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T Nagasaki

Publications and source records attributed to T Nagasaki.

At least 19 recordsLinked to original sources

Modulation by cAMP of 1alpha,25-dihydroxyvitamin D3 sensitivity of murine erythroleukemia cells.

As we previously reported, 1alpha,25-dihydroxyvitamin D3 (1,25(OH)2D3) dose-dependently inhibited not only proliferation of undifferentiated murine erythroleukemia (MEL) cells but also activin A-induced erythroid differentiation of MEL cells. However, the effect of 1,25(OH)2D3 on MEL cell proliferation was significantly greater by one order of magnitude than that on differentiation (IC(50): 9.2 vs 0.8 nM, respectively). The response of activin A-treated mature MEL cells to 1,25(OH)2D3 in the induction of 1,25(OH)2D3-24-hydroxylase (24-OHase) activity, a rapid effect of 1,25(OH)2D3, was enhanced to the same degree as in untreated immature cells, suggesting that differences in capacity of cells to inactivate 1,25(OH)2D3 did not contribute to augmentation of 1,25(OH)2D3 effect in activin A-treated mature cells. Furthermore, neither the number nor the affinity of vitamin D receptors (VDR) differed significantly between activin A-treated cells and untreated immature cells. The intracellular cAMP level, which affects 1,25(OH)2D3-mediated induction of 24-OHase activity, was significantly less in activin A-treated mature cells than in immature MEL cells. The addition of dibutyryl cAMP (dbc AMP) to activin A-treated MEL cells dose-dependently attenuated 1,25(OH)2D3-mediated induction of 24-OHase activity, finally to a level comparable to that of the untreated cells at the final concentration of 100 nM dbcAMP, while dbcAMP itself by 100 nM did not affect MEL cell differentiation by 24 h. In summary, we have shown for the first time that 1,25(OH)2D3 exerted its effect on leukemia cells at physiological concentration and that the magnitude of this effect depended on the changes in intracellular cAMP level through stages of differentiation, suggesting that the cAMP-protein kinase A system may be useful as a target for clinical application of vitamin D analogs by improving the sensitivity of leukemic cells to 1,25(OH)2D3.

Activins↗

Structure-activity relationships of quinazoline derivatives: dual-acting compounds with inhibitory activities toward both TNF-alpha production and T cell proliferation.

We synthesized 4-chlorophenethylaminoquinazoline derivatives and evaluated their inhibitory activities toward both TNF-alpha production and T cell proliferation responses. Compound 2f, containing a piperazine ring at the C(7)-position of the quinazoline ring, exhibited more potent inhibitory activities toward both than the lead compound la. A smaller N-substituent in the piperazine ring was required for inhibition of TNF-alpha production.

Animals↗

No correlations between the urinary ratio of 6beta-hydroxycortisol to free cortisol and pharmacokinetics of alprazolam.

OBJECTIVE: The urinary ratio of 6beta-hydroxycortisol to cortisol is known as a possible marker of CYP3A4 activity. We investigated the correlation between this ratio and the disposition of alprazolam, which is a substrate of CYP3A4. METHODS: Twelve healthy volunteers took a single dose (0.8 mg) of alprazolam at 0800 hours. Blood samplings were conducted up to 48 h after the dosing. Urine was collected during the 24 h prior to dosing. Quantification of alprazolam in plasma and that of cortisol and 6beta-hydroxycortisol in urine was performed using high-performance liquid chromatography. RESULTS: Mean (+/-SD) values of peak plasma concentration (Cmax), time to Cmax (tmax), area under the plasma concentration-time curve [AUC(0-48)] and elimination half-life (tl/2) of alprazolam were 12.0+/-3.0 ng/ml, 1.5+/-0.9 h, 200+/-41 ng/ml h and 16.0+/-4.3 h, respectively. Mean (+/-SD) urinary ratio of 6beta-hydroxycortisol to cortisol was 3.28+/-0.67. No significant correlations were found between urinary ratio of 6beta-hydroxycortisol to cortisol and any pharmacokinetic parameters of alprazolam (Cmax: rs= -0.06; tmax: r(s)= 0.34; AUC(0-48): rs=0.08; t1/2: r(s)= -0.36). CONCLUSION: This study suggests that the urinary ratio of 6beta-hydroxycortisol to cortisol is unlikely to predict pharmacokinetics of alprazolam.

