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Biomedical subjects

T Urano

Publications and source records attributed to T Urano.

At least 127 records · Page 7Linked to original sources

Effects of roxithromycin, erythromycin and troleandomycin on their N-demethylation by rat and human cytochrome P450 enzymes.

1. The effects of treatment of rat with roxithromycin, erythromycin and troleandomycin as well as other chemicals including typical cytochrome P450 inducers were examined in rat and human liver microsomes. 2. Erythromycin and troleandomycin but not roxithromycin caused slight increases in CYP3A1 levels and the N-demethylation of roxithromycin, erythromycin and troleandomycin and oxidation of nifedipine in rat, but none of these chemicals induced significantly CYP2B1 levels or benzphetamine N-demethylation activities. 3. Dexamethasone and pregnenolone 16 alpha-carbonitrile induced CYP3A1 levels and N-demethylation of roxithromycin, erythromycin and troleandomycin but not of benzphetamine, in rat liver microsomes. Treatment of rat with phenobarbital caused increases in both CYP2B1 and 3A1 levels and all of the N-demethylation activities examined. Phenytoin and metyrapone produced increases in contents of 2B1 and activities of benzphetamine N-demethylation as well as of roxithromycin, erythromycin and troleandomycin, although these two inducers did not induce 3A1 protein significantly. 4. In man, a liver sample that was high in CYP3A4 and nifedipine oxidation activity was found to be the most active in N-demethylation activities towards these substrates examined. In addition, recombinant 3A4 catalysed very efficiently the N-demethylation of roxithromycin, erythromycin and troleandomycin in reconstituted monooxygenase systems. 5. These data suggest that erythromycin and troleandomycin, but not roxithromycin, were able to induce CYP3A1 in rat liver microsomes, and that N-demethylation of roxithromycin, erythromycin and troleandomycin were catalysed mainly by 3A1 (and partly by 2B1) in rat and by 3A4 in man.

Animals↗

[Effects of intravenous 2-chloroadenosine on endotoxin-induced acute lung injury].

To assess the effects of 2-chloroadenosine (2CA) on acute lung injury caused by endotoxin (lipopolysaccharide), guinea pigs were given 2CA intravenously. Three groups were used: saline control, endotoxin control and 2CA+ endotoxin. In the endotoxin and 2CA+ endotoxin groups, neutrophils accumulated in bronchoalveolar lavage fluid and in lung tissue. However, neutrophil accumulation did not differ significantly between the endotoxin and the 2CA+ endotoxin groups. The number of macrophages in bronchoalveolar lavage fluid was significantly higher in the endotoxin group than in the saline control group, but the difference between the saline control and the 2CA+ endotoxin groups was not significant. The lung wet-dry weight ratio and 125I-albumin lung tissue-plasma ratio, which were used to measure acute lung injury, were significantly higher in the endotoxin group than in the 2CA+ endotoxin and the saline control groups. However, these ratios did not differ between the 2CA+ endotoxin and the saline control groups. These results suggest that 2CA attenuated endotoxin induced acute lung injury in guinea pigs.

2-Chloroadenosine↗

Involvement of Ral GTPase in v-Src-induced phospholipase D activation.

An early response to the tyrosine kinase activity of v-Src is an increase in phospholipase D (PLD) activity, which leads to the generation of biologically active lipid second messengers, including phosphatidic acid, lysophosphatidic acid and diacylglycerol. We have recently demonstrated that v-Src-induced PLD activity is mediated by Ras, although Ras involvement was indirect, requiring a cytosolic factor for PLD activation. Ras interacts with and activates Ral-GDS, the exchange factor responsible for the activation of Ral GTPases. Here we report that this newly identified Ras/Ral signalling pathway mediates PLD activation by v-Src. PLD activity could be precipitated from v-Src-transformed cell lysates with immobilized RalA protein and with an anti-Ral antibody. A mutation to the region of RalA analogous to the 'effector domain' of Ras did not reduce the ability of RalA to complex with PLD, although deletion of a Ral-specific amino-terminal region did. Overexpression of RalA potentiated PLD activation by v-Src, and expression of dominant negative RalA mutants inhibited both v-Src- and v-Ras-induced PLD activity. Thus RalA is involved in the tyrosine kinase activation of PLD through its unique N terminus, and that PLD is a downstream target of a Ras/Ral GTPase cascade.

