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Biomedical subjects

T Kurihara

Publications and source records attributed to T Kurihara.

At least 145 records · Page 8Linked to original sources

Increase in hepatic tissue blood flow by teprenone.

The major objective of the present study was to evaluate mechanisms by which teprenone, a gastric mucosal protecting agent, increases hepatic mucosal blood flow using male Sprague-Dawley rats. Hepatic and gastric blood flow was measured using a laser blood flow meter after administration of teprenone, dissolved in Tween 80, into the inferior vena cava. Teprenone itself increased hepatic and gastric blood flow. It also increased hepatic and gastric blood flow in rats with acute hepatic disorders due to carbon tetrachloride (CCL4) and improved histological changes, such as inflammatory cell infiltration and fatty changes in the liver. The fact that blood endothelin (ET) concentrations increased after administration of teprenone suggest that teprenone has great affinity for ET beta receptors and shows ET beta-receptor antagonist-like effects. Hepatic blood flow decreased after administration of N-nitro-L-arginine methyl ester, a nitric oxide (NO) synthetase inhibitor, suggesting that teprenone increase NO activity. Teprenone was thought to increase hepatic and gastric blood flow by different mechanisms, because it increased gastric mucosal prostaglandin E2 concentrations.

Animals↗

The excitatory and inhibitory modulation of primary afferent fibre-evoked responses of ventral roots in the neonatal rat spinal cord exerted by nitric oxide.

1. We investigated the role of nitric oxide (NO) in modulating spinal synaptic responses evoked by electrical and noxious sensory stimuli in the neonatal rat spinal cord in vitro. 2. Potentials were recorded extracellularly from a ventral root (L3-L5) of the isolated spinal cord preparation or spinal cord-saphenous nerve-skin preparation of 0- to 2-day-old rats. Spinal reflexes were elicited by electrical stimulation of the ipsilateral dorsal root or by noxious skin stimulation. 3. In the spinal cord preparation, single shock stimulation of a dorsal root at C-fibre strength induced mono-synaptic reflex followed by a slow depolarizing response lasting about 30 s (slow ventral root potential; slow VRP) in the ipsilateral ventral root of the same segment. Bath-application of NO gas-containing medium (10(-4)- 10(-2) dilution of saturated medium) and NO donors, 1-hydroxy-2-oxo-3-(N-ethyl-2-aminoethyl)-3-ethyl-1-triazene (NOC12, 3-300 microM), S-nitroso-N-acetyl-D,L-penicillamine (SNAP, 3-300 microM) and S-nitroso-L-glutathione (GSNO, 3-300 microM), produced an inhibition of the slow VRP and a depolarization of ventral roots. Another NO donor, 3-morpholinosydononimine (SIN-1, 30-300 microM), also depressed the slow VRP but did not depolarize ventral roots. These agents did not affect the mono-synaptic reflex. 4. In the spinal cord-saphenous nerve-skin preparation, application of capsaicin (0.1-0.2 microM) to skin evoked a slow depolarizing response of the L3 ventral root. This slow VRP was depressed by NOC12 (10-300 microM) and SIN-1 (100-300 microM). When the concentration of NOC12 was increased to 1 mM, spontaneous synaptic activities were augmented and the depressant effect of NOC12 on the slow VRP became less pronounced. 5. A NO-scavenger, 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide( carboxy- PTIO, 100-300 microM) prevented the depressant effect on the dorsal root-evoked slow VRP and ventral root depolarizing effects of NO donors. Carboxy-PTIO increased spontaneous synaptic activities and markedly potentiated the slow VRP. A NO synthase (NOS) inhibitor, N omega-nitro-L-arginine methyl ester (L-NAME, 0.03-1 microM), but not D-NAME (0.03-1 microM), also markedly potentiated the slow VRP and this effect was reversed by L-arginine (300 microM). 6. 8-Bromo-cyclic guanosine 3': 5'-monophosphate (8-Br-cyclic GMP, 100-300 microM) produced both an inhibition of the slow VRP and a depolarization of ventral roots. A cyclic GMP-dependent protein kinase inhibitor, KT5823 (0.3 microM), partly inhibited the depressant effects of NO donors and 8-Br-cyclic GMP on the dorsal root-evoked slow VRP. In contrast, KT5823 did not inhibit the depolarizing effects of NO donors. 7. Perfusion of the spinal cord with medium containing tetrodotoxin (0.3 microM) and/or low Ca2+ (0.1 mM)-high Mg2+ (10 mM) markedly potentiated the depolarizing effect of NO donors. The SNAP-evoked depolarization in the tetrodotoxin-containing low Ca(2+)-high Mg2+ medium was significantly inhibited by excitatory amino acid receptor antagonists D-(-)-2-amino-5-phosphonovaleric acid (30 microM) and 6-cyano-7-nitroquinoxaline-2,3-dione (10 microM). 8. The present study suggests that inhibitory and excitatory mechanisms meditated by the NO-cyclic GMP cascade are involved in the primary afferent fibre-evoked nociceptive transmission in the neonatal rat spinal cord. The inhibitory mechanism, but not the excitatory mechanism, appears to be partly mediated by cyclic GMP-dependent protein kinase. It is also suggested that Ca(2+)-independent release of excitatory amino acid neurotransmitters contributes to the depolarizing response to NO of ventral roots.

