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Biomedical subjects

N Yoshida

Publications and source records attributed to N Yoshida.

At least 307 records · Page 17Linked to original sources

Aspirin-induced, neutrophil-mediated injury to vascular endothelium.

Previous studies indicate that aspirin can promote neutrophil (PMN) adhesion to endothelial cells and neutrophil-mediated endothelial cell detachment. The objectives of the present study were to determine whether PMN adhesion is a prerequisite for aspirin-induced, PMN-mediated endothelial cell detachment and whether neutrophil-derived oxidants and/or proteases are responsible for the cell detachment. Human PMNs were added to confluent monolayers of human umbilical vein endothelial cells (HUVEC) and coincubated with or without aspirin at a clinically relevant concentration (300 micrograms/ml). Aspirin-activated PMNs induced endothelial cell detachment, but not cell lysis. Endothelial cell detachment was always preceded by retraction of endothelial cells within the monolayer. The aspirin-induced, neutrophil-mediated cell detachment was prevented by a monoclonal antibody directed against CD11/CD18 adhesion integrins on PMNs. Elastase inhibitors, but not superoxide dismutase or catalase, prevented both endothelial cell retraction and detachment. If aspirin-activated neutrophils were allowed to migrate across the monolayers, endothelial cell retraction or detachment did not occur. These studies indicate that aspirin-induced, PMN-mediated endothelial cell retraction and detachment requires PMN adhesion to the target cells and is due to neutrophil-derived elastase. Endothelial cell retraction, induced by activated neutrophils, may represent an exaggeration of a normal physiologic event, i.e., neutrophil emigration.

Adult↗

An improved method for large-scale purification of recombinant human glucagon.

Glucagon was expressed in Escherichia coli as a fusion protein including the glucagon sequence [Ishizaki et al. (1992), Appl. Microbiol. Biotechnol. 36, 483-486]. The high-level expression of a protein in E. coli often results in an insoluble aggregate called an inclusion body containing a fusion protein. In our previous report [Yoshikawa et al. (1992), J. Protein Chem. 11, 517-525], we solubilized this inclusion body by using guanidinium chloride. However, the existence of denaturant caused problems such as a low proteolytic activity for transforming the fusion protein into glucagon and complicated purification methods. We tried to improve the method to enable large-scale purification. At alkaline pH, the inclusion body could be solubilized to a high concentration and cleaved by amino acid-specific endopeptidases. By utilizing isoelectric precipitations as a new economical purification method for glucagon from intermediates, the glucagon obtained was shown to be over 99.5% pure by analytical RP-HPLC. The yield was almost equal that of our previous method, and the glucagon produced was chemically and biochemically equivalent to natural glucagon.

Amino Acid Sequence↗

Role of neutrophil-mediated inflammation in aspirin-induced gastric mucosal injury.

The objectives of this study were to determine the roles of neutrophil-endothelial cell interactions and oxygen-derived free radicals in the pathogenesis of aspirin-induced gastric mucosal injury in rats. Oral administration of acidified aspirin (200 mg/kg) resulted in linear hemorrhagic erosions and an increase in myeloperoxidase activity, an index of neutrophil infiltration, in the gastric mucosa. Aspirin-induced gastric damage and the increase in myeloperoxidase activity were significantly inhibited by the injection of anti-CD11a, anti-CD11b, anti-intercellular adhesion molecule-1 monoclonal antibodies, and the combination of superoxide dismutase and catalase, which are scavengers of active oxygen species. These results suggest that neutrophil-endothelial adhesive interactions, which occur via CD11a/ CD18- and CD11b/CD18-dependent interactions with intercellular adhesion molecule-1, and oxygen-derived free radicals produced by neutrophils are implicated in the production of aspirin-induced gastric mucosal injury.

Animals↗

Endoscopic injection sclerotherapy for esophageal variceal hemorrhage in myeloproliferative disorder: case report.

A 70-year-old woman with myeloproliferative disorder and massive splenomegaly presented with hematemesis. Emergency endoscopy demonstrated bleeding from esophageal varices. Management of variceal hemorrhage by endoscopic injection sclerotherapy, using 5% ethanolamine oleate, was successful. Following the control of variceal bleeding, she was treated with hydroxyurea, a myelosuppressive agent. The spleen size markedly decreased and she was discharged 3 months later. Variceal hemorrhage in myeloproliferative disorder has been reported to be fatal on many occasions, despite different therapeutic approaches, including surgery. In this report, we demonstrated that endoscopic injection sclerotherapy followed by treatment with a myelosuppressive agent was effective in a patient with myeloproliferative disorder and variceal hemorrhage.