3T3 Cells↗

Changes in blood and plasma serotonergic measurements in rats--effect of nicotine and/or exposure to different stresses.

Effects of two kinds of stress on plasma and whole blood serotonergic measurements were studied in nicotine administered rats. Plasma tryptophan levels increased after footshock stress. Stress given to nicotine administered rats resulted in decrease in plasma tryptophan levels. Although there was no change in 5-HT levels in whole blood, footshock increased plasma levels of 5-HT, and restraint stress decreased its levels. Plasma and whole blood 5-HIAA levels increased in rats given stress and nicotine. 5-HIAA/5-HT ratio (the turnover rate of 5-HT) in plasma and blood increased only in rats given stress and nicotine. These results indicate that nicotine administration may decrease stress induced increase in plasma 5-HT levels by increasing its degradation.

Analysis of Variance↗

Daily variation of serum lipids in relation to the circadian rhythm of platelet aggregation in healthy male persons.

The circadian rhythm of platelet aggregation was compared with that of serum lipids in seven healthy male persons. Daily variations of remnant lipoprotein-cholesterol and of remnant lipoprotein-triglycerides were related to those of arachidonic acid-, ADP (adenosine diphosphate)-, and collagen-induced aggregation in platelet-rich plasma and to ADP-induced aggregation in whole blood, respectively. Statistical analyses indicate that the time course of remnant-cholesterol was correlated to that of ADP-induced aggregation in platelet-rich plasma and the time courses of blood cholesterol and triglyceride were correlated to arachidonic acid- and serotonin-induced platelet aggregation in platelet-rich plasma, respectively. In whole blood, the time course of remnant lipoprotein-triglyceride was correlated only to ADP-induced platelet aggregation. In contrast, the daily variation of HDL (high density lipoprotein)-cholesterol did not influence either that of platelet aggregation in platelet-rich plasma or that in whole blood. Our findings are of clinical interest regarding the development of atherosclerosis and thrombotic events in persons with an elevated level of serum lipids.

Adolescent↗

The cleavage and inactivation of plasminogen activator inhibitor type 1 by neutrophil elastase: the evaluation of its physiologic relevance in fibrinolysis.

The effect of the proteolytic cleavage of plasminogen activator inhibitor type 1 (PAI-1) by human neutrophil elastase (HNE) on fibrinolysis was investigated. HNE cleaved active PAI-1 and produced low molecular weight forms of inactive PAI-1, as previously reported. Latent PAI-1 was resistant to HNE treatment. Vitronectin (VN) partially protected the cleavage. NH2-terminal sequence analysis indicated that the cleavage site was Val355-Ser356 (P4-P3). The effects of PAI-1 cleavage by HNE on clot lysis was studied in a purified system. Clot lysis time without PAI-1 was 20.0 +/- 5.0 minutes and was prolonged to 86.7 +/- 2.9 minutes by 68 nmol/L of PAI-1. It was shortened when HNE (from 0.6 nmol/L to 80 nmol/L) was added and returned to the value obtained without PAI-1 by 80 nmol/L of HNE (20.0 +/- 5.8 minutes). However, in the absence of PAI-1, elastase did not enhance clot lysis at all. Euglobulin clot lysis time was also shortened after HNE treatment. The cleavage and inactivation of PAI-1 by HNE was shown to be a novel pathway to enhance fibrinolysis.

Amino Acid Sequence↗

Inhibitory action of nm23 proteins on induction of erythroid differentiation of human leukemia cells.

We recently identified a differentiation inhibitory factor (I-factor) in mouse myeloid leukemia M1 cells as a murine homolog of the human nm23-H2 gene product. nm23 genes encode proteins that participate in tumor metastasis regulation and in various fundamental cellular processes, although their mechanisms of action are still unknown. Although all nm23 proteins contain nucleoside diphosphate (NDP) kinase activity, it has not been established that the enzyme activity mediated the various functions of nm23 proteins. In the present experiment, we examined the effect of nm23 proteins on various differentiation induction systems of human leukemic cells including HL-60, U937, HEL/S, KU812F, K562, and HEL cells. Native human erythrocyte NDP kinase protein inhibited the induction of erythroid differentiation of HEL, KU812 and K562 cells, but not the induction of monocytic or granulocytic differentiation of HL-60, U937 and HEL/S cells. The erythroid differentiation of HEL cells was inhibited by recombinant human nm23-H1, -H2, mouse nm23-M1, and -M2 proteins. Moreover, both the mutant nm23-H2His protein and truncated nm23-H2 protein containing N-terminal (1-60) peptide, which do not have NDP kinase activity, also inhibited erythroid differentiation of HEL cells. These results suggest that (1) the differentiation inhibitory activity of I-factor/nm23 protein is not restricted to monocytic differentiation of M1 cells, (2) the inhibitory activity is exhibited without species specificity, and (3) the differentiation inhibitory activity of the nm23/NDP kinase protein is independent of its enzyme activity and requires the presence of N-terminal peptides.

