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Biomedical subjects

S Ohmori

Publications and source records attributed to S Ohmori.

At least 145 records · Page 8Linked to original sources

Incidence and risk factors of vascular dementia and Alzheimer's disease in a defined elderly Japanese population: the Hisayama Study.

We followed 828 nondemented residents of Hisayama Town, Kyushu, Japan, aged 65 years or older (88.3% of the elderly population) for 7 years starting in 1985 in order to determine the type-specific incidence of dementia and its risk factors in the general Japanese population. Only two subjects were lost to the follow-up, during which period 103 subjects developed dementia. Morphologic examination of the brains of 89 subjects (86.4%) was made by autopsy or CT. We made the initial diagnosis of dementia based on the DSM-III-R criteria, with the diagnoses of vascular dementia (VD) being based on the NINDS-AIREN criteria and Alzheimer's disease (AD) on the NINCDS-ADRDA criteria. The incidence of VD and AD increased with age for both sexes. The age-adjusted total incidence (per 1,000 person-years) of dementia was 19.3 for men and 20.9 for women. The corresponding rates for VD were 12.2 for men and 9.0 for women, and for AD, 5.1 for men and 10.9 for women. Among the VD subjects whose brain morphology we examined, the most frequent type of stroke was multiple lacunar infarcts (42%), but half these subjects lacked a stroke episode in their histories. Multivariate analysis showed that age, prior stroke episodes, systolic blood pressure, and alcohol consumption were significant independent risk factors for the occurrence of VD. In contrast, age and a low score on Hasegawa's dementia scale were significant risk factors for AD, and physical activity was a significant preventive factor for AD.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Changes in the markers of bone metabolism following skeletal unloading.

To elucidate the mechanism in disuse bone atrophy induced by skeletal unloading, we studied the indices of bone resorption and bone formation in the femur of tail-suspended rats. The duration of the suspension ranged from 1 to 14 days. Tartrate-resistant acid phosphatase mRNA, an index used to evaluate bone resorption, increased significantly more than the controls for the first 3 days of the tail-suspension experiments, compared those in controls. Osteocalcin and alkaline phosphatase, two common markers for bone formation, were also monitored. Osteocalcin mRNA started to decrease after 3 days of suspension. Five days later, alkaline phosphatase mRNA showed a decrease. Levels of both of these mRNAs remained low for the remaining suspension period. Sequential changes in the markers for bone metabolism indicate that the transient increase in bone resorption preceded the decrease in bone formation in the development of disuse bone atrophy induced by skeletal unloading.

Acid Phosphatase↗

Catecholamine response to stress: age related modifications in tail-suspended rats.

The catecholamine response to acute stress has been shown to change with age. However, alterations under chronic stress conditions have not been established. This study attempted to determine whether aging modifies the catecholamine response to chronic stress load in rats subjected to tail suspension. Urinary excretions of epinephrine (E) and norepinephrine (NE) were monitored before and during the tail suspension experiments in rats at two different ages: 5 weeks old (young) and 18 months old (aged). Basal excretions of E and NE before the suspension were higher in the aged rats, indicating that sympathetic-adrenal medullary activities increase with age under resting conditions. The chronic stress load elicited E responses in the aged rats similar to those in the young rats. The NE responses, however, were completely different in that tail suspension caused a greater increase in NE excretion in the young rats than in the aged rats. This finding suggests that the sympathetic response to chronic stress load changes with age.

Adrenal Glands↗

[Metabolic fate of porphyrin and its precursors in porphyria and porphyrinuria].

The metabolic fate of porphyrins and its precursors in porphyria and porphyrinuria is discussed to understand their excretion into the feces or urine. Eight enzymes play important roles in the porphyrin pathway. An enzymatic defect at each step of heme synthesis will induce each typical form of porphyria with the exception of the first enzyme. Each porphyria is described according to the enzyme in the heme biosynthetic sequence. Lead, which disturbs two enzymes involved in the heme biosynthesis, is one of typical chemicals inducing porphyrinuria. Lead porphyrinuria is also described according to the enzymes in the pathway. The figure of porphyrin pathway, drawn in details in the present chapter, will make it easier to understand the heme biosynthetic pathway related to porphyria or porphyrinuria.

