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Biomedical subjects

F Abe

Publications and source records attributed to F Abe.

At least 19 recordsLinked to original sources

Search for a W' boson via the decay mode W'-->munumu in 1.8 TeV pp collisions.

We report the results of a search for a W' boson produced in pp collisions at a center-of-mass energy of 1.8 TeV using a 107 pb-1 data sample recorded by the Collider Detector at Fermilab. We consider the decay channel W'-->&munumu and search for anomalous production of high transverse mass munumu lepton pairs. We observe no excess of events above background and set limits on the rate of W' boson production and decay relative to standard model W boson production and decay using a fit of the transverse mass distribution observed. If we assume standard model strength couplings of the W' boson to quark and lepton pairs, we exclude a W' boson with invariant mass less than 660 GeV/c2 at 95% confidence level.

Journal Article↗

Difference in urinary LTE4 and 11-dehydro-TXB2 excretion in asthmatic patients.

Bronchoconstrictor cysteinyl leukotrienes (LT) and thromboxane (TX) A2 have been implicated in the pathogenesis of asthma. Determination of urinary leukotriene E4 (LTE4) and 11-dehydro-TXB2 levels are often used to assess cysteinyl LT and TXA2 production in humans. To define the potential role in the pathogenesis of asthma, we investigated the urinary LTE4 and 11-dehydro-TXB2 levels. LTE4 and 11-dehydro-TXB2 levels were determined using liquid chromatography/tandem mass spectrometry (LC/MS) and gas chromatography/mass spectrometry (GC/MS), respectively. Urinary LTE4 levels in asthmatic patients (192 +/- 122 pg/mg creatinine, n = 14) were significantly higher (P < 0.005) than those in healthy volunteers (55 +/- 16 pg/mg creatinine, n = 13), but no significant difference in 11-dehydro-TXB2 levels was observed. A significant inverse correlation (r = -0.821, P < 0.005) was found between urinary LTE4 levels and the forced expiratory volume in 1 s (FEV1) but no significant correlation was observed between urinary 11-dehydro-TXB2 levels and FEV1. The present findings suggest that cysteinyl LTs play a more important role in the pathogenesis of asthma than TXA2.

Adult↗

Tryptophan permease gene TAT2 confers high-pressure growth in Saccharomyces cerevisiae.

Hydrostatic pressure in the range of 15 to 25 MPa was found to cause arrest of the cell cycle in G(1) phase in an exponentially growing culture of Saccharomyces cerevisiae, whereas a pressure of 50 MPa did not. We found that a plasmid carrying the TAT2 gene, which encodes a high-affinity tryptophan permease, enabled the cells to grow under conditions of pressure in the range of 15 to 25 MPa. Additionally, cells expressing the Tat2 protein at high levels became endowed with the ability to grow under low-temperature conditions at 10 or 15 degrees C as well as at high pressure. Hydrostatic pressure significantly inhibited tryptophan uptake into the cells, and the Tat2 protein level was down-regulated by high pressure. The activation volume associated with tryptophan uptake was found to be a large positive value, 46.2 +/- 3.85 ml/mol, indicating that there was a net volume increase in a rate-limiting step in tryptophan import. The results showing cell cycle arrest in G(1) phase and down-regulation of the Tat2 protein seem to be similar to those observed upon treatment of cells with the immunosuppressive drug rapamycin. Although rapamycin treatment elicited the rapid dephosphorylation of Npr1 and induction of Gap1 expression, hydrostatic pressure did not affect the phosphorylation state of Npr1 and it decreased the level of Gap1 protein, suggesting that the pressure-sensing pathway may be independent of Npr1 function. Here we describe high-pressure sensing in yeast in comparison with the TOR-signaling pathway and discuss an important factor involved in adaptation of organisms to high-pressure environments.

Amino Acid Transport Systems↗

Pregnane glycosides from the roots of Asclepias tuberosa.

