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Biomedical subjects

Y Otsuka

Publications and source records attributed to Y Otsuka.

At least 19 recordsLinked to original sources

Endothelium-accelerated hyporesponsiveness of norepinephrine-elicited contraction of rat aorta in the presence of bacterial lipopolysaccharide.

The role of the endothelium in the hyporesponsiveness of alpha-adrenoceptor-mediated contractions of the rat aorta was investigated. The norepinephrine-induced maximal contraction was diminished after repeated addition of the agonist. The hyporesponsiveness of the maximal contraction was endothelium dependent, being prevented by NG-monomethyl-L-arginine (0.5 mM), L-argininosuccinic acid (0.5 mM), puromycin (IC50 = 100 microM), actinomycin D (IC50 = 80 nM) but not by indomethacin, which suggests that nitric oxide (NO) synthase is induced. The sensitivity of the rings to NO-induced relaxation remained unchanged. The above-mentioned hyporesponsiveness of norepinephrine-induced maximal contractions of aorta rings was also observed after a 5-h incubation without norepinephrine. The agonist-independent hyporesponsiveness was also prevented by NG-monomethyl-L-arginine, puromycin and actinomycin D, which suggests that NO synthase is induced. Moreover, the norepinephrine-independent hyporesponsiveness was prevented by polymyxin B (10 micrograms/ml), which suggests that bacterial lipopolysaccharide (LPS) might be involved. The concentration of contaminating LPS was 89 +/- 11 ng/ml. When the concentration of contaminating LPS was reduced to 40-70 pg/ml, the hyporesponsiveness of the maximal contraction did not occur after repeated addition of norepinephrine or alter a 5-h incubation without the agonist. An addition of 30 or 100 ng/ml of E. coli lipopolysaccharide to the organ bath reproduced the hyporesponsiveness of the maximal contraction. After a 5-h incubation of aortic rings with 30 ng/ml LPS, only the endothelium-intact ring showed a reduced contraction. However, a 24-h incubation reduced the contraction even in the absence of endothelium.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Oxidoreductases

Detection of cholera toxin by a highly sensitive bead-enzyme linked immunosorbent assay.

A bead-enzyme linked immunosorbent assay (bead-ELISA) for detection and quantification of cholera toxin (CT) in broth cultures of Vibrio cholerae O1 has been developed. Under optimal buffer and pH conditions the bead-ELISA could consistently detect 40 pg/ml of CT. None of the ingredients of commonly used media for in vitro culture of V. cholerae O1 hindered the performance of the bead-ELISA. Evaluation of the sensitivity and specificity of the bead-ELISA against the commonly used reversed passive latex agglutination (RPLA) test for detection of CT was performed using a collection of 239 strains of V. cholerae O1 (including both biotypes and serotypes) which were examined by a gene probe encoding for the A1 subunit of CT. Although both the assays were highly specific, the bead-ELISA was more sensitive than the RPLA. Quantification of CT by the bead-ELISA revealed that the concentration of CT produced by the strains of V. cholerae O1 which were negative by the RPLA was lower than 1 ng/ml and therefore below the minimum detection ability of the RPLA. The bead-ELISA is a simple, specific and highly sensitive assay for routine detection of CT and is recommended for routine use in clinical microbiology laboratories.

Antigen-Antibody Reactions

Blood pressure response to hyperinsulinemia in salt-sensitive and salt-resistant rats.

We investigated the role of insulin in salt-sensitive hypertension in Dahl salt-sensitive and salt-resistant rats. The rats were kept in metabolic cages, and sodium intake and urinary sodium excretion were measured. In salt-sensitive rats receiving a 0.3% NaCl diet, sodium retention was significantly greater at weeks 1 and 2 in rats that received an insulin infusion than in those receiving a saline infusion. Mean arterial blood pressure and plasma norepinephrine levels were significantly higher at week 3 in insulin-treated rats than in saline-treated rats (mean arterial pressure, 137 +/- 3 mm Hg versus 119 +/- 3 mm Hg, p < 0.05; plasma norepinephrine, 0.40 +/- 0.02 ng/ml versus 0.27 +/- 0.01 ng/ml, p < 0.05). Insulin did not influence sodium retention, mean arterial pressure, or plasma norepinephrine in salt-resistant rats. Coadministration of an alpha-blocker (bunazosin, 10 mg/kg per day for 3 weeks) in salt-sensitive rats abolished the insulin-induced elevations in mean arterial pressure and sodium retention. When salt-sensitive rats were fed a low salt diet (0.03% NaCl), insulin did not raise mean arterial pressure. Thus, insulin elevated blood pressure only in the salt-sensitive model. The sympathetic nervous system and sodium retention in the early phase of insulin overload may contribute to elevation of mean arterial pressure in this model.