Aminolevulinic Acid↗

Possible occurrence of P450 related to P450 HFLb in extrahepatic tissues of human fetuses and its contribution to metabolic activation of promutagens.

P450 HFLb purified from human fetal livers has been shown to be constitutively expressed in fetal livers. In the present study, the occurrence of proteins immunochemically related to P450 HFLb in extrahepatic tissues of human fetuses and their contribution to mutagenic activation of promutagens were investigated. The mutagenic activation of aflatoxin B1 (AFB1), 2-amino-3-methylimidazo[4,5-f]quinoline (IQ), 2-amino-3,4-dimethylimidazo[4,5-f]quinoline (MeIQ) and benzo[a]pyrene were observed in human fetal extrahepatic tissues, including adrenal glands, kidneys and lungs, at varying rates. Immunoblot analysis of homogenates of extrahepatic tissues with antibodies to P450 HFLb revealed the occurrence of proteins immunochemically related to P450 HFLb in adrenal glands, kidneys and lungs. Immuno-inhibition studies suggested that in fetal adrenal gland and kidney, the proteins cross-reactive with antibodies to P450 HFLb were capable of activating IQ and MeIQ to mutagens.

Adrenal Glands↗

Expression of modified human cytochrome P450 1A1 in Escherichia coli: effects of 5' substitution, stabilization, purification, spectral characterization, and catalytic properties.

Human cytochrome P450 (P450) 1A1 is primarily an extrahepatic enzyme and is important because of its roles in the activation of polycyclic hydrocarbons and other xenobiotic chemicals. Purification of active enzyme from human tissues has not been successful. We report the expression and purification of the recombinant enzyme from Escherichia coli. A full-length cDNA of human cytochrome P450 1A1 and several modified constructs were engineered into a pCW vector and used to transform E. coli cells. Little expression was observed with the native sequence and several modified constructs, but successful expression (20-25 nmol membrane-bound P450 1A1 per liter of culture) was achieved with a construct in which the Ala codon GCT was placed in the second position and the 5'-terminal codons were maximized for AT content and minimized for the potential of secondary structure formation of the mRNA transcript. alpha-Naphthoflavone was found to protect against denaturation by detergents during solubilization and was added to buffers used for purification. The recombinant P450 1A1 was purified to electrophoretic homogeneity after two ion-exchange chromatography steps in approximately 50% yield. N-Terminal amino acid sequence analysis verified the expected first 21 residues, with the exception of the terminal Met. The isolated human ferric P450 1A1 was predominantly in the high spin state, in contrast to the orthologous rat and rabbit enzymes. Recombinant P450 1A1 catalyzed 7-ethoxyresorufin O-deethylation and benzo[a]pyrene 3-hydroxylation with Km values of 0.58 and 15 microM and Vmax values of 8.3 and 2.5 nmol min-1 (nmol P450 1A1)-1, respectively. The successful expression and purification of human P450 1A1 should increase the availability of this enzyme and the generation of antibodies for further biochemical and other biological studies.

Amino Acid Sequence↗

Simple and sensitive determination of 2,3-butanediol in biological samples by gas chromatography with electron-capture detection.

2,3-Butanediol was quantitatively oxidized into diacetyl by reaction with MnO4- at 20 degrees C for 30 min under neutral conditions. The reaction of diacetyl with 4,5-dichloro-1,2-diaminobenzene afforded 6,7-dichloro-2,3-dimethyl-quinoxaline (DCDMQ), which was extracted with n-hexane and determined by gas chromatography with electron-capture detection. As an internal standard 1,2-cyclohexanediol was used. The detection limit of DCDMQ (or 2,3-butanediol) was 10 fmol/microliter in the extract, and the determination limit of DCDMQ (or 2,3-butanediol) was at least from 50 fmol/microliter to 20 pmol/microliter in the extract. Recoveries from normal rat urine and rat liver homogenate were 97.8 +/- 3.4% and 98.4 +/- 2.9%, respectively. The method is very simple and sensitive and is applicable to the determination of 2,3-butanediol in normal rat tissues.