Animals↗

Meisenheimer rearrangement of azetopyridoindoles. VIII. Synthesis and antiviral activities of 12-carbaeudistomin analogs.

Eudistomins, isolated from the colonial tunicate Eudistoma olivaceum, have been a synthetic target due to their strong antiviral activity against Herpes simplex virus (HSV-1) and activities against certain types of tumors in vivo. In order to examine the structure-activity relationship of eudistomins, 12-carbaeudistomin analogs were synthesized and their activities against influenza A and B virus, HSV-1, HSV-2 and human cytomegalovirus were investigated. Among them, racemic 6-methoxy-12-carbaeudistomin showed similar activity to (-)-debromoeudistomin K, synthesized as a control compound.

Animals↗

[Regional left ventricular contraction kinetics in patients with hypertrophic cardiomyopathy: investigation by ECG-gated myocardial SPECT with 99mTc-MIBI].

To investigate the regional left ventricular (LV) contraction kinetics in patients with hypertrophic cardiomyopathy (HCM), we performed ECG gated myocardial tomography (gated-SPECT) with 99mTc methoxy-2-isobutyl isonitrile (MIBI) at rest in 11 patients with HCM and 13 normal subjects. In order to evaluate regional LV contraction kinetics, multi-plane long axial tomograms were constructed and LV was divided into 17 segments. From the time activity curve of myocardial count, percent change during systole (%CC) was calculated in each segment. Normal range of %CC in each segment was derived from normal files. Systolic asynchrony in each patient was expressed as SD (standard deviation) of R-wave to peak count (R-PC) intervals of 17 segments. Decreased %CC was observed in 87 of 187 segments (47%) in HCM (8 +/- 5 segments/patient, range; 2-14 segments/patient). SD in patients with HCM was significantly greater than that in normal subjects (5.9 +/- 1.3 vs. 3.5 +/- 0.6, p < 0.01). The extent of decreased %CC in patients with HCM correlated well with global 123I-BMIPP (BMIPP) uptake and the extent of regional abnormality of BMIPP (Defect Score) (r = -0.79, r = 0.88 each, p < 0.01). On the other hand, SD correlated well with left ventricular (LV) filling rate during early diastole (r = -0.66, p < 0.01). Patients with HCM were divided into 2 groups whether LV ejection fraction (EF) increased (Group 1) or decreased (Group 2) by exercise stress. SD in Group 2 was significantly greater than that in Group 1. In segments with decreased %CC, the distribution of R-PC interval was different with that in segments with normal %CC. These results suggested that indexes which were derived from gated-SPECT with MIBI could bring several informations which were important to assess the pathologic condition of HCM.

Adult↗

[Myocardial sympathetic activity and characteristics in hypertrophic cardiomyopathy: comparison with hypertensive hypertrophy].

