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T Toyo-Oka

Publications and source records attributed to T Toyo-Oka.

At least 19 recordsLinked to original sources

Autocrine action and its underlying mechanism of nitric oxide on intracellular Ca2+ homeostasis in vascular endothelial cells.

The rise in cytosolic Ca(2+) concentration (Ca(2+)(i)) in vascular endothelial cells (ECs) activates the production and release of nitric oxide (NO). NO modifies Ca(2+)(i) homeostasis in many types of nonendothelial cells. However, its effect on endothelial Ca(2+)(i) homeostasis at basal and excited states remains unclear. In the present study, to elucidate the effect of NO on basal Ca(2+)(i), inositol 1,4,5-trisphosphate-induced Ca(2+)(i) release (IICR) was blocked by expressing an antisense against type-1 inositol 1,4,5-trisphosphate receptors or by microinjecting heparin to individual ECs, and the effects of NO that was released by and diffused from adjacent IICR-intact ECs were recorded. After ATP or bradykinin stimulation, IICR-inhibited ECs showed a marked reduction of basal Ca(2+)(i), which was abolished by N(G)-monomethyl-l-arginine monoacetate pretreatment. The reduction disappeared in sparsely seeded ECs. Exogenous NO gas mimicked the effect of ATP or bradykinin to reduce basal Ca(2+)(i). Blocking plasma membrane Ca(2+)-ATPase (PMCA), but not Na(+)-Ca(2+) exchange or sarcoplasmic/endoplasmic reticulum Ca(2+)-ATPase, suppressed the reduction, indicating that the reduction resulted from a NO-dependent potentiation of PMCA. To elucidate the effect of NO on elevated Ca(2+)(i), ATP-, bradykinin-, or thapsigargin-evoked Ca(2+)(i) response in the presence and absence of NO production was compared in adjacent IICR-intact ECs. NO was found to potentiate PMCA, which, in turn, greatly attenuated agonist-evoked Ca(2+)(i) elevation. NO also potentiated Ca(2+) influx, which markedly increased the sustained phase of Ca(2+)(i) elevation and possibly NO production. NO did not affect other Ca(2+)(i)-elevating and Ca(2+)(i)-sequestrating components. Thus, NO-dependent potentiation of PMCA is crucial for Ca(2+)(i) homeostasis over a wide Ca(2+)(i) range.

Adenosine Triphosphate↗

Bile acids increase intracellular Ca(2+) concentration and nitric oxide production in vascular endothelial cells.

The effects of bile acids on intracellular Ca(2+) concentration [Ca(2+)](i) and nitric oxide production were investigated in vascular endothelial cells. Whole-cell patch clamp techniques and fluorescence measurements of [Ca(2+)](i) were applied in vascular endothelial cells obtained from human umbilical and calf aortic endothelial cells. Nitric oxide released was determined by measuring the concentration of NO(2)(-). Deoxycholic acid, chenodeoxycholic acid and the taurine conjugates increased [Ca(2+)](i) concentration-dependently, while cholic acid showed no significant effect. These effects resulted from the first mobilization of Ca(2+) from an inositol 1,4,5-triphosphate (IP(3))-sensitive store, which was released by ATP, then followed by Ca(2+) influx. Both bile acids and ATP induced the activation of Ca(2+)-dependent K(+) current. Oscillations of [Ca(2+)](i) were occasionally monitored with the Ca(2+)-dependent K(+) current in voltage-clamped cells and Ca(2+) measurements of single cells. The intracellular perfusion of heparin completely abolished the ATP effect, but failed to inhibit the bile acid effect. Deoxycholic acid and chenodeoxycholic acid enhanced NO(2)(-) production concentration-dependently, while cholic acid did not enhance it. The bile acids-induced nitric oxide production was suppressed by N(G)-nitro-L-arginine methyl ester, exclusion of extracellular Ca(2+) or N-(6-aminohexyl)-5-chloro-l-naphthalenesulphonamide hydrochloride (W-7) and calmidazolium, calmodulin inhibitors. These results provide novel evidence showing that bile acids increase [Ca(2+)](i) and subsequently nitric oxide production in vascular endothelial cells. The nitric oxide production induced by bile acids may be involved in the pathogenesis of circulatory abnormalities in liver diseases including cirrhosis.

Animals↗

Peroxynitrite production by TNF-alpha and IL-1beta: implication for suppression of osteoblastic differentiation.