Animals↗

Characterization of monkey cytochrome P450, P450 CMLd, responsible for S-mephenytoin 4-hydroxylation in hepatic microsomes of cynomolgus monkeys.

We isolated a new form of cytochrome P450 (P450) which was able to catalyze S-mephenytoin 4'-hydroxylation from hepatic microsomes of cynomolgus monkeys. The final preparation (referred to as P450 CMLd) was apparently homogenous judged by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), and the estimated minimum molecular weight of this protein was 53 kDa. The N-terminal amino acid sequence of P450 CMLd (identified 16 residues) was identical with that of protein encoded by P450 2C9 cDNA. P450 CMLd was cross-reactive with both antibodies raised against P450 2C11 and P450 2C9 which were purified from hepatic microsomes of male rats and humans, respectively. In hepatic microsomes of cynomolgus monkeys, both antibodies recognized two proteins showing different mobilities on SDS-PAGE (50 and 53 kDa). P450 CMLd was a good catalyst for S-mephenytoin 4'-hydroxylation in a reconstituted system. Anti-P450 2C9 antibody inhibited the activity of S-mephenytoin 4'-hydroxylase, but not the activities of R-mephenytoin 4'-hydroxylase and R- and S-mephenytoin N-demethylases in liver microsomes from cynomolgus monkeys. From these lines of evidence we conclude that P450 CMLd is classified into the P450 2C subfamily and acts as one of the S-mephenytoin 4'-hydroxylases in hepatic microsomes of cynomolgus monkeys.

Amino Acid Sequence↗

Microidentification of N-terminal-blocked amino acid residues of proteins and peptides.

Proteins or peptides having an N-terminal-blocked amino acid were successively digested by pronase E, proteinase K, and carboxypeptidase Y. The N-blocked amino acids released from proteins or peptides were derivatized with 9-anthryldiazomethane (ADAM) to the corresponding esters followed by addition of formic acid to remove the remaining ADAM which interfered with further analysis. The anthryl esters were analyzed by high-performance liquid chromatography equipped with a fluorimetric detector. Twelve N-acetylamino acids (Asn, Gln, Ser, Thr, Gly, Ala, Tyr, Pro, Met, Val, Ile, and Leu), pyroglutamic acid, N-formylMet, and N-myristoylGly could be separated from each other and identified on the same chromatographic run. As examples of applied experiments to proteins and peptides, N-acetyl derivatives of Ser, Ala, Met, Gly, Tyr, and Pro as well as N-myristoylGly could be satisfactorily identified using 100 pmol each of seven proteins and peptides. The method reported here is an improved one that was reported in the previous paper based on the same principles.

Amino Acids↗

The association of the insulin resistance syndrome with impaired glucose tolerance and NIDDM in the Japanese general population: the Hisayama study.

To elucidate the risk factors for initiating glucose intolerance, the relevant factors were explored in a cross-sectional survey conducted in a sample population aged 40-79 years old selected from a Japanese community, Hisayama, Japan in 1988. A 75-g oral glucose tolerance test was used to classify 1,073 men (72.5% of the entire population in the same age range) and 1,407 women (80.5%) into normal, impaired glucose tolerance and diabetes mellitus groups. In all age and sex groups with normal glucose tolerance, the sum of fasting and 2-h post-load insulin values varied widely and demonstrated significant positive correlations with triglycerides, body mass index, waist-hip ratio, systolic and diastolic blood pressure, while it negatively correlated to HDL cholesterol (p < 0.05). Insulin resistance was presumed to develop in normal glucose tolerance subjects with hyperinsulinaemia. The sum of the insulin concentrations, triglycerides, body mass index, waist-hip ratio and blood pressure levels was significantly associated with impaired glucose tolerance in all age and sex groups after adjustment for age (p < 0.05) and was also related to diabetes in either all or some age and sex groups, respectively (p < 0.05). It was shown that glucose intolerance in the general population was associated with the factors related to insulin resistance. These cross-sectional data, therefore, support the hypothesis that insulin resistance is the primary defect in the development of glucose intolerance in the Japanese general population. However, a further prospective study is still needed in order to confirm this hypothesis.

