 10(-8) mol/l, and those of leukotriene C4 were 1.5 x 10(-7) mol/l and 7.1 x 10(-8) mol/l. Azelastine also inhibited the release of leukotriene B4 and C4, but its IC50 values were higher than 1 x 10(-5) mol/l. Linetastine at 1-10 mg/kg p.o. inhibited the increase in leukotriene B4 and C4 production in the lungs during late asthmatic responses in actively sensitized guinea-pigs. The effect of 3.2 mg/kg lasted for more than 16 b. Since repeated oral administration of linetastine, 1 mg/kg once a day for 7 successive days, showed the same inhibitory effect on the increase in respiratory resistance and the leukotriene production as single oral administration, the effect of linetastine was neither tachyphylactic nor cumulative. Azelastine at 10 mg/kg had no effect on the leukotriene production. Linetastine TMK777 and azelastine dose-dependently inhibited the histamine-induced contraction of isolated guinea-pig trachea in a noncompetitive manner, the respective pD2 values were 7.28, 7.98 and 8.07. Linetastine inhibited histamine-induced bronchoconstriction dose-dependently at 1-10 mg/kg (p.o.) in guinea-pigs, and the effect lasted for more than 24 h. Repeated oral administration of linetastine, 0.32 to 3.2 mg/kg once a day for 7 successive days inhibited the histamine-induced bronchoconstriction, the same as single oral dosing. Azelastine at 0.32 mg/kg p.o. also showed antihistamine activity. In conclusion, linetastine inhibits both the production of leukotrienes and the effect of histamine at almost the same dose and the effects were long lasting.
As it is generally known. L-lactate is formed via the Embden-Meyerhof glycolytic pathway from triosephosphates, whereas D-lactate is formed via methylglyoxal in rat. In this paper, age-related changes in the levels of D-lactate and its related compounds in rat tissues are reported. Rats from 5 weeks to 30 months old were used in these experiments. (1) We observed that rats above 27 months old were decrepit as judged by external appearance movement and other physiological data of them. (2) The hepatic levels of D-lactate, methylglyoxal and pyruvate became markedly lower in aging rats, especially the D-lactate content in 30 month-old rats was lower by 90% than that of the 5 week-old rats. (3) As for plasma, D-lactate and phosphate levels became lower with aging, whereas levels of L-lactate and pyruvate were not altered. (4) In skeletal muscle, aging caused a lower methylglyoxal concentration. The D-lactate level was markedly decreased at the age of 30 months in muscle. (5) As for enzyme, activities of glyoxalase I and II became markedly decreased with age in livers, whereas the activity of glyoxalase I in muscle was maintained at control level and glyoxalase II increased with age.
In order to gain further insight into the protective mechanism of metallothionein (MT) against Cd cytotoxicity, the effects of in vivo Zn- or Cd-pretreatment on the cytotoxicity and alteration in cellular pH induced by Cd were examined in isolated rat hepatocytes and testicular Leydig cells. These pretreatments both induced the synthesis of MT in the hepatocytes, but not in the Leydig cells. Both pretreatments alleviated Cd cytotoxicity in the hepatocytes. Cd- or Zn-pretreatment was also effective in preventing Cd-induced cellular acidification in hepatocytes but neither pretreatment was effective in Leydig cells. In fact, Cd-pretreatment stimulated acidification in Leydig cells. Exposure in vitro of hepatocytes from untreated rats to probenecid, an inhibitor of HCO3-/Cl- exchange, also ameliorated Cd-induced cellular acidification, suggesting an involvement of HCO3-/Cl- exchange in the preventive action of MT against Cd-induced acidification. These results suggest that Cd cytotoxicity in various cells may be initiated by alterations in plasma membrane ion transport systems such as the HCO3-/Cl- exchange and consequential cellular acidification. Induction of MT, therefore, may prevent Cd cytotoxicity, at least in rat hepatocytes, by preventing an alteration in ion transport at the plasma membrane as well as by intracytoplasmic binding of the metal molecules.
Explore the source record for details and available documents.