To determine the roles of nitric oxide (NO) and its metabolite, peroxynitrite (ONOO(-)), on osteoblastic activation, we investigated the effects of a NO donor [ethanamine, 2, 2'-(hydroxynitrosohydrazono)bis- (dNO)], an O(-2) donor (pyrogallol), and an ONOO(-) scavenger (urate) on alkaline phosphatase (ALPase) activity and osteocalcin gene expression, which are indexes of osteoblastic differentiation. dNO elevated ALPase activity in the osteogenic MC3T3-E1 cell line. The combination of dNO and pyrogallol reduced both ALPase activity and osteocalcin gene expression. Because both indexes were recovered by urate, ONOO(-), unlike NO itself, inhibited the osteoblastic differentiation. Furthermore, treatment with a combination of the proinflammatory cytokines tumor necrosis factor-alpha (TNF-alpha) and interleukin-1beta (IL-1beta) was found to yield ONOO(-) as well as NO and O(-2). The reductions in ALPase activity and osteocalcin gene expression were also restored by urate. We conclude that ONOO(-) produced by TNF-alpha and IL-1beta, but not NO per se, would overcome the stimulatory effect of NO on osteoblastic activity and inhibit osteoblastic differentiation.

Alkaline Phosphatase↗

Evaluation of the heart with magnetic resonance imaging.

After compensating for two kinds of motion artifacts caused by cardiac beating and respiration, cardiac magnetic resonance (MR) imaging is now feasible for the diagnosis of various cardiac diseases. Taking cost-effectiveness into consideration, this paper reviews the experiences of preferable indications of cardiac MR imaging by demonstrating the characteristic preciseness and uniqueness that play an important role in obtaining time-volume curves consisting of the theoretically most accurate measurements of left and right ventricular volumes, in overall evaluation of the left ventricular apex and the right ventricle, in delineating the wide range of the coronary arterial tree, in measuring the most precise blood flow volume through the cross-sectional images of the vessels, and in assessing the spatial derivative of the blood flow velocity at the vessel wall, i.e., wall shear rate.

Blood Flow Velocity↗

Precise identification of gene products in hearts after in vivo gene transfection, using Sendai virus-coated proteoliposomes.

Both efficient gene transfer and the exact identification of gene product are required for gene therapy. Gene transfection of green fluorescence protein (GFP) might be useful for the reporter. After in vivo cotransfection of GFP and beta-galactosidase (beta-Gal) genes in Sendai virus-coated proteoliposomes to rat hearts, we compared the sensitivity and specificity of three methods: GFP detection, histochemical staining (HC) of beta-Gal activity, and immunostaining (IS) of the beta-Gal protein. Fluorescence microscopy and double staining of HC and IS revealed that both GFP and IS were equally sensitive and fourfold superior to HC at the peak of gene expression. However, different from skeletal muscle, the GFP of transfected cardiomyocytes showed two demerits: the fluorescence quenching due to the intense staining of beta-Gal activity, and nonspecific autofluorescence from myocardium. Thus, specific IS would be so far the most reliable to identify the gene product in heart.

Animals↗

Morphological onset and early diagnosis in apical hypertrophic cardiomyopathy: a long term analysis with nuclear magnetic resonance imaging.

OBJECTIVES: A long-term follow-up study with nuclear magnetic resonance (NMR) imaging was undertaken to detect the morphological onset and to establish the early diagnosis in apical hypertrophic cardiomyopathy (HCM). BACKGROUND: A spadelike configuration on left ventriculogram (LVG) is regarded as a diagnostic criterion for the classical apical HCM. There also exists a segmented hypertrophy at the apical level without indicating the spadelike features (a nonspade configuration). To detect the hypertrophied myocardium of the nonspade configuration, circumferential scrutiny of the apex is required. Although both configurations can be underlying causes of giant negative T waves, etiological relationship between the two is not clarified. METHODS: The criteria for the spadelike configuration defined on left ventricular short-axis NMR images were as follows: (apical maximal thickness > or = 15 mm), (apical anterior thickness over basal anterior thickness > or = 1.3) and (apical posterior thickness over basal posterior thickness > or =1.3). Thirteen patients who had predominant hypertrophy (> or = 15 mm) at the apical level without the spadelike configuration underwent NMR imaging twice before and after 54+/-10 months' follow-up. RESULTS: Apical hypertrophy that had been confined to the lateral wall in four, the anterior-lateral wall in two, and the septal-anterior wall in one developed to become circumferential hypertrophy that fulfilled the criteria for the spadelike configuration after the follow-up period. CONCLUSIONS: The spadelike configuration can begin with the nonspade configuration and therefore, both can constitute a single disease entity of apical HCM. The early diagnosis of apical HCM can be achieved by identifying the hypertrophy frequently confined to the lateral wall at the apical level.

Adult↗

A hypertensive father, but not hypertensive mother, determines blood pressure in normotensive male offspring through body mass index.