Adult↗

Electron microscopic studies on experimental poisoning in mice induced by cylindrospermopsin isolated from blue-green alga Umezakia natans.

The effects of cylindrospermopsin isolated from a blue-green alga Umezakia natans on mice were examined morphologically and biochemically. The main target of the phycotoxin was the liver. The thymus, kidneys and heart were also affected. There were four consecutive phases of the pathological changes in the liver. The initial phase was that of inhibition of the protein synthesis, the second phase of membrane proliferation followed, and then the third phase of fat droplet accumulation and finally the phase of cell death. Using globin synthesis in the rabbit reticulocytes system, it was clearly demonstrated that cylindrospermopsin is a potent inhibitor of the protein synthesis. Protein in microsomes from the mouse livers treated by cylindrospermopsin decreased in amount more significantly than that of phospholipid in microsomes. Furthermore, the amount of total P450 was extensively diminished in the toxin treated with hepatic microsomes.

Alkaloids↗

Carbon sources for D-lactate formation in rat liver.

Carbon sources for D-lactate formation were investigated in vitro using 6,000 x g supernatant of rat liver homogenate and by rat liver perfusion in situ. As carbon sources, L-threonine, glucose, glycerol, acetone, and acetoacetate were tested. Glycerol was the best substrate for D-lactate formation via methylglyoxal in rat liver. Glucose was the second most preferred substrate, while L-threonine, acetone, and acetoacetate were poor substrates for D-lactate formation. Glycerol was several times more effective than normal as a substrate of D-lactate in the supernatants of liver homogenates of diabetic and starved rats, while it was less effective as a substrate of L-lactate. The glycerol kinase [EC 2.7.1.30] activities in livers increased in the diabetic and starved states. These and other results can explain why the plasma concentration of D-lactate increases several-fold after running and why the D-lactate contents in plasma, liver, and skeletal muscle are markedly increases in diabetic and starved rats.

Acetoacetates↗

Immunochemical evidence for the occurrence of Mu class glutathione S-transferase in human fetal livers.

Immunoblot analysis showed that alpha-class glutathione S-transferase (GST), which is one of the major forms in adult human liver, was expressed in human fetal liver. Mu-class GST was also expressed in fetal liver. The majority of mu-class GST expressed in adult liver consisted of a subunit with a molecular weight of 27 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), whereas two subunits of 27 and 26 kDa were detected in fetal liver as proteins immunochemically related to mu-class GST. On reverse-phase HPLC, these two subunits cross-reactive with antibodies to rat GST 3-3 in fetal liver were indistinguishable from each other in their retention time; though, they could be separated by chromatofocusing analysis. The molecular weights of GSTs immunochemically related to rat GST 3-3, eluted at pH 7.1, 6.4, and 5.7, were 27, 27 and 26, and 26 kDa, respectively. In addition, the N-terminal amino acid sequence of these subunits suggested that GSTs related to rat GST 3-3 expressed in fetal liver may be homodimeric and heterodimeric proteins. As expected, pi-class GST was found to be a major form of GST in fetal liver but not in adult liver. In contrast, the GST immunochemically related to rat GST Yrs-Yrs, which is classified as theta-class GST, was detected in adult liver but not in fetal liver. These results indicate that several isoenzymes of GST are expressed in human fetal liver, but they are not the same as those in adult liver.

Amino Acid Sequence↗

Aztreonam decreases hepatic microsomal cytochrome P450 in cynomolgus monkeys.

We examined the effect of successive administrations of aztreonam, which is used clinically as an antibiotic, on the mixed function oxidase system in non-human primates. Treatment of cynomolgus monkeys with aztreonam at doses of between 40 and 300 mg/kg for 4 weeks resulted in a significant decrease in the content of hepatic microsomal P450. On the other hand, no significant change was observed in hepatic cytochrome b5 content and NADPH-cytochrome c (P450) reductase activity following treatment with aztreonam. The activity of testosterone 6 beta-hydroxylase, but not 2 beta- and 16 alpha-hydroxylases in hepatic microsomes, was decreased following the treatment of cynomolgus monkeys with aztreonam. The content of P450 CMLc, which is classified into the 3A subfamily, was also decreased by aztreonam treatment although the content of P450 CMLb, which is a 2A enzyme in cynomolgus monkeys, was unchanged. From these results, we concluded that aztreonam decreased P450 CMLc in hepatic microsomes of cynomolgus monkeys.