Aged↗

A dopamine D3 receptor agonist, 7-OH-DPAT, causes vomiting in the dog.

R(+)7-hydroxy-N,N-di-n-propyl-2-aminotetralin (R(+)-7-OH-DPAT), a selective dopamine D3 receptor agonist, (0.03-0.3 mg/kg, s.c.) dose-relatedly caused emesis, whereas S (-)-7-OH-DPAT at even 1 mg/kg did not induce emesis in dogs. Apomorphine (0.03-0.3 mg/kg, s.c.) or quinpirole (0.03-0.1 mg/kg, s.c.) also caused emesis in a dose-dependent manner. The potency of R(+)-7-OH-DPAT in inducing emesis was the same as that of apomorphine and quinpirole. On the other hand, SKF-38393 (1 and 3 mg/kg, s.c.), a selective D1 receptor agonist, failed to induce emesis in dogs. The emesis induced by R(+)-7-OH-DPAT (0.3 mg/kg, s.c.) was inhibited by S(-)-eticlopride (0.01-0.1 mg/kg, s.c.), a potent D2 and D3 receptor antagonist but not by SCH-23390 (1 mg/kg, s.c.), a selective D1 receptor antagonist or clozapine (1 mg/kg, s.c.), a D4 receptor antagonist. These results indicate that dopamine D3 receptors play an important role in the genesis of emesis in dogs.

Animals↗

Establishment of two rat osteosarcoma cell lines (YROS-1 and YROS-2) induced by radioactive phosphorus.

Two rat osteosarcoma cell lines, YROS-1 and YROS-2, were established from two experimental osteosarcomas and induced by internal irradiation with radioactive phosphorus. Both cell lines formed a monolayer cell sheet in vitro with focal piling. The YROS-1 cells were refractile and spindle or polygonal in shape, whereas the YROS-2 cells were flat, spread and polygonal in shape. Ultrastructurally, the YROS-1 cells had well-developed rough-surfaced endoplasmic reticulum with focal pericellular deposition of calcified matrix, whereas YROS-2 had abundant polysomes and intracytoplasmic filaments. Both cell lines grew stably with population doubling times of 23 and 39 h, respectively. Flow cytometry revealed that YROS-1 was rich in proliferating cells compared to YROS-2, with a higher colony-forming efficiency. YROS-1 showed high alkaline phosphatase activity, while YROS-2 possessed low activity. When subcutaneously transplanted into lumbodorsal area of athymic nude mice, only YROS-1 formed tumors with frequent lung metastasis.

Animals↗

Targeted mutation in the Fas gene causes hyperplasia in peripheral lymphoid organs and liver.

Fas, a type I membrane protein that transduces an apoptotic signal, is expressed in lymphocytes as well as in various tissues such as the liver, lung and heart. The mouse lymphoproliferation (lpr) mutation is a leaky mutation in Fas. By means of gene targeting, we generated a mouse strain which is completely deficient in Fas. In addition to the massive production of lymphocytes, the Fas-null mice showed substantial liver hyperplasia, which was accompanied by the enlargement of nuclei in hepatocytes. The Fas system seems to play a role in the apoptotic process to maintain homeostasis of the liver as well as the peripheral lymphoid organs.

Animals↗

Initial tooth movement under extraoral force and considerations for controlled molar movement.

Initial movement of the maxillary first molars under the application of straight-pull, cervical-pull, and high-pull headgear was measured in human subjects. Facebow deflection can influence molar movement as the relationship of the force vector to the molar's center of resistance changes with an increase of force. The present study proposes using headgear with a combination of variable-pull headcap and short outer bow. A variable-pull headcap allows a great range in force direction. The direction of the headgear force system can be accurately determined using a short outer bow.

Adult↗

Intrathecal administration of N-methyl-D-aspartate receptor antagonist reduces the minimum alveolar anaesthetic concentration of isoflurane in rats.