Animals

[Role of superoxide anion on onset and maintenance of hypertension in spontaneously hypertensive rats].

Endothelium-derived relaxing factor (EDRF) is a substance that is released by the vascular endothelium and mediates vasodilator responses induced by various substances including acetylcholine (AC). Superoxide anion (O2-) inactivates EDRF. It is well known that the endothelium-dependent vascular relaxations to AC are depressed in the aorta of spontaneously hypertensive rats (SHR). We studied the role of O2- on onset and maintenance of hypertension in SHR. Male 4- and 17-week old SHR (4SHR, 17SHR), and enalapril treated 17-week old SHR (5 mg/kg/day for 4 weeks: ETSHR), and age-matched normotensive Wistar-Kyoto rats (WKY; 4WKY, 17WKY) were used. Relaxation responses to AC or superoxide dismutase (SOD) were measured in isolated aortae from rats. Mean arterial pressure (MAP) was measured after injection of SOD in rats under conscious state. Systolic blood pressure of 4SHR, 17SHR, ETSHR, 4WKY, and 17WKY were 129 +/- 2 mmHg, 203 +/- 3 mmHg, 158 +/- 3 mmHg, 97 +/- 1 mmHg, and 138 +/- 2 mmHg, respectively. Although relaxation responses to AC were decreased in aortae from 4SHR, 17SHR, and ETSHR compared with those from age-matched WKY, relaxation responses to SOD dit not differ between SHR and corresponding WKY. Whereas the injection of SOD(10000 U/kg) elicited a significant reduction of MAP in 4SHR (-11 +/- 3 mmHg) and 17SHR (-24 +/- 5 mmHg), it has no effect in WKY. These data suggest that AC mediated endothelium-dependent relaxation is attenuated in SHR and that excessive O2- in the endothelium resulted from hypertension may contributes the decreased response in SHR.

Acetylcholine

[A case of anti-GBM nephritis (crescentic glomerulonephritis) associated with membranous nephropathy].

We report a case of endstage renal disease due to simultaneous occurrence of membranous nephropathy and crescentic glomerulonephritis associated with anti-GBM antibodies. The patient was a 60-year-old male and was hospitalized for prolonged anorexia and general malaise. On admission, his body temperature was 38.5 degrees C. Urinalysis revealed 3+ proteinuria and the sediment contained abundant erythrocytes. The urea nitrogen was 142.4 mg/dl, the creatinine 19.5 mg/dl, the potassium 6.47 mEq/dl and CRP 10.1 mg/dl. Anti-GBM antibodies were 1000EU/ml. Immediately after initiating hemodialysis, pulse steroid therapy, plasma exchange and continuous heparinization were performed. However, renal function had been impaired and maintenance hemodialysis was required. Histological examination of the renal specimen revealed marked epithelial crescent formation, whereas thickening of basement membrane and mesangial proliferation were not observed. By immunofluorescent staining, both bright linear and fine granular fixation of IgG and fine granular fixations of C3 along the glomerular capillary walls were observed. Electron microscopy showed subepithelial electron lucent deposits and thickening of the glomerular basement membrane, diagnostic of the advanced membranous nephropathy (stage IV).

Autoantibodies

Vascular smooth muscle contraction induced by Na+ channel activators, veratridine and batrachotoxin.