Base Sequence↗

Two isotypes of murine nm23/nucleoside diphosphate kinase, nm23-M1 and nm23-M2, are involved in metastatic suppression of a murine melanoma line.

A series of sublines of a murine melanoma B16 of C57BL/6 origin were established and examined regarding their metastatic capacity and expression of nm23. The number of pulmonary metastases developed by these sublines was inversely correlated with the expression of two isotypes of nm23, nm23-M1 and nm23-M2. The cDNAs of nm23-M1, nm23-M2, and a combination of both were transfected into the highly metastatic melanoma subline FE7, with low nm23 expression. FE7 transfectants of any of these cDNAs expressed transfected genes, and their metastatic capacity was suppressed when compared with parental FE7 or FE7 transfected with a control neo gene. These cell lines, however, did not change in terms of in vitro growth in the presence of 3 or 10% fetal bovine serum and in vivo growth when injected s.c. into C57BL/6-nu/nu mice. Similar experiments were also performed using FE7 transfectants of human nm23 genes. Transfectants of nm23-H1, nm23-H2, and their combination did not present altered metastatic potential. These findings indicated that two murine isotypes of nm23 but not those of humans are intimately related with the suppression of metastasis in the murine body.

Animals↗

A new function of Nm23/NDP kinase as a differentiation inhibitory factor, which does not require it's kinase activity.

We recently identified a differentiation inhibiting factor (I-factor) in mouse myeloid leukemia M1 cells as a murine homolog of nm23-H2/nucleoside diphosphate kinase (NDPK)-B gene product. We examined the I-factor activities of several authentic nm23/NDPK proteins, i.e. recombinant rat NDPK alpha and beta, recombinant mouse nm23-M1 and -M2, and recombinant human nm23-H1 and -H2 containing a mutant nm23-H2His protein lacing NDPK activity. Almost all these nm23/NDPK proteins showed I-factor activity. Moreover, to understand the active domain exhibiting I-factor activity of nm23-H2 protein lacking NDPK activity, we have investigated the I-factor activities of some truncated nm23-H2 proteins. The truncated nm23-H2 protein containing N-terminal peptide 1-60 retained the I-factor activity. These results provide the first evidence for a function of nm23/NDPK as a differentiation inhibiting factor in leukemic cells, that is independent of its NDPK activity and dependent on the presence of N-terminal peptide.

Animals↗

Increased procoagulant and antifibrinolytic activities in the lungs with idiopathic pulmonary fibrosis.

To elucidate the pathophysiology of idiopathic pulmonary fibrosis (IPF), we examined procoagulant (tissue factor:TF), fibrinolytic (tissue type plasminogen activator:t-PA and urokinase type plasminogen activator:u-PA) and antifibrinolytic (plasminogen activator inhibitor-1:PAI-1 and PAI-2) activities in bronchoalveolar lavage (BAL) supernatant fluids and BAL cell lysates obtained from IPF patients. The results indicated that TF levels in BAL supernatant fluids from IPF patients were higher than those of normal subjects, especially in patients with progressive disease, suggesting that TF levels in the lung correlate with disease activity. PAI-1 levels in BAL supernatant fluids were significantly higher in IPF patients than in normal subjects (1.7 +/- 4.1 vs 0 ng/mg protein). PAI-2 levels in BAL cell lysates were also significantly higher in IPF patients than those in normal subjects (14.4 +/- 12.2 vs 3.0 +/- 3.0 ng/mg protein). However, u-PA levels in both BAL supernatant fluids and BAL cell lysates did not differ between the two groups. These observations suggest that u-PA inhibition exceeded u-PA activity in alveolar lining fluid resulting in an antifibrinolytic condition. Immunohistochemical analysis showed that TF was intensely stained in cuboidal epithelial cells and PAIs were positively stained in alveolar macrophages (AMs) and cuboidal epithelial cells, suggesting that cuboidal epithelial cells as well as AMs contribute to the increased procoagulant and antifibrinolytic activities in the lungs of IPF patients.