Adult↗

Preparation of antibody against agatharesinol, a norlignan, using a hapten-carrier conjugate.

In order to immunolabel heartwood extractives in Japanese cedar (Sugi, Cryptomeria japonica), we attempted to prepare antibodies against agatharesinol, a major norlignan of these heartwood extractives. Agatharesinol by itself is not antigenic due to its low-M(r), and thus was covalently bound to bovine serum albumin in order to synthesize an antigenic hapten-carrier conjugate (artificial antigen). The number of agatharesinol molecules per artificial antigen molecule was estimated as 27-28 by quantifying Lys in an acid hydrolysate of the artificial antigen by HPLC. Reaction between the artificial antigen and serum obtained from a rabbit immunized with the artificial antigen was competitively inhibited by agatharesinol, indicating the successful production of anti-agatharesinol antibodies. Inhibition by sequirin C, another major norlignan in Sugi, was weaker than that by agatharesinol. Furthermore, an EtOAc soluble fraction, which contains mainly norlignans, inhibited the reaction more strongly than any of the other fractions of Sugi heartwood extractives. Thus, the antiserum we have produced reacts most strongly with agatharesinol and recognizes norlignans almost selectively among Sugi heartwood extractives.

Animals↗

Role of tears in keratocyte loss after epithelial removal in mouse cornea.

PURPOSE: To study the role of tears in the death of keratocytes after epithelium removal in the mouse cornea. METHODS: In anesthetized mice, an approximately 1-mm circle of epithelium was removed from the center of the cornea, exposing the underlying stroma. In one group of animals, access of tears to the bare stroma was allowed-in vivo, by closing the eyelids, or ex vivo, by dropping tears from another animal onto the denuded stroma of an enucleated eyeball. In another group, tear access was denied-in vivo, by bathing the cornea continuously in saline or by keeping the lids open, or ex vivo, by rinsing the denuded cornea before incubating the enucleated eyeball. In a separate group, corneal epithelial debris from another mouse was placed on the bare stroma of an enucleated eyeball. The corneas were isolated, stained with a fluorescent nuclear dye, and observed en face in a wholemount preparation under a fluorescence microscope, to evaluate the distribution of intact nuclei across the entire depth of the stroma. RESULTS: Between 1.5 and 2 hours after exposure to tears, the nuclei of the anterior keratocytes under the area of epithelial debridement invariably degenerated. When they had been protected from the tears, however, no degeneration was observed. Epithelial debris applied on the bare stroma had no effect on the underlying keratocytes. CONCLUSIONS: Factors in tear fluid trigger keratocyte loss after removal of the epithelium in the mouse cornea.

Animals↗

Determination of risperidone and 9-hydroxyrisperidone in human plasma by high-performance liquid chromatography: application to therapeutic drug monitoring in Japanese patients with schizophrenia.

A high-performance liquid chromatographic method has been developed for the simultaneous determination of risperidone and its major active metabolite 9-hydroxyrisperidone in plasma. Risperidone and 9-hydroxyrisperidone in plasma were extracted using a CN bonded-solid phase cartridge, followed by, C4 reversed-phase HPLC separation. Risperidone, 9-hydroxyrisperidone and trazodone as an internal standard were detected by ultraviolet absorbance at 280 nm. It was possible to determine risperidone in the concentration range of 1.0-100.0 ng/ml(-1) and 9-hydroxyrisperidone at a range of 2.0-200.0 ng/ml(-1). The detection limits of risperidone and 9-hydroxyrisperidone were 0.5 and 1.0 ng/ml(-1), respectively. The mean recoveries of risperidone and 9-hydroxyrisperidone added to plasma were less than 92.0 and 92.6%, with a coefficient of variation of less than 10.6 and 10.5%, respectively. This method has been used for the simultaneous determination of steady-state plasma concentration (Css) of risperidone and 9-hydroxyrisperidone in schizophrenic patients treated with 3-, 6-, and 12-mg risperidone oral doses per day.