The characteristics of myocardial sympathetic activity were studied using myocardial imaging with I-123-metaiodobenzylguanidine (MIBG) in 16 patients with hypertrophic cardiomyopathy (HCM), 12 patients with essential hypertension and left ventricular hypertrophy (HT) and 10 normal subjects. Myocardial imaging with MIBG and thallium-201 (T1) was performed at rest on a separate day. The index of myocardial MIBG uptake, "uptake ratio", was calculated from the percentage uptake of MIBG and T1. Reduction of myocardial MIBG during 3 hours (percentage washout) was also calculated. The extent of the defect was quantitatively assessed (defect score) from the bull's eye map. Global "uptake ratio" of the delayed image decreased in the order of normal subjects, patients with HT and those with HCM (p < 0.01). Defects in MIBG images were observed in all patients with HCM and 92% in those with HT. The defects were located in the inferior and lateral segments in patients with HT, but around the entire left ventricle in patients with HCM. Both groups had smaller regional "uptake ratio" than normal subjects, but HT and HCM demonstrated different behaviors: reduced in the inferior and lateral segments as compared with other segments in HT, but distributed equally in all segments in HCM. In patients with HCM, percentage washout was significantly accelerated in comparison with patients with HT and normal subjects in both global and regional analyses, but there was no difference between the latter two groups. Disturbance of myocardial sympathetic activity observed in patients with HCM by MIBG uptake and washout differed from that caused by HT.

3-Iodobenzylguanidine↗

[Postgraduate neurology training in Japan].

In order to improve Japanese postgraduate adult neurology training, the author compared the ongoing training in Japan and 5 neurology training programs in the USA. Japanese neurology training lacks pediatric neurology, neurosurgery, psychiatry, and neuropathology in many institutions. In order to improve our neurology training we have to establish more systematic programs, and have to ask for cooperation of various departments. We have to improve interdepartmental relationship, and we have to include other institutions for establishing adequate rotation program. In Japan neurosurgery and psychiatry rotation can be done in the same hospital, but we may have to send the residents to other institutions to cover pediatric neurology and neuropathology.

Curriculum↗

Reaction mechanism of L-2-haloacid dehalogenase of Pseudomonas sp. YL. Identification of Asp10 as the active site nucleophile by 18O incorporation experiments.

L-2-Haloacid dehalogenase (EC 3.8.1.2) catalyzes the hydrolytic dehalogenation of L-2-haloacids to produce the corresponding D-2-hydroxy acids. We have analyzed the reaction mechanism of the enzyme from Pseudomonas sp. YL and found that Asp10 is the active site nucleophile. When the multiple turnover enzyme reaction was carried out in H2(18)O with L-2-chloropropionate as a substrate, lactate produced was labeled with 18O. However, when the single turnover enzyme reaction was carried out by use of a large excess of the enzyme, the product was not labeled. This suggests that an oxygen atom of the solvent water is first incorporated into the enzyme and then transferred to the product. After the multiple turnover reaction in H2(18)O, the enzyme was digested with lysyl endopeptidase, and the molecular masses of the peptide fragments formed were measured by an ionspray mass spectrometer. Two 18O atoms were shown to be incorporated into a hexapeptide, Gly6-Lys11. Tandem mass spectrometric analysis of this peptide revealed that Asp10 was labeled with two 18O atoms. Our previous site-directed mutagenesis experiment showed that the replacement of Asp10 led to a significant loss in the enzyme activity. These results indicate that Asp10 acts as a nucleophile on the alpha-carbon of the substrate leading to the formation of an ester intermediate, which is hydrolyzed by nucleophilic attack of a water molecule on the carbonyl carbon atom.

Amino Acid Sequence↗

Tachykininergic slow depolarization of motoneurones evoked by descending fibres in the neonatal rat spinal cord.