Sixteen glycosides of pregnanes, including ikemagenin, lineolon, and a new pregnane, 3beta8beta,14beta,15beta,16alpha-pentahydroxy-++ +5alpha-pregnan-20-one, termed pleurogenin, were isolated from the roots of Asclepias tuberosa. Among ikemagenin and lineolon glycosides, one (1) was a known glycoside, and eight (2-7, 10, 13) were glycosides with new combinations of ikemagenin or lineolon and known sugar sequences composed of D-cymarose, D-oleandrose, D-thevetose and D-glucose. The structures of four new glycosides of ikemagenin (8, 9, 11, 12) and three of pleurogenin (14-16) were determined. The new glycosides have sugar sequences ranging from tetraoside to heptaosides.

Glycosides↗

Conduritol F glucosides and terpenoid glucosides from Cynanchum liukiuense and distribution of conduritol F glucosides in several Asclepiadaceous plants.

Conduritol F 3-0- and 4-O-glucosides were obtained from Cynanchum liukiuense, along with conduritol F which was identified in all Asclepiadaceous plants examined, Tylophora tanakae, Asclepias curassavica and A. fruticosa, as well as in Marsdenia tomentosa. The pattern of the glucosidic linkage to conduritol F differed between individual species, 2-O-glucoside from T tanakae and M. tomentosa, 3-O-glucoside from A. curassavica, but none from A. fruticosa. Along with conduritol F glucosides, an 11-glucosyloxy-megastigmane and a monoterpenoid glucoside were isolated from C. liukiuense.

Chromatography, Gas↗

Marstomentosides O-T polyoxypregnane glycosides from Marsdenia tomentosa.

Thirteen pregnane glycosides were isolated from fresh leaves of Marsdenia tomentosa collected in the Fukuyama district. Of these, six were glycosides previously obtained from the same plant collected in the Fukuoka district and one from another Asclepiadaceous plant. The structures of the six new glycosides were determined by spectrometric method.

Japan↗

An androstane bioside and 3'-thiazolidinone derivatives of doubly-linked cardenolide glycosides from the roots of Asclepias tuberosa.

Steroidal compounds in the roots of Asclepias tuberosa were investigated and 17alpha-hydroxyandrosta-4,6,15-trien-3-one 17-O-alpha-L-arabinopyranosyl-(1-->6)-beta-D-glucopyranoside, termed ascandroside, was isolated from the CHCl3-soluble fraction. Among five doubly-linked cardenolide glycosides, two were identified as 3'-spiro-linked thiazolidinone (4) and S-oxythiazolidinone derivatives (5) of delta5-calotropin. The stereochemistry at the C-3' in these two cardenolides is discussed. 3'-O-beta-D-Glucopyranosyl-delta5-calotropin (3) was also isolated along with A5-calotropin and its 3'-acetate. Nine glycosides of uzarigenin, coroglaucigenin and corotoxigenin were identified.

Androstanes↗

Specific direct radioimmunoassay of angiotensin II (AT II) in human plasma and the effect of angiotensin converting enzyme (ACE) inhibitor.

Specific direct radioimmunoassay of angiotensin II (AT II) in human plasma was developed to evaluate the dynamics of endogenous AT II in various types of hypertension. Detection limit of this method was less than 2.3 pg/ml, and normal value is less than 25 pg/ml. Cross reactivity of antibody with AT I and III was 0.037% and 21%, respectively. There were good correlation between the value measured by direct method, and that of extraction method (r = 0.96, P < 0.01) and plasma renin activity (r = 0.80, P < 0.01). By oral administration of ACE inhibitor (captopril 50 mg), AT II levels were suppressed to 10 pg/ml or less in most patients with essential hypertension, renal parenchymal hypertension and renovascular hypertension up to 2 h. However, AT II levels in patients treated with ACE inhibitors chronically were not different from the AT II levels in patients without ACE inhibitor. In primary aldosteronism AT II was extremely low levels. AT II markedly increased by the stimulation test using furosemide (1 mg/kg i.v.). These results suggest that this method may be useful to clarify the pathophysiology of hypertension and the escape of the inhibition by ACE inhibitor.