Aged↗

In vitro effect of endothelin-1 on collagen, and ADP-induced aggregation in human whole blood and platelet rich plasma.

The effect of ET-1 on ADP- and collagen-induced platelet aggregation in whole blood and platelet rich plasma (PRP) was studied in 39 healthy volunteers. Although ET-1 itself did not cause platelet aggregation, a marked enhancement of ADP-induced aggregation after the preincubation with ET-1 for 5 min was observed in whole blood, but not in PRP. This ET-1 concentration and preincubation time-dependent phenomenon could be demonstrated only at threshold concentrations (5 and 7.5 microM) of ADP and is probably due to an interaction of ET-1 with cells which are involved in the whole blood aggregation, such as polymorphonuclear neutrophils. In whole blood and PRP an inhibition of collagen-induced aggregation after the preincubation with ET-1 was detected. In contrast to ADP, a direct influence of ET-1 on platelet activation after the addition of collagen is therefore more likely. These results suggest that human platelets may possess ET-1 receptor(s) and that ET-1 may also interact with other blood cells.

Adenosine Diphosphate↗

Effects of nicotine and electric footshock on peripheral serotonergic measures and on platelet aggregation in whole blood of rats.

The effects of nicotine and electric foot shock as well as of their combination on blood serotonergic measures and on whole blood aggregation have been analyzed. In rats subjected to electric footshock a rise (p < 0.05) in plasma but not in whole blood serotonin was observed, whereas this parameter was not influenced in nicotine-treated rats when compared to the control group. The combination of nicotine with electric footshock only slightly increased plasma serotonin and showed no effect on whole blood serotonin, but 5-hydroxyindole acetic acid (5-HIAA), the major metabolite of serotonin (5-HT), as well as the 5-HIAA/5-HT ratio were markedly increased (p < 0.01) suggesting an enhanced turnover of 5-HT under these conditions. The collagen-induced aggregation in whole blood was not influenced in nicotine-, in footshock- nor in combined-treated rats when compared to the controls. Our data indicate that stress as well as the combination of stress with nicotine may affect the serotonergic system which is in contrast to the exposure to nicotine alone.

Animals↗

Changes in the central and peripheral serotonergic system in rats exposed to water-immersion restrained stress and nicotine administration.

The effects of water-immersion restraint stress (WS) on chronically nicotine-administered rats were studied in the blood and various regions of the brain. Serotonin (5-HT) levels increased in the hypothalamus, hippocampus, cortex and cerebellum following the administration of nicotine. 5-HT levels increased in all the brain regions following stress. Nicotine decreased stress-induced increased levels of 5-HT in the hippocampus and cerebellum. Nicotine administration alone increased 5-hydroxyindole acetic acid (5-HIAA) levels in the hippocampus and cerebellum. Stress alone also increased 5-HIAA levels in all the brain regions. In the cortex, 5-HT and 5-HIAA levels further increased following the administration of a combination of stress and nicotine compared to rats given stress alone. In the blood as well as in all the brain regions, except the cerebellum, stress or nicotine administration did not affect tryptophan levels. Stress given to nicotine-administered rats resulted in a decrease in tryptophan levels in the blood and plasma. Although 5-HT and 5-HIAA levels were not influenced by stress and/or nicotine administration, the 5-HIAA/5-HT ratio increased in the blood and plasma of rats administered with nicotine and exposed to stress. The effects of nicotine on the serotonergic system depend upon the kind of stress given together with the organs and brain regions involved.

Analysis of Variance↗

Detection of measles virus genome directly from clinical samples by reverse transcriptase-polymerase chain reaction and genetic variability.