1. In the isolated spinal cord of the neonatal rat, repetitive electrical stimulation of the upper cervical region elicited a prolonged depolarization of lumbar motoneurones (L3-5) lasting 1-2 min, which was recorded extracellularly from ventral roots, or intracellularly. 2. This depolarizing response was markedly depressed by the excitatory amino acid receptor antagonists D-(-)-2-amino-5-phosphonovaleric acid (D-APV, 30 microM) and 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX, 10 microM). The remaining response was further depressed by a 5-hydroxytryptamine (5-HT) receptor antagonist, ketanserin (3 microM). 3. In the presence of these antagonists, a small part of the depolarizing response of slow time course remained, and this response was partially blocked by the tachykinin NK1 receptor antagonists GR71251 (0.3-5 microM) and RP67580 (0.3-1 microM). In contrast, RP68651 (0.3-1 microM), the inactive enantiomer of RP67580, had no effect on the depolarizing response. 4. The slow depolarizing response in the presence of D-APV, CNQX and ketanserin was markedly potentiated by a peptidase inhibitor, thiorphan (1 microM). 5. This descending fibre-evoked slow depolarization became smaller after prolonged treatment (5-7 h) with 5,7-dihydroxytryptamine (10 microM), a neurotoxin for 5-HT neurones. Under such conditions, the effects of thiorphan and GR71251 on the slow depolarization were virtually absent. 6. Under the action of D-APV, CNQX and ketanserin, applications of tachykinins, substance P and neurokinin A produced depolarizing responses of lumbar motoneurones, and the responses were depressed by GR71251 and potentiated by thiorphan. 7. These results suggest that tachykinins contained in serotonergic fibres serve as neurotransmitters mediating the descending fibre-evoked slow excitatory postsynaptic potentials in motoneurones.

5,7-Dihydroxytryptamine↗

Overexpression and feasible purification of thermostable L-2-halo acid dehalogenase of Pseudomonas sp. YL.

The gene encoding thermostable L-2-halo acid dehalogenase of Pseudomonas sp. YL was isolated, and its overexpression system was constructed. Gene library was prepared from Sau3AI fragments of total DNA from Ps. sp. YL, pUC118 as a vector and Escherichia coli JM109 as a host. The recombinant cells resistant to bromoacetate, a germicide, were isolated and shown to produce L-2-halo acid dehalogenase. Subsequently, subcloning was carried out with pKK223-3 as a vector, and the length of DNA inserted was reduced to 1.1 kbp. One of the subclones showed very high activity, and the amount of the dehalogenase produced corresponded to about 30% of the soluble protein. From 5 g (wet weight) of cells, 105 mg of dehalogenase was efficiently purified by heat treatment and DEAE-Toyopearl chromatography. This overexpression system provides a large amount of the thermostable enzyme to enable us to study the properties, structure and application of the enzyme.

Cloning, Molecular↗

Ischemic and hemorrhagic brain stem lesions mimicking diabetic ophthalmoplegia.

Two patients with diabetes mellitus, one of them with an isolated third cranial nerve palsy and the other with an isolated sixth cranial nerve palsy, are presented. MRI investigations including diffusion-weighted MRI revealed a small ischemic brain stem lesion in the former and a small hemorrhagic brain stem lesion in the latter. In the former case wallerian degeneration of the nerve fascicle within the mesencephalon was also detected. These cases indicate that vascular accidents of the brain stem may masquerade as fascicular or infranuclear disturbance of the oculomotor or abducens nerve; therefore, it is important to include brain stem lesions into the differential diagnosis of isolated ophthalmoplegia. Thorough investigation by MRI including diffusion-weighted MRI is helpful for correct diagnosis.

Abducens Nerve↗

A novel proteinase, glucagon-degrading enzyme, secreted by a human pancreatic cancer cell line, HPC-YO.

Sixty-four kinds of cell lines were examined as to their ability to degrade glucagon using conditioned-media obtained from their protein-free cultures. Two human tumor cell lines were shown to produce this activity, and the cell line, HPC-YO, established from a human pancreatic carcinoma was shown to produce the highest level of activity. The glucagon-degrading enzyme (GDE) was purified from HPC-YO conditioned-medium by a combination of ion-exchange, gel filtration, and hydroxylapatite column chromatographies. The purified GDE also degraded vasoactive intestinal polypeptide (VIP) and secretin, however, it did not cleave EGF, gastrin, insulin, somatostatin, substance P, neurotensin, or growth hormone. The molecular weight of GDE is 83,000, as determined on SDS-polyacrylamide gel electrophoresis. The N-terminal amino acid sequence of GDE was blocked, and the five partial amino acid sequences obtained on lysyl-endopeptidase digestion were determined to be N-L-T-E-E-Y-D-V-S-D-G-E-I-E-L-L-Y-E-K, V-E-T-Y-Y-D-L-L-F-E-K, L-Y-W-F-L-D-E-A-K, S-N-S-T-S-Y-V-K, and Y-Y-A-S-T-S-Y-D-D-T-Y-K. The same or homologous amino acid sequences have not been found in known proteins, demonstrating that GDE is a novel peptidase that degrades the secretin family: glucagon, VIP, and secretin.