We have studied the effect of intrathecal administration of N-methyl-D-aspartate (NMDA) receptor antagonists on the minimum alveolar anaesthetic concentration (MAC) of isoflurane in rats. In Wistar rats fitted with indwelling intrathecal catheters, we determined the MAC of isoflurane after administration of a competitive NMDA receptor antagonist, APV (0.01, 0.1, 1.0, 10, 30 micrograms), a non-competitive NMDA receptor antagonist, MK801 (0.1, 1.0, 10, 30 micrograms). NMDA (0.01, 0.1, 1.0, 10, 30 micrograms) and saline. APV at all doses except 0.01 micrograms decreased MAC by 17.1-32% (P < 0.001 and P < 0.0001). Although MK801 at 10 and 30 micrograms reduced MAC by 24.3-31.7% (P < 0.001 and P < 0.0001), lower doses did not affect MAC. Intrathecal administration of NMDA reversed these decreases in MAC, but not to control values with APV 10 and 30 micrograms and MK801 30 micrograms. We suspect that NMDA and NMDA receptor antagonists play important roles in the spinal cord in determining the MAC of isoflurane.

2-Amino-5-phosphonovalerate↗

Growth Kinetics of Thiobacillus thiooxidans on the Surface of Elemental Sulfur.

The growth kinetics of Thiobacillus thiooxidans on elemental sulfur in batch cultures at 30(deg)C and pH 1.5 was studied by measuring the time courses of the concentration of adsorbed cells on sulfur, the concentration of free cells suspended in liquid medium, and the amount of sulfur oxidized. As the elemental sulfur was oxidized to sulfate ions, the surface concentration of adsorbed cells per unit mass of sulfur approached a maximum value (maximum adsorption capacity of sulfur particles) whereas the concentration of free cells continued to increase with time. There was a close relationship between the concentrations of free and adsorbed cells during the microbial sulfur oxidation, and the two cell concentrations were well correlated by the Langmuir isotherm with adsorption equilibrium constant K(infA) and maximum adsorption capacity X(infAm) of 2.10 x 10(sup-9) ml per cell and 4.57 x 10(sup10) cells per g, respectively. The total concentration of free and adsorbed cells increased in parallel with the amount of sulfate formed. The total growth on elemental sulfur gave a characteristic growth curve in which a linear-growth phase followed the period of an initial exponential phase. The batch rate data collected under a wide variety of inoculum levels (about 10(sup5) to 10(sup8) cells per ml) were consistent with a kinetic model assuming that the growth rate of adsorbed bacteria is proportional to the product of the concentration, X(infA), of adsorbed cells and the fraction, (theta)(infV), of adsorption sites unoccupied by cells. The kinetic and stoichiometric parameters appearing in the model were estimated from the experimental data, and the specific growth rate, (mu)(infA), and growth yield, Y(infA), were 2.58 day(sup-1) and 2.05 x 10(sup11) cells per g, respectively. The proposed model and the parameter values allowed us to predict quantitatively the surface attachment of T. thiooxidans cells on elemental sulfur and the bacterial growth in both initial exponential and subsequent linear phases. The transition from exponential to linear growth was a result of two competing factors: an increase in the adsorbed-cell concentration, X(infA), permitted a decrease in the unoccupied-site fraction, (theta)(infV).

Journal Article↗

Distribution and properties of fructosyl amino acid oxidase in fungi.

Fructosyl amino acid oxidase, and enzyme that can be used for the determination of glycated proteins in blood samples from diabetic patients, was used to screen cultures in our microorganism culture collection. Fructosyl amino acid oxidase was found only in the strains of four genera of fungi, Aspergillus, Fusarium, Gibberella, and Penicillium and exhibited different substrate specificities against fructosyl valine and N epsilon-fructosyl N alpha-Z-lysine. A fructosyl valine-specific enzyme from Penicillium janthinellum AKU3413 was monomeric (M(r), 49,000), was most active at 35 degrees C and pH 8.0, and had a covalently bound flavin adenine dinucleotide as a prosthetic group.

Amino Acid Oxidoreductases↗

Synthesis and structure-activity relationships of 4-amino-5-chloro-2-ethoxybenzamides with six- and seven-membered heteroalicycles as potential gastroprokinetic agents.

A new series of 4-amino-5-chloro-2-ethoxybenzamides 3b--f and 5--8 bearing six- and seven-membered heteroalicycles was prepared and evaluated for gastroprokinetic activity. Compounds 3b--e, derived by replacement of the morpholine oxygen of 4-amino-N-[(4-benzyl-2-morpholinyl)methyl]-5- chloro-2-ethoxybenzamide (3a) with other atoms (sulfur, nitrogen and carbon), generally exhibited a potent gastric emptying activity. N-(4-Benzyl-3-morpholinyl)methylbenzamide (5a) and its analogues 5b--e had weaker activity. However, N-(4-benzyl-3-morpholinyl)ethylbenzamide 8 was as potent as 3a. Benzamides 6a--e, having seven-membered heteroalicycles, showed fairly potent activity. Molecular superimpositions of 5a, 6a and 8 upon 3a using computer graphics suggested that the direction of the N-benzyl group greatly influences the gastric emptying activity, whereas the location of the alicyclic nitrogen is less critical.