The effects of the sodium channel activators veratridine and batrachotoxin on isolated rat aorta were investigated. Veratridine caused gradual contraction, independent of the presence of endothelium, with an EC50 of 35 microM. Batrachotoxin (1 microM) also induced contraction. Both effects were completely inhibited by the sodium channel blocker tetrodotoxin (1 microM). The veratridine (60 microM)-induced contraction was inhibited by nifedipine (0.1 microM). In the absence of extracellular Ca2+, veratridine (60 microM) did not cause contraction. Sodium nitroprusside (80 nM), acetylcholine (10 microM) and isoproterenol (1 microM) caused relaxation of rings precontracted with veratridine (60 microM). An inhibitor of endothelium-derived relaxing factor (EDRF) synthase, N omega-nitro-L-arginine methyl ester (L-NAME) (0.65 mM), enhanced the veratridine-induced contraction in rings with an intact endothelium, which suggests that EDRF was being released during the veratridine-induced contraction. These results show that the activation of sodium channels on smooth muscle cells induces a contraction that is probably mediated by Ca2+ influx through voltage-dependent Ca2+ channels.

Animals

Role of sympathetic activity in blood pressure reduction with low calorie regimen.

To investigate the effects of a low calorie regimen on sympathetic function and its relation to blood pressure response, 22 untreated obese essential hypertensive patients (50 +/- 2 years, body mass index 29 +/- 1 kg/m2) were hospitalized and a diet was prescribed of 2,000 kcal/day for 5 days (control period) followed by 800 kcal/day for 21 days without changing salt intake (8-10 g/day). The dose of intravenous phenylephrine infusion needed to elevate systolic blood pressure 20 mm Hg (CD20) and the 24-hour urinary excretion of norepinephrine (UNE) were measured. During the low calorie period, blood pressure normalized in 14 patients (responder group, 124 +/- 3/79 +/- 4 mm Hg) and eight remained hypertensive (poor responder group, 158 +/- 6/103 +/- 3 mm Hg). At the control period, blood pressure and body mass index were similar, but the responder group had higher UNE (134 +/- 15 micrograms/day) and CD20 (127 +/- 11 micrograms) than the poor responder group (89 +/- 6 micrograms/day and 79 +/- 13 micrograms, respectively). During the low calorie period, both UNE (87 +/- 15 micrograms/day) and CD20 (74 +/- 10 micrograms) decreased in the responder group; no change was seen in the poor responder group. Changes in UNE and systolic blood pressure were correlated (r = 0.6, p less than 0.05). In conclusion, suppression of sympathetic activity plays a role in blood pressure reduction during moderate caloric restriction.

Blood Pressure

Mode of complement activation by acidic heteroglycans from the leaves of Artemisia princeps PAMP.

The mode of action of the anti-complementary acidic heteroglycans, AAF-IIb-2 and IIb-3 which consisted of rhamnogalacturonan core and arabinogalactan moieties, purified from the leaves of Artemisia princeps PAMP (Japanese name = Gaiyo) were investigated. The anti-complementary activities of AAF-IIb-2 and IIb-3 were reduced partially in the absence of Ca2+ ions. A marked consumption of C4 was observed to have occurred when serum was incubated with both polysaccharides in the presence of Ca2+ ions. AAF-IIb-2 showed more potent C4 consumption than IIb-3. After the incubation of the serum with AAF-IIb-2 in the absence of Ca2+ ions, a cleavage of C3 in the serum was detected by immunoelectrophoresis. AAF-IIb-2 showed more significant consumption of the complement than IIb-3 when rabbit erythrocytes were used in the assay system in the absence of Ca2+ ions. These results indicate that AAF-IIb-2 activates the complement via both the alternative and classical pathways, whereas IIb-3 mainly activates the complement via the classical pathway. The absorption of serum with Protein A-Sepharose results in a decrease of the activity of AAF-IIb-2 and IIb-3. However, the decrease of the activity was restored by the replacement of the immunoglobulin G (IgG) fraction after its recovery from the Protein A-Sepharose. These results suggest that IgG dependent mechanisms are both involved in the anti-complementary activity of AAF-IIb-2 and IIb-3.

Complement Inactivator Proteins

Inhibition of neutrophil migration by tumor necrosis factor. Ex vivo and in vivo studies in comparison with in vitro effect.