A simple and sensitive method for the detection of measles virus genome was developed, amplifying the regions encoding the nucleocapsid (N) protein and hemagglutinin (H) protein of measles virus by reverse transcriptase-polymerase chain reaction (RT-PCR). We examined a variety of measles patients: 28 patients with natural infection, 4 with measles encephalitis and 1 with subacute sclerosing panencephalitis (SSPE). In 28 patients with natural measles infection a single step PCR amplifying the N region resulted in a high detection rate for all plasma samples (28/28) within 3 days of the onset of rash and 80% (20/25) even on day 7 of the onset of rash and later. Within 3 days of the onset of rash, 24/25 (96.0%) of nasopharyngeal secretions (NPS) and 27/28 (96.4%) of peripheral blood mononuclear cells (PBMC) were positive for the N region PCR and the positivity rate of PCR decreased in NPS and PBMC after 7 days of the rash. In acute measles infection, measles genome was detected in all cell fractions, CD4, CD8, B cells, and monocytes/macrophages by the H gene nested PCR. Measles genome was also detected from cerebrospinal fluids (CSF) in patients with measles encephalitis, SSPE, and acute measles by the H gene nested PCR. PCR products of the N and H regions were sequenced and we confirmed the presence of measles genome. Based on the sequence data, chronological sequence differences were observed over the past 10 years. The sequences obtained from the SSPE patient were closely related to those of the wild viruses that were circulating at the time when the patient initially acquired measles. RT-PCR for NPS, PBMC, CSF, and plasma provides a useful method for the diagnosis of measles and molecular epidemiological study in addition to virus isolation.

Adolescent↗

Amino acids, serotonin, and 5-hydroxyindoleacetic acid following foot shock in rats.

Concentrations of tryptophan, serotonin (5-HT), and 5-hydroxyindoleacetic acid (5-HIAA) in brain and plasma, as well as plasma amino acid composition, were measured after 1-h foot shock. Stress induced a rise in both plasma and brain 5-HIAA, whereas 5-HT concentration was found to be increased only in plasma. A prominent rise in brain tryptophan was observed, whereas in plasma, foot shock caused a significant increase only in tryptophan level. Concentrations of other amino acids were found to be either decreased or unchanged. Ratio of tryptophan to the other long-chain neutral amino acids increased significantly following foot shock. It is possible that stress-related changes in 5-HT turnover are due to increased plasma tryptophan, in turn causing a rise in brain tryprophan, necessary to cope with enhanced 5-HT metabolism, reflected as a rise in 5-HIAA levels.

Amino Acids↗

Role of neutrophils and platelets in the pathogenesis of focal hepatocellular necrosis in endotoxaemia.

To clarify whether neutrophils and platelets are implicated in the pathogenesis of focal hepatocellular necrosis in endotoxaemia, we examined the relationship between the changes in neutrophils and platelets in peripheral blood and the degree of focal hepatocellular necrosis and serum transaminase activity in rats after endotoxin injection. The number of neutrophils in the peripheral blood decreased rapidly during the first hour after endotoxin injection and then increased. This initial decrease might be caused by the adhesion of neutrophils to pulmonary capillary walls, and the subsequent increase might be caused by granulocyte colony-stimulating factor mediated by endotoxin. However, there was no relationship between the degree of focal hepatocellular necrosis and the number of neutrophils sticking to the walls of hepatic sinusoids or the changes in the neutrophil count in the peripheral blood. The number of platelets in the peripheral blood decreased rapidly after endotoxin injection. There was a statistically significant relationship between the number of platelets in the peripheral blood and the level of serum transaminase activity: the fewer the platelets, the more severe was focal hepatocellular necrosis. The present study suggests that rapid and extensive consumption of platelets, rather than neutrophils sticking to the sinusoidal walls, is involved in the pathogenesis of focal hepatocellular necrosis in endotoxaemia.

Animals↗

Expression of CD44 variant exons 8-10 in colorectal cancer and its relationship to metastasis.

Splice variants of CD44 are overexpressed in human lung, breast, and colon carcinoma cell lines. This study was conducted to clarify the association between the expression of CD44 variant exons 8-10 and metastatic potential in human colorectal cancer. We found that the expression of a CD44 splice variant containing exons v8-10 was increased in all of 60 colorectal cancer specimens examined compared with matched normal colerectal mucosa, as determined by Northern blotting. Expression of CD44 variant exons 8-10 did not significantly correlate with histological type, depth of tumor invasion, lymphatic invasion, venous invasion, or lymph node metastasis. However, the level of CD44 variant exon 8-10 expression was significantly higher in carcinomas associated with liver metastasis than in those without liver metastasis. In addition, expression of CD44 variant exons 8-10 in the liver metastases was more intense than that in the primary colorectal cancers. These findings indicated that this domain of the CD44 glycoprotein encoded by exons v8-10 may play an important role in tumor hematogenous metastasis of human colorectal cancer.

Blotting, Northern↗