Angiotensin II↗

Changes in prostacyclin, thromboxane A2 and F2-isoprostanes, and influence of eicosapentaenoic acid and antiplatelet agents in patients with hypertension and hyperlipidemia.

Prostacyclin (PGI2), thromboxane A2 (TXA2) and F2-isoprostanes, prostaglandin F2-like compounds, have wide and contrasting spectrum of biological activities and may influence blood pressure and atherogenesis. To investigate the dynamics of PGI2, TXA2 and F2-isoprostanes in patients with hypertension and hyperlipidemia (HH group), we measured the major urinary metabolites of PGI2: 6-keto PGF1alpha (Keto) and 2,3-dinor-6-keto PGF1alpha, (Dinor), those of TXA2:TXB2 and 11-dehydro TXB2 (Dehydro), and urinary 8-isoprostane (Iso) in 34 patients. Urinary excretion of Dinor was significantly lower in patients than in controls and that of Dehydro was significantly higher in patients than in controls. Keto, TXB2 and Iso were not significantly different between them. Antiplatelet agents decreased not only TXA2 metabolites but also PGI2 metabolites. Urinary C-peptide immunoreactivity was correlated with Dinor and Dehydro. After administration of eicosapentaenoic acid (EPA), total cholesterol (T-cho) and triglycerides (TG) significantly decreased. Although prostanoids did not show significant change, changes in T-cho were correlated with changes in Dinor and changes in Iso. These results suggest that PGI2 and TXA2 of systemic origin might be related to the pathophysiology of hypertension and hyperlipidemia and that the dynamics of PGI2, TXA2 and F2-isoprostanes might be related to not only blood pressure regulation but also lipid and glucose metabolism.

Aspirin↗

Therapeutic advantage of angiotensin converting enzyme inhibitors in chronic glomerulonephritis.

Hypertension in chronic progressive renal disease is a major clinical problem leading to renal function loss. We studied the influence of ambulatory blood pressure (ABP) and the effect of hypertension therapy on renal function in 116 patients with chronic glomerulonephritis. Patients were subdivided as hypertensive, normotensive and hypotensive according to the level of ABP and age. Hypotensive subjects showed improvement of renal function and normotensive subjects showed slower rate of progression of renal function loss than hypertensives, suggesting the adequate level of ABP was 100-125/55-75 mm Hg in patients less than 40 years old, 100-135/60-80 mm Hg in patients 40-60 years old, and 105-140/60-85 mm Hg in patients over 60 years, respectively. The renal protection of calcium antagonists was associated with achieving lower blood pressure levels, whereas the blood pressure level did not affect progression of renal function in patient treated with angiotensin converting enzyme (ACE) inhibitor. ACE inhibitor, but not calcium antagonists, showed a reduction of urinary protein excretion. Thus, the mechanisms of renal protection were different between ACE inhibitors and calcium antagonists.

Adolescent↗

Pressure-regulated metabolism in microorganisms.

There has been a renewal of interest in the survival strategies employed by deep-sea, high-pressure-adapted (piezophilic) microorganisms as well as in the effects of high pressure on mesophilic, 1-atmosphere-pressure-adapted microorganisms. This is partly the result of a greater appreciation of the adaptations of microorganisms to life in extreme environments and partly the result of the development of new techniques for examining physiological and molecular processes as a function of pressure.

Bacteria↗

Induction of apoptosis by bestatin (ubenimex) in human leukemic cell lines.

We investigated the growth inhibitory activity of bestatin, an inhibitor of aminopeptidase N (CD13), on six human leukemic cell lines. Proliferation of all the cell lines except KG1 was inhibited by bestatin. P39/TSU, HL60 and U937 were highly sensitive, with 50% growth inhibitory concentrations (IC50) close to the maximum serum concentration when bestatin was orally administered at 30 mg in clinical application. All cell lines except for K562 highly expressed CD13, but a clear correlation between the sensitivity to bestatin and expression of CD13 was not observed. Other aminopeptidase inhibitors such as amastatin A, arphamenine B and WM15 antibody showed no growth inhibitory effects. To confirm the growth inhibitory effects of bestatin, we quantitatively examined DNA fragmentation in five bestatin-sensitive cell lines. Bestatin dose-dependently induced DNA fragmentation in those cell lines. In case of U937, bestatin induced DNA fragmentation quantitatively and DNA ladder and enhanced caspase-3 activity. Furthermore, the growth inhibition by bestatin was reduced by the caspase inhibitor Z-Asp-CH2-DCB. These results suggested that bestatin exhibits direct antileukemic effects against human leukemic cell lines through the induction of apoptosis.