Animals↗

Glucocorticoids potentiate the action of atrial natriuretic polypeptide in adrenalectomized rats.

Adrenal insufficiency in human and rat is associated with an impairment of the diuretic response to water load, and only glucorticoids (GCs) restore this deficit. Our observation that GCs potentiate atrial natriuretic polypeptide (ANP)-stimulated cGMP production in cultured renal cells prompted us to examine the possibility that GCs may restore the diuretic response through the potentiation of ANP action. Initially, changes in urine volume and ANP levels were studied in adrenalectomized (Adx) and sham-operated intact rats after an oral water load of 5 ml/100 g BW. Urine volume after water load was 4.5 +/- 0.5 ml/30 min in the intact rats, whereas it was 0.8 +/- 0.2 ml/30 min in the Adx rats. In the intact rats, a significant increase in plasma ANP level was observed 30 min after the water load, whereas no increase was observed in Adx rats. This defective ANP response may be involved in the impairment of the diuretic response in Adx rats. Indeed, pretreatment of Adx rats with dexamethasone (Dex, 20 micrograms/100 g BW) increased plasma ANP levels even before water load and improved diuretic response. Subsequently, effect of iv administration of human or rat ANP at a pharmacological dose (2.5 micrograms/100 g BW) on urine volume, osmolarity, and urinary excretion of cGMP, and sodium was studied in Adx rats that received an oral water load 30 min before ANP. Dex treatment was achieved by per os administration 3 h before the ANP injection. In Adx rats, the urine volume after ANP administration was 1.2 +/- 0.1 ml/30 min, and pretreatment with Dex markedly increased the urine volume to 6.3 +/- 0.4 ml/30 min. Dex also increased ANP-induced osmolar and sodium excretion by 2.6- and 2.9-fold, respectively. Although urinary excretion of cGMP was increased in Adx rats by ANP administration, a further significant increase was observed by the pretreatment with Dex. Injection of (Bu)2cGMP to Adx rats pretreated with Dex resulted in a significant increase in urine volume and osmolar and sodium excretion. However, no significant increase in urine volume was observed in Adx rats not pretreated with Dex. The present study suggests that GCs restore the diuretic response to acute water load not only by increasing the secretion of ANP but also by potentiating ANP-stimulated cGMP production. Furthermore, GCs may augment ANP action at one or more steps other than cGMP formation because administration of (Bu)2cGMP to Adx rats did not correct the diuretic response to water load.

Adrenalectomy↗

Purification and characterization of cytochrome P450 3A enzyme from hepatic microsomes of untreated doguera baboons.

We isolated a form of cytochrome P450 (P450) from hepatic microsomes of untreated doguera baboons. The final preparation (referred to as P450 BLa) was apparently homogenous, as judged by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The estimated minimum molecular weight of P450 BLa was 50 kDa. The N-terminal amino acid sequence of P450 BLa (identified 10 residues) was identical with that of P450 3A8 purified from cynomolgus monkeys. This protein was cross-reactive with antibodies raised against P450 3A4 and P450 CMLc which were P450 3A enzymes purified from hepatic microsomes of humans and cynomolgus monkeys, respectively. P450 BLa was capable of catalyzing testosterone 6 beta-hydroxylation and zonisamide reduction. P450 BLa antibody inhibited the activity of testosterone 6 beta-hydroxylase, but not the activities of testosterone 16 alpha- and 16 beta-hydroxylases in liver microsomes of doguera baboons. From these lines of evidence we conclude that P450 BLa can be classified as part of the P450 3A subfamily and acts as a constitutive testosterone 6 beta-hydroxylase in hepatic microsomes of doguera baboons.

Amino Acid Sequence↗