Amino Acid Sequence↗

Comprehensive site-directed mutagenesis of L-2-halo acid dehalogenase to probe catalytic amino acid residues.

L-2-Halo acid dehalogenase catalyzes the stereospecific hydrolytic dehalogenation of L-2-halo acids, with inversion of the C2-configuration. Seven L-2-halo acid dehalogenases from various bacterial strains are significantly similar to one another in their amino acid sequences (36-70% identity), and they are supposed to catalyze the reaction through the same mechanism. To identify catalytically important residues, we mutated all the 36 highly conserved charged and polar amino acid residues of L-2-halo acid dehalogenase from Pseudomonas sp. YL, which consists of 232 amino acid residues, by replacement of D by N, E by Q, R by K, and vice versa, S and T by A, Y and W by F, M by L, and H by N. We found that the replacement of D10, K151, S175, D180, R41, S118, T14, Y157, and N177 led to a significant loss in the enzyme activity or an increase in the Km value for the substrate, showing their involvement in the catalysis. The roles of these residues are discussed.

Amino Acid Sequence↗

Growth regulation of endothelial cells by tissue fragments: analysis on mechanism of rapid endothelialization of tissue-seeded vascular prosthesis in a three-dimensional culture system.

Rapid endothelialization of the inner surface was reported in an autologous tissue-seeded vascular prosthesis. We applied a three-dimensional in vitro culture system to elucidate the precise mechanism of rapid endothelial coverage of a tissue-seeded vascular prosthesis. Human venous, omental, adipose and striated muscle tissue fragments were harvested from surgical specimens. They were embedded in collagen gel, and 2.0 x 10(5) bovine aortic endothelial cells (BAECs) were seeded on the gel. The number of BAECs was counted on Days 2 and 7. Growth rate of BAECs was facilitated on the collagen gel with omental and striated muscle tissue fragments (p < 0.05). Factor VIII-negative spindle cells migrated around tissue fragments, especially around the omental and striated muscle tissue fragments. Rapid endothelialization of a tissue-seeded vascular prosthesis may result from facilitation of EC proliferation by viable tissue fragments and migrated cells. These results confirm tissue fragments regulate EC growth, and are useful as bioengineering tools.

Animals↗

Use of NK1 receptor antagonists in the exploration of physiological functions of substance P and neurokinin A.

Tachykinin NK1 receptor antagonists were used to explore the physiological functions of substance P (SP) and neurokinin A (NKA). Pharmacological profiles of three NK1 receptor antagonists, GR71251, GR82334, and RP 67580, were examined in the isolated spinal cord preparation of the neonatal rat. These tachykinin receptor antagonists exhibited considerable specificities and antagonized the actions of both SP and NKA to induce the depolarization of ventral roots. Electrical stimulation of the saphenous nerve with C-fiber strength evoked a depolarization lasting about 30 s of the ipsilateral L3 ventral root. This response, which is referred to as saphenous-nerve-evoked slow ventral root potential (VRP), was depressed by these NK1 receptor antagonists. In contrast, the saphenous-nerve-evoked slow VRP was potentiated by application of a mixture of peptidase inhibitors, including thiorphan, actinonin, and captopril in the presence of naloxone, but not after further addition of GR71251. Likewise, in the isolated coeliac ganglion of the guinea pig, electrical stimulation of the mesenteric nerves evoked in some ganglionic cells slow excitatory postsynaptic potentials (EPSPs), which were depressed by GR71251 and potentiated by peptidase inhibitors. These results further support the notion that SP and NKA serve as neurotransmitters producing slow EPSPs in the neonatal rat spinal cord and guinea pig prevertebral ganglia.

Animals↗