Adult↗

Alphav integrin regulates TNF-alpha-induced nitric oxide synthesis in rat mesangial cells--possible role of osteopontin.

BACKGROUND: Tumour necrosis factor-alpha (TNF-alpha) induces nitric oxide (NO) synthesis in rat mesangial cells (MCs). We previously demonstrated that osteopontin (OP), a matrix protein that mainly interacts with the alphav integrin family, increased time-dependently by TNF-alpha stimulation at gene and protein levels. The regulation of NO synthesis by integrins or matrix proteins is unclear. METHODS: We examined whether integrin, especially alphav integrin, regulates NO synthesis in rat MCs and whether OP, an alphav integrin ligand, has an effect on TNF-alpha-induced NO synthesis. Furthermore, OP and inducible NO synthase (iNOS) gene expression was examined by Northern blotting. RESULTS: TNF-alpha increased NO synthesis in MCs in a time-dependent manner. Synthetic GRGDSP peptide, which is known to inhibit various integrins that interact with RGD-containing extracellular matrices, increased TNF-alpha-induced NO levels in a dose-dependent manner. Cyclical RGD peptide, the specific inhibitor of alphav integrin, also exhibited a dose-dependent effect of increasing NO levels, while GRGESP peptide, which has very low affinity to integrins, had no effect. In addition, NO synthesis was found to be significantly reduced when MCs were plated on OP-coated dishes compared to type I or IV collagen-coated dishes. Furthermore, anti-OP antibody increased NO synthesis in MCs. iNOS mRNA levels were increased by TNF-alpha, and were abruptly diminished after OP mRNA was significantly induced. CONCLUSIONS: The present study demonstrated the involvement of alphav integrin in TNF-alpha-induced NO synthesis in rat MCs, and the possible role of OP was suggested in the mechanism. TNF-alpha and extracellular matrices can co-operate to regulate the behaviour of MCs at least partly through NO synthesis, which may participate in the course of glomerular diseases.

Animals↗

High-performance liquid chromatographic determination of nemonapride and desmethylnemonapride in human plasma using an electrochemical detection.

A high-performance liquid chromatographic method using an electrochemical detector (HPLC-ED) was developed for the determination of nemonapride and its active metabolite, desmethylnemonapride in human plasma. Nemonapride, desmethylnemonapride and moperone chloride, which was used as the internal standard (I.S.) in plasma, were extracted by a rapid and simple procedure based on C18 bonded-phase extraction, and were separated by C8 reversed-phase HPLC column. Nemonapride and desmethylnemonapride were detected by high conversion efficiency amperometric detection at +0.84 V. Determination of both nemonapride and desmethylnemonapride were possible in the concentration range at 0.25-5.0 ng/ml, and the limit of detection for each was 0.1 ng/ml. The recoveries of nemonapride and desmethylnemonapride added to plasma were 97.0-98.2% and 96.7-98.8%, respectively, with coefficients of variation of less than 7.2% and 10.3%, respectively. This method is applicable to drug level monitoring in the plasma of schizophrenia patients treated with nemonapride and to the study of pharmacokinetics.

Antipsychotic Agents↗

Rho guanosine triphosphatase mediates the selective stabilization of microtubules induced by lysophosphatidic acid.