Coincubation of neutrophils with TNF inhibited the chemoattractant-directed migration of neutrophils under agarose and enhanced their migration in the multiwell chemotaxis chamber. To assess the physiological significance of these differing in vitro TNF effects, ex vivo and in vivo investigations were performed using animal models. Neutrophils from the peripheral blood of rabbits preadministered systemic TNF showed impaired ability to migrate toward chemoattractants in vitro. In addition, systemic TNF administration suppressed zymosan-activated plasma-induced local accumulation of leukocytes in mouse skin. The results indicate that circulating TNF may act as a suppressor for local inflammatory reaction.

Animals

Structural characterization and antitumor activity of a pectic polysaccharide from the roots of Angelica acutiloba.

The polysaccharide fraction from the root of Angelica acutiloba Kitagawa showed a potent antitumor activity against ascitic form of Sarcoma-180, IMC carcinoma, and Meth A fibrosarcoma as well as the solid form of MM-46 tumor. An active polysaccharide, AR-4E-2, was purified by precipitation with cetyl-trimethylammonium bromide, anion-exchange chromatography on DEAE-Sepharose, and gel filtration on Sepharose CL-4B from the polysaccharide fraction. An active polysaccharide fraction showed a weak anti-complementary activity. AR-4E-2 was composed of arabinose, galactose, and rhamnose in the molar ratios of 3.3:1.0:0.7, and also contained 14.5% galacturonic acid and 3.2% protein. Methylation analysis and base-catalysed beta-elimination studies suggested that AR-4E-2 contained a rhamnogalacturonan moiety in which 2,4-di-substituted rhamnose residues were attached to 4-substituted galacturonic acid through position 2 of rhamnose. AR-4E-2 also contained highly branched 3,5-arabinan and (1----4)-galactan.

Animals

Pharmacological differentiation of epithelium-derived relaxing factor from nitric oxide.

We examined the possibility that nitric oxide is one of the epithelium-derived relaxing factors in guinea pig airways. First we studied whether nitric oxide could relax isolated tracheal strips, and then we examined the effects of known inhibitors of endothelium-dependent relaxation (EDR) in the vascular system [hemoglobin, methylene blue, and NG-monomethyl-L-arginine (L-NMMA)] on epithelium-dependent relaxation (EpDR) induced by hyperosmotic stimuli in perfused whole tracheal preparations. Mannitol (160 mM in Krebs-Henseleit solution) applied to the epithelial surface was used as an osmotic stimulus to induce EpDR after carbachol-induced contraction (2 microM, serosal side). Nitric oxide produced concentration-dependent and complete relaxation of epithelium-denuded tracheal strips. Preincubation of the whole trachea with hemoglobin significantly inhibited osmotic-induced EpDR (P less than 0.05), but preincubation with methylene blue and L-NMMA did not. Hemoglobin introduced into the epithelial side after EpDR induced by hyperosmotic stimuli reversed relaxation, but methylene blue and L-NMMA did not. These results suggest that, although EpDR and vascular EDR have some pharmacological similarities and nitric oxide can relax airway smooth muscle, nitric oxide is not responsible for osmotic-induced EpDR.

Animals

Tension-induced release of endothelium-derived relaxing factor; possible role in establishment of desensitization of norepinephrine-induced contraction in rat aorta.

In order to clarify the mechanisms involved in the endothelium-dependent development of desensitization of norepinephrine-induced contraction in rat aorta, we have tested the effect of repeated generation of tension without receptor stimulation. Even when tension alone, with a magnitude almost equal to that generated by norepinephrine, was applied to the endothelium-intact ring without norepinephrine, the ring became desensitized. In the absence of endothelium, the development of desensitization did not occur. Furthermore, L-NG-monomethyl arginine, which is an inhibitor of endothelium-dependent relaxing factor (EDRF) synthesis, prevented the occurrence of desensitization. It was even able to reestablish contractile force when added after the desensitization had developed, suggesting that an increased release of EDRF is necessary to produce the desensitization. Therefore, these results indicate that endothelium-dependent desensitization does not require adrenergic receptor stimulation, but rather that tension generation alone is sufficient to establish desensitization.