This investigation was to assess the role of genetic loading of hypertensive parents in the determination of blood pressure (BP) in their normotensive offspring. The medical check-up data from 7279 Japanese university students aged 19.22 +/- 0.01 years were analysed of which 641 students had only one hypertensive parent with or without hypertensive grandparents, and from this number 609 cases were available for the present analysis. The BP in the students having only one hypertensive parent were in the normotensive range, but was significantly higher than in those students without hypertensive relatives. Analyses of the data from the students having only one hypertensive parent revealed that systolic BP (SBP) and body mass index (BMI) were higher in the male than in the female students. In addition, there were no differences in BP and BMI between the male students with a hypertensive father and the male students having a normotensive father. However, multivariate analyses revealed that BMI was an independent predictor of SBP solely in the male students having a hypertensive father, but not in the male students having a normotensive father. Such a relationship between BMI and BP determination was not observed in the female students with one hypertensive parent. It is suggested that there are different mechanisms for the determination of BP in normotensive offspring of hypertensive parents, and genetic loading of a hypertensive father plays a critical role in the determination of BP through BMI.

Adolescent↗

Role of Y chromosome of hypertensive parent in determination of blood pressure in normotensive offspring.

We investigated whether the sex of hypertensive parents mediates determination of blood pressure in their normotensive offspring. We analyzed medical checkup data from 7279 Japanese university students. Six hundred and forty-one students had one hypertensive parent with or without hypertensive grandparents, and 609 of these were available for the present analysis. Blood pressure levels in the students with one hypertensive parent were within the normotensive range; however, the blood pressure levels were higher than those in students without hypertensive relatives, and lower than those in students with two hypertensive parents. In the students with one hypertensive parent, systolic blood pressure levels were significantly higher in the male than in the female students. However, the sex of the hypertensive parent did not affect the blood pressure values of their offspring. Multivariate analyses revealed that body mass index was an independent predictor of systolic blood pressure solely in male students with a hypertensive father, but not in male students with a hypertensive mother. In female students with one hypertensive parent, body mass index was irrelevant to the determination of blood pressure. These findings suggest that different mechanisms determine blood pressure in the offspring of hypertensive parents, and that blood pressure determination mediated by body mass index in male students is linked to hypertensive Y chromosome.

Adolescent↗

The role of nitric oxide in the cardiovascular system.

Nitric oxide (NO) exerts various pathophysiological effects on the cardiovascular system; inhibition of platelet aggregation or leukocyte adhesion on endothelium and vasorelaxation including lethal hypotension in endotoxic shock. In spite of these significant roles of NO, its direct action on individual cardiovascular cells remains unclarified. Therefore, we have investigated the function of NO on cells which constitute vascular wall and heart, and have found this new evidence. 1) ATP increased intracellular ([Ca2+]i) in vascular endothelial cells (ECs) and decreased [Ca2+]i of adjacently cocultured vascular smooth muscle cells (VSMCs), as detected by 2-D fura-2 image analysis. 2) The [Ca2+]i reduction in cocultured VSMCs with ECs by ATP was attenuated by pretreatment of several types of NO inhibitor, whereas the NO inhibitor potentiated the [Ca2+]i elevation in ECs, suggesting that NO affects VSMCs in a paracrine manner while ECs in an autocrine fashion. 3) Physiological concentration of lysophosphatidylcholine, which is an atherogenic constituent of oxidized LDL, but not native phosphatidylcholine, acted on ECs and VSMCs like a NO inhibitor, indicating that this material attenuates NO effect and disturbs vessel relaxation in the short term. 4) Highly efficient transfection of the ecNOS gene in rat heart showed a toxic effect on individual cardiomyocytes in vivo. In conclusion, NO may exert both beneficial and harmful effects on the cardiovascular system.

Adenosine Triphosphate↗

Body mass index is a determinant of blood pressure in young adults with essential hypertensive parents. Health Care Programme of University of Tokyo.

We analysed blood pressure (BP) and various parameters related to glucose metabolism in 10,867 Japanese university students aged 19.22 +/- 0.01 years, and investigated the relationship between the subject's own BP and hypertension in close relatives. After 2 years we also examined a subset of these students enrolled in 1993. BP levels in subjects having hypertensive parents were normotensive, but significantly higher than those in subjects without hypertensive relatives or only with hypertensive grandparents. The close the genetic relationship was, the higher the subject's own BP levels. In subjects with hypertensive parents, the subject's own mean BP levels correlated significantly with the subject's own body mass indices. This correlation was much weaker in subjects without hypertensive relatives and those having only second degree relatives with hypertension. In addition, the BP levels in the offspring of hypertensive parents correlated with glutamyl-oxaloacetic transaminase. In the follow-up study in 1995, the correlation between BP levels and body mass index (BMI) was observed in this subgroup. Moreover, the subjects with hypertensive parents tended to have a higher plasma insulin level than those without hypertensive relatives. It is suggested that BP is more likely to be determined by BMI in the individuals with a genetic predisposition to hypertension.