The asymmetric distribution of stable, posttranslationally modified microtubules (MTs) contributes to the polarization of many cell types, yet the factors controlling the formation of these MTs are not known. We have found that lysophosphatidic acid (LPA) is a major serum factor responsible for rapidly generating stable, detyrosinated (Glu) MTs in serum-starved 3T3 cells. Using C3 toxin and val14 rho we showed that rho was both necessary and sufficient for the induction of Glu MTs by LPA and serum. Unlike previously described factors that induce MT stability, rho induced the stabilization of only a subset of the MTs and, in wound-edge cells, these stable MTs were appropriately oriented toward the leading edge of the cell. LPA had little effect on individual parameters of MT dynamics, but did induce long states of pause in a subset of MTs near the edge of the cell. Rho stimulation of MT stability was independent of actin stress fiber formation. These results identify rho as a novel regulator of the MT cytoskeleton that selectively stabilizes MTs during cell polarization by acting as a switch between dynamic and stable states of MTs rather than as a modulator of MT assembly and disassembly.

3T3 Cells↗

Effect of itraconazole on the single oral dose pharmacokinetics and pharmacodynamics of alprazolam.

To assess the effect of itraconazole, a potent inhibitor of cytochrome P450 (CYP) 3A4, on the single oral dose pharmacokinetics and pharmacodynamics of alprazolam, the study was conducted in a double-blind randomized crossover manner with two phases of treatment with itraconazole-placebo or placebo-itraconazole. Ten healthy male subjects receiving itraconazole 200 mg/day or matched placebo orally for 6 days took an oral 0.8 mg dose of alprazolam on day 4 of each treatment phase. Plasma concentration of alprazolam was measured up to 48 h after alprazolam dosing, together with the assessment of psychomotor function by the Digit Symbol Substitution Test, Visual Analog Scale and Udvalg for kliniske undersøgelser side effect rating scale. Itraconazole significantly (P < 0.01) increased the area under the concentration-time curves from 0 h to infinity (252 +/- 47 versus 671 +/- 205 ng h/ml), decreased the apparent oral clearance (0.89 +/- 0.21 versus 0.35+/-0.10 ml/min per kg) and prolonged the elimination half-life (15.7 +/- 4.1 versus 40.3 +/- 13.5 h) of alprazolam. The test performed during itraconazole treatment showed significantly depressed psychomotor function. It is suggested that itraconazole, a potent CYP3A4 inhibitor, increases plasma concentration of alprazolam via its inhibitory effects on alprazolam metabolism. Thus, this study supports previous studies suggesting that CYP3A4 is the major enzyme catalyzing the metabolism of alprazolam. Enhanced side effects of alprazolam by itraconazole coadministration were probably reflected by these pharmacokinetic changes.

Administration, Oral↗

Correlation between steady-state plasma concentrations of mianserin and trazodone in depressed patients.

OBJECTIVE: The correlations between steady-state plasma concentrations of mianserin and its active metabolite desmethylmianserin and those of trazodone and its active metabolite m-chlorophenylpiperazine (m-CPP) were examined in 19 depressed patients. METHODS: Ten patients received first mianserin (30 mg per day) and second trazodone (150 mg per day), while 9 patients received these treatments in the opposite sequence, with at least 2-week intervals between the two phases. Blood was sampled at steady state, 1-3 weeks after initiation of each treatment. Plasma concentrations of mianserin, the separate enantiomers S(+)- and R(-)-mianserin, desmethylmianserin, trazodone and m-CPP were measured by means of high-performance liquid chromatography. RESULTS: There was a significant correlation between steady-state plasma concentrations of trazodone and total mianserin (r = 0.59) or S(+)-mianserin (r = 0.57), but not R(-)-mianserin (r = 0.33). CONCLUSION: The present study thus suggests that the metabolic capacity of mianserin, especially the more active S(+)-enantiomer, and that of trazodone correlate to each other. This finding supports the previous suggestions that cytochrome P4502D6 is involved in the metabolism of mianserin and trazodone.