Animals

[The effects of individual milk-drinking habits on nutrient intake and dietary patterns in men and women in Tottori Prefecture].

This study was performed to determine the actual conditions of milk-drinking habits in men and women, and to ascertain their effects on nutrient intake and dietary patterns. The 809 subjects were over 20 years of age and were obtained from the Tottori Prefecture Dietary Survey. The results are summarized as follows: 1. Over 40 percent of the subjects did not consume any milk during the three days of the dietary survey. Furthermore, only 38 percent of men and 46 percent of women have daily milk-drinking habits according to the results of the questionnaire. 2. Calcium and Vitamin B2 intake level and total serum cholesterol level were higher in milk-drinkers than non-milk-drinkers, in both men and women. The regression of total calcium intake from 6 groups of food was analyzed by multiple regression analysis. For both men and women who were milk-drinkers, total calcium intake was determined mostly by milk. In the case of non-milk-drinkers, total calcium intake came mostly from green vegetables for men, and other vegetables for women. 3. The ratios of both animal proteins and animal fats were higher in milk-drinkers. For women, energy percentage of fats was high and that of carbohydrates was low in milk-drinkers. The results seem to suggest that differences in dietary patterns is based on milk-drinking habits. Using the Hayashi's quantification method 3, dietary patterns were classified into two groups based on milk-drinking habits. Dietary patterns of milk-drinkers included the characteristic of eating bread, meats, and fats more frequently in men, fresh vegetables, eggs, fats and bread in women. In men, milk-drinking habits had a lesser influence on diet than in women.

Adult

Plantagoside, a novel alpha-mannosidase inhibitor isolated from the seeds of Plantago asiatica, suppresses immune response.

A hot-water extract from the seed of Plantago asiatica showed a potent inhibitory activity against jack bean alpha-mannosidase, and a flavanone glucoside, plantagoside, was isolated as the inhibitor. Plantagoside was a specific inhibitor for jack bean alpha-mannosidase (IC50 at 5 microM) and appeared to be a non-competitive inhibitor of the enzyme. Whereas, negligible or weak inhibitory activities were observed for beta-mannosidase, beta-glucosidase, and sialidase tested. Plantagoside also inhibited alpha-mannosidase activities in mouse liver lysosomal and microsomal fractions, and the enzyme inhibitory activity in microsomal fraction was enhanced in the presence of glucosidase inhibitor, castanospermine. Plantagoside suppressed antibody response to sheep red blood cells and concanavalin A induced lymphocyte proliferation which was measured by [3H]thymidine incorporation.

Animals

Structural characterization of an anti-complementary pectic polysaccharide from the roots of Bupleurum falcatum L.

An anti-complementary pectic polysaccharide (BR-2-IIb), isolated from the roots of Bupleurum falcatum L., has an average molecular weight of 36,000 (gel filtration), and was subjected to methylation analysis before and after carboxyl-reduction, digestion with endo-polygalacturonase, base-catalysed beta-elimination, and partial acid hydrolysis. BR-2-IIb consisted mainly of galacturonic acid, arabinose, rhamnose, and galactose in the molar ratios 13.0:2.1:1.4:1.0 and contained a large enzyme-sensitive polygalacturonan region. The enzyme-resistant region (PG-1) was rich in neutral sugars and contained a backbone of 4-linked GalA and 2-linked Rha to which a highly branched arabinogalactan was attached to position 4 of some 2-linked Rha units. Partial acid hydrolysis of BR-2-IIb gave Ara-(1----3)-Ara, Ara-(1----4)-Arap, Ara-(1----5)-Araf, Ara-(1----6)-Gal, Gal-(1----4)-Gal, GalA-(1----2)-Rha, GalA-(1----4)-Rha, GalA----Rha----Rha, Gal----Rha----Rha, and GlA-(1----6)-Gal in addition to (1----4)linked oligogalacturonides. The anticomplementary activity of BR-2-IIb was enhanced by de-esterification, but carboxyl-reduction decreased the activity.

Carbohydrate Sequence