The fabA gene of Escherichia coli encodes beta-hydroxydecanoyl thioester dehydrase (HDDase), a pivotal enzyme in the biosynthesis of the unsaturated fatty acid cis-vaccenic acid, through the anaerobic pathway. This enzyme is specific to bacterial fatty acid biosynthetic pathways, although other enzymes for fatty acid synthesis are very similar in plants and bacteria. We constructed chimaeric plant expression vectors, pfab21 and pfab22, carrying the fabA gene under the transcriptional control of the cauliflower mosaic virus (CaMV) promoter of 35S RNA. In pfab21, fabA was placed directly under the control of the CaMV 35S promoter; whereas in pfab22, the DNA sequence coding for the chloroplast-targeting transit peptide (TP) of the pea ribulose-1,5-bisphosphate carboxylase (RuBisCo) small subunit was fused to the fabA gene in order to allow transport of HDDase to the chloroplast, the organelle responsible for de novo fatty acid biosynthesis in plants. Transgenic plants of Nicotiana tabacum were obtained by Agrobacterium-mediated transformation with pfab21 or pfab22. Expression of fabA transcripts of sizes expected from the chimaeric constructs was shown by RNA blot hybridization. The HDDase protein derived from pfab22 was correctly processed and transported to chloroplasts in transformed plants. The enzymatic activity of HDDase was also detected in chloroplasts isolated from the transformants derived from pfab22 (but not pfab21) and in total leaf protein of all transformants. However, no significant changes were observed in the fatty acid compositions, including cis-vaccenic acid, of leaf chloroplasts and self-fertilized seeds. These results are discussed in relation with the possible structural organization of plant fatty acid synthase.
The levels of glutathione and glutathione disulfide increased during the regeneration process of rat liver, reaching a maximum (about twice the control value) on day 2 and reverting to the normal level within 5 days. During this regeneration process, changes in the hepatic level of cysteine, glycine and glutamate, the substrates for glutathione synthesis, were determined. The cysteine level in liver increased, reaching a maximum on day 2 and returned to the normal level after 5 days. The levels of glycine and glutamate did not change. The enzyme activities of cystathionine-beta synthase and gamma-cystathionase for cysteine synthesis, and of gamma-glutamylcysteine synthetase, which is a limiting enzyme for glutathione synthesis, were clearly increased in regenerating liver. The increase of glutathione level could be clearly accounted for by the elevation of these enzyme activities.
Patients with idiopathic acquired sideroblastic anaemia (IASA) usually show macrocytic or normocytic anaemia and increased free erythrocyte protoporphyrin (FEP). The mean cell haemoglobin concentration is normal or slightly low. Here we report a pyridoxine-responsive IASA patient with microcytic and hypochromic anaemia and low FEL level; these features are usually seen in cases of hereditary sideroblastic anaemia. Microcytosis increased during therapy. There may be a subgroup of IASA with microcytic and hypochromic anaemia, low normal FEP and some response to pyridoxine like hereditary sideroblastic anaemia.
OBJECTIVE: To evaluate lead exposure among lead-acid battery workers in Korea, to evaluate in more detail the erythrocyte pyrimidine 5'-nucleotidase (P5N) test for lead exposure, and to evaluate the abnormal accumulation of erythrocyte pyrimidine nucleotides in the battery workers. METHODS: Activity of P5N and other biological variables were examined in 66 exposed workers in a lead-acid battery factory and in 26 non-exposed workers in Korea. RESULTS: At the factory the time-weighted average of 13 (72%) of 18 air samples for lead exceeded 0.05 (range 0.012-0.468) mg/m3. Blood lead concentration (PbB) in 39 of the 66 exposed workers was above 40 micrograms/dl, and the mean (SD) PbB in the exposed group was 45.7 (15.7) micrograms/dl. Compared with the nonexposed group, free erythrocyte protoporphyrin in the exposed group was significantly increased, whereas erythrocyte P5N activity and activity of erythrocyte delta-aminolevulinic acid dehydratase (ALAD) were significantly inhibited. Erythrocyte P5N activity had valid correlation biologically with PbB and with other biological variables, such as ALAD activity. In 28 exposed workers, the concentration of erythrocyte pyrimidine nucleotides (uridine 5'-diphosphate-glucose and cytidine 5'-triphosphate) correlated inversely with P5N activity and positively with PbB. CONCLUSIONS: These findings show that the depression of erythrocyte P5N activity by lead exposure results in the accumulation of erythrocyte pyrimidine nucleotides. In general, the standard analysis of PbB performed in laboratories around the world remains the most useful index of recent exposure. The results indicate that the erythrocyte P5N activity test provides supporting evidence of lead exposure and shows the effect of lead on nucleotide metabolism.