Animals↗

Development of potent serotonin-3 (5-HT3) receptor antagonists. I. Structure-activity relationships of 2-alkoxy-4-amino-5-chlorobenzamide derivatives.

A new series of 2-alkoxy-4-amino-5-chlorobenzamide derivatives bearing five- to seven-membered heteroalicyclic rings in the amine moiety was synthesized and evaluated for serotonin-3 (5-HT3) receptor antagonistic activity by assaying the ability to antagonize the von Bezold-Jarisch reflex in rats. The five- to seven-membered heteroalicycles comprise pyrrolidine, morpholine, 1,4-thiazine, piperidine, piperazine, 1,4-oxazepine, 1,4-thiazepine, azepine, and 1,4-diazepine rings. Among them, some benzamide derivatives having a 1,4-diazepine ring showed a potent 5-HT3 receptor antagonistic activity. In particular, 4-amino-5-chloro-N-(1,4-dimethylhexahydro-1H-1,4-diazepin-6- yl)-2- ethoxybenzamide (96) and the 1-benzyl-4-methylhexahydro-1H-1,4-diazepine analogue 103 showed potent 5-HT3 receptor antagonistic activity without 5-HT4 receptor binding affinity.

Animals↗

Development of potent serotonin-3 (5-HT3) receptor antagonists. II. Structrue-activity relationships of N-(1-benzyl-4-methylhexahydro-1H-1,4- diazepin-6-yl)carboxamides.

Our studies on 4-amino-5-chloro-2-ethoxybenzamides led to the discovery that the N-(1,4-dimethylhexahydro-1H-1,4-diazepin-6-yl)benzamide 9 and the 1-benzyl-4-methylhexahydro-1H-1,4-diazepine analogue 10 are potent serotonin-3 (5-HT3) receptor antagonists. Structure-activity relationship (SAR) studies on the influence of the aromatic nucleus of 9 and 10 upon inhibition of the von Bezold-Jarisch reflex in rats are described. Heteroaromatic rings such as pyrrole, thiophene, furan, pyridine, pyridazine, 1,2-benzisoxazole, indole, quinoline, and isoquinoline rings showed weak 5-HT3 receptor antagonistic activity. Within this series, use of the 1H-indazole ring as an aromatic moiety led to a substantial increase of the activity; the 1H-indazolylcarboxamides 54, 57, 97, and 102 showed potent 5-HT3 receptor antagonistic activity. The optimal compound identified via extensive SAR studies was N-(1-benzyl-4-methylhexahydro-1H-1,4-diazepin-6-yl)-1H-indaz ole-3- carboxamide (54), whose effect was superior to that of the corresponding benzamide 10 and essentially equipotent to those of ondanbsetron (1) and granisetron (4).

Animals↗

Proton nuclear magnetic resonance studies of the complexation of zinc(II) with glycyl-L-histidylglycine.

The complexation of Zn(II) with glycyl-L-histidylglycine and its deuterated derivatives, glycyl-d2-L-histidylglycine and glycyl-L-histidylglycine-d2, was studied by proton nuclear magnetic resonance spectroscopy over the pD range, from 3.4 to 11.0, at 25 degrees C. Addition of Zn(II) to the peptide made the resonances of both imidazole C2-H and C4-H and both methylene-protons of glycyl residues at the amino-terminal and carboxylate end split to three lines in the pD range above 7.0. From the behavior of the C2-H and C4-H chemical shifts, formation of at least two species, in which the imidazole and amino nitrogens coordinated to the metal ion forming a chelate ring, was suggested. Those two species, the ratio of which varied depending on the total concentrations of complexes, seemed to be interconvertible; one referred to as B is a monomer and the other, referred to as C, may be a dimeric or polymeric complex.

Amino Acid Sequence↗

Synthesis and biological activities of metabolites of mosapride, a new gastroprokinetic agent.

In order to confirm the proposed structures of two metabolites 3 and 4 of the gastroprokinetic agent mosapride [4-amino-5-chloro-2-ethoxy-N-([4-(4-fluorobenzyl)-2-morpholinyl] methyl)benzamide, 2], the compounds were synthesized and their biological activity was examined. The structures of the metabolites were confirmed by means of comparison with the synthetic compounds. The serotonin 5-HT4 receptor agonistic activities of the metabolites were found to be less than that of mosapride.

Animals↗