Adult↗

Urinary mercury monitoring of university staff and students occasionally exposed to mercury vapor.

To monitor the exposure to mercury (Hg) vapor among university staff members and students who occasionally handle elemental Hg in laboratory experiments, urine samples were collected at health examinations conducted by the Health Service Center, University of Tokyo, for six years. Geometric mean of urinary Hg concentrations of 343 samples collected from 234 subjects was 1.61 micrograms Hg/g creatinine (Cr), with the range of 0.30 to 9.31 micrograms Hg/g Cr. Elevated urinary Hg levels, i.e. 3 micrograms Hg/g Cr or higher, were found only among the subjects who worked in several laboratories. This urinary Hg level is judged to correspond to 1-2 micrograms/m3 of air Hg concentration in working areas. The contribution of dental amalgam fillings to urinary Hg excretion, though it exists, was concluded to be small from the result of multiple regression analysis.

Dental Amalgam↗

An endogenous Ca2+ channel agonist, endothelin-1, does not directly activate partially purified dihydropyridine-sensitive Ca2+ channel from cardiac muscle in a reconstituted system.

To elucidate the action of tentative endogenous Ca2+ channel activator, endothelin (ET)-1, on a voltage-dependent Ca2+ channel in the heart, a dihydropyridine (DHP)-binding protein was solubilized from porcine ventricular muscle, partially purified by wheat germ agglutinin-affinity chromatography and reconstituted into proteoliposomes. Ca2+ flux into the proteoliposomes was determined using a fluorescent probe, Quin-2. The initial Ca2+ entry rate was dose-dependently activated by either a K(+)-depolarization or a synthetic Ca2+ channel agonist, Bay K8644, and inhibited by several Ca2+ entry blockers or cadmium ions. Using the same reconstituted system, it was demonstrated that sufficient dose of ET-1 yielded no effect on the Ca2+ channel function, indicating that the ET-1 action was not directly mediated by the voltage-dependent, DHP-sensitive Ca2+ channel.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

The partial agonist activity of xamoterol (ICI 118,587) studied by heart rate response in pithed rats.

The partial agonist activity of xamoterol was evaluated by measuring changes in heart rate (HR) in pithed rats. Xamoterol showed dose-dependent positive chronotropic effects in catecholamine-depleted pithed rats (HR: 199 +/- 6 beats/min) and dose-dependent negative chronotropic effects in sympathetic nerve-stimulated pithed rats (HR: 325 +/- 16 beats/min). In contrast, isoproterenol exerted dose-dependent positive chronotropic effects in either condition (HR: 189 +/- 7 and 332 +/- 5 beats/min) and propranolol exerted dose-dependent negative chronotropic effects in either condition (HR: 209 +/- 5 and 344 +/- 19 beats/min). When exogenous noradrenaline was continuously infused into catecholamine-depleted pithed rats, xamoterol showed dose-related positive chronotropic effects with noradrenaline at 0.5 micrograms/(kg min) (HR: 235 +/- 4 beats/min), virtually no effects at 1.5 micrograms/(kg min) (HR: 297 +/- 11 beats/min) and dose-related negative chronotropic effects at 5 micrograms/(kg min) (HR: 330 +/- 5 beats/min). During continuous infusion of xamoterol [100 ng/(kg min)] into pithed rats, the control HR before stimulation was increased and the maximum increase produced by the sympathetic nerve stimuli at 0.25 to 4 Hz decreased. The maximum increase in HR brought about by xamoterol was about 71% of that induced by isoproterenol, and those by pindolol and practolol were about 40% and 21% respectively. It is concluded that xamoterol is a partial agonist with a strong agonist action.

Adrenergic beta-Agonists↗

Combined study of 1H-magnetic resonance imaging and depth-selected, EKG-gated 31P-magnetic resonance spectroscopy of the heart in vivo.

NMR is useful for both 1H-magnetic resonance imaging (MRI) and magnetic resonance spectroscopy (MRS). We undertook to combine these two merits of NMR for in vivo characterization of living rat heart in wide bore (9 cm) superconducting magnet under high magnetic field (6.4 Tesla). Spatial resolution of 1H-MRI attained 0.1 mm by spin warp method. Then, depth-selected, EKG-gated 31P-MRS was performed, adjusting the detection area to cover the heart that was identified by the preceding 1H-MRI. Three evidences that 31P-SMR signal chiefly originated from the heart without cross talk of adjacent organs indicated that combination of 1H-MRI and in vivo 31P-MRS under high magnetic field in whole animal is promising for more accurate evaluation of cardiac muscle metabolism.

Animals↗