Aminopeptidases↗

Pregnanes and pregnane glycosides from Hoya carnosa.

Eleven pregnanes were isolated from the hydrolysate of the CHCl3 extract fractionated from the caules of Hoya carnosa. Among these, six pregnanes, including 19-acetoxydigipurpurogenin II, were new, and their structures were elucidated. The structures of twenty new pregnane tetraosides and pentaosides, named hoyacarnosides A-T, besides three known ones from the CHCl3 extract, were determined.

Carbohydrate Sequence↗

Analysis of intracellular pH in the yeast Saccharomyces cerevisiae under elevated hydrostatic pressure: a study in baro- (piezo-) physiology.

Hydrostatic pressure is a distinctive feature of deep-sea environments, and this thermodynamic parameter has potentially inhibitory effects on organisms adapted to living at atmospheric pressure. In the yeast Saccharomyces cerevisiae, hydrostatic pressure causes a delay in or cessation of growth. The vacuole is a large acidic organelle involved in degradation of cellular proteins or storage of ions and various metabolites. Vacuolar pH, as determined using the pH-sensitive fluorescent dye 6-carboxyfluorescein, was analyzed in a hydrostatic chamber with transparent windows under elevated hydrostatic pressure conditions. A pressure of 40-60 MPa transiently reduced the vacuolar pH by approximately 0.33. A vma3 mutant defective in vacuolar acidification showed no reduction of vacuolar pH after application of hydrostatic pressure, indicating that the transient acidification is mediated through the function of vacuolar H(+)-ATPase. The vacuolar acidification was observed only in the presence of fermentable sugars, and never observed in the presence of ethanol, glycerol, or 3-o-methyl-glucose as the carbon source. Analysis of a glycolysis-defective mutant suggested that glycolysis or CO2 production is involved in the pressure-induced acidification. Hydration and ionization of CO2 is facilitated by elevated hydrostatic pressure because a negative volume change (delta V < 0) accompanies the chemical reaction. Moreover the glucose-induced cytoplasmic alkalization is inhibited by elevated hydrostatic pressure, probably because of inhibition of the plasma membrane H(+)-ATPase. Therefore, the cytoplasm tends to become acidic under elevated hydrostatic pressure conditions, and this could be crucial for cell survival. To maintain a favorable cytoplasmic pH, the yeast vacuoles may serve as proton sequestrants under hydrostatic pressure. We are investigating the physiological effects of hydrostatic pressure in the course of research in a new experimental field, baro-(piezo-) physiology.

Environment↗

Minor daphnane-type diterpenoids from Wikstroemia retusa.

In addition to huratoxin, pimelea factor P2, and wikstroelides A-G from the fresh bark, eight daphnane-type diterpenoids, wikstroelides H-O, were isolated from the bark and stem, and their structures established. Cytotoxicity was assayed on some wikstroelides.

Animals↗

Hydrostatic pressure enhances vital staining with carboxyfluorescein or carboxydichlorofluorescein in Saccharomyces cerevisiae: efficient detection of labeled yeasts by flow cytometry.

The extent of intracellular accumulation of the fluorescent dye carboxyfluorescein or carboxydichlorofluorescein (CDCF) in Saccharomyces cerevisiae was found to be increased 5- to 10-fold under a nonlethal hydrostatic pressure of 30 to 50 MPa. This observation was confirmed by analysis of individual labeled cells by flow cytometry. The pressure-induced enhancement of staining with CDCF required D-glucose and was markedly inhibited by 2-deoxy-D-glucose, suggesting that glucose metabolism has a role in the process.

Flow Cytometry↗