Antidepressive Agents, Second-Generation↗

Effect of carbamazepine on the single oral dose pharmacokinetics of alprazolam.

The effect of carbamazepine, an inducer of cytochrome P450 (CYP) 3A4, on the single oral dose pharmacokinetics of alprazolam was examined in a double-blind, randomized crossover study with two phases. Seven healthy male subjects took carbamazepine 300 mg/day or matched placebo orally for 10 days, and on the 8th day they took a single oral 0.8 mg dose of alprazolam. Blood samples were taken and psychomotor function was assessed by the Digit Symbol Substitution Test, Visual Analog Scale, and UKU Side Effect Rating Scale up to 48 h after alprazolam dosing. Carbamazepine significantly (p < .01 to .001) decreased the plasma alprazolam concentrations during the elimination phase. Carbamazepine significantly (p < .001) increased the apparent oral clearance (0.90 +/- 0.21 vs. 2.13 +/- 0.54 ml/min/kg) and shortened the elimination half-life (17.1 +/- 4.9 vs. 7.7 +/- 1.7 h), with no significant effect on the peak plasma concentration (11.7 +/- 1.5 vs. 13.0 +/- 3.5 ng/ml). The majority of psychomotor function parameters during the carbamazepine treatment were not significantly different from those during the placebo treatment, probably because of the sedative effect of carbamazepine itself. The present study suggests that carbamazepine decreases plasma concentration of alprazolam by inducing its metabolism. It also supports the previous studies, suggesting that alprazolam is metabolized predominantly by CYP3A4.

Adult↗

Inhibition by 1alpha,25-dihydroxyvitamin D3 of activin A-induced differentiation of murine erythroleukemic F5-5 cells.

1alpha,25-Dihydroxyvitamin D3 (1alpha,25-(OH)2D3) and other vitamin D3 (VD3) analogs enhanced the inhibitory effect of Activin A on murine erythroleukemia (MEL) cell proliferation and differentiation in a dose-dependent manner. 1alpha,25-(OH)2D3 inhibited differentiation more potently than proliferation by one order of magnitude. The VD3 analog study demonstrated either effect of VD3 on MEL cells via vitamin D receptor (VDR), as evidenced from the close relationship with the reported affinities for VDR. The effects of 1alpha,25-(OH)2D3 were preceded by the suppression of ornithine decarboxylase (ODC) activity, a rate-limiting enzyme in polyamine metabolism. Difluoromethylornithine (DFMO), an inhibitor of ODC, inhibited MEL cell proliferation, which was reversed by the simultaneous addition of putrescine, a product of ODC, but did not affect differentiation. 1alpha,25-(OH)2D3 inhibited cell differentiation during the phenotype-expression stage as reflected by the inhibition of beta-globin gene expression, while it inhibited proliferation in the commitment stage. Furthermore, it seems unlikely that the different effects of VD3 on proliferation and differentiation may be a result of upregulation of VDR or nongenomic action. In summary, it was suggested that 1alpha,25-(OH)2D3 inhibited Activin A-induced MEL cell proliferation and differentiation by distinct mechanisms and inhibited the proliferation by inhibiting ODC activity. We demonstrated the presence of 1alpha,25-(OH)2D3 action on leukemic cells at physiological concentration, which was distinct from the pharmacological effect of VD3 reported thus far.

Acetyltransferases↗

Osteopontin gene expression and protein synthesis in cultured rat mesangial cells.

It is controversial whether osteopontin (OP) is expressed in glomeruli and involved in glomerular diseases. We examined whether the OP expression is present at gene and protein levels in cultured rat mesangial cells (MCs). Northern blotting revealed a 1.7 kb OP-mRNA expression in MCs. Fetal calf serum (FCS) and TNF-alpha increased OP gene expression in serum-starved MCs by 2.7- and 1.8-fold over 24- and 12-hour periods, respectively. PDGF, IL-1beta, and TGF-beta had little effect on OP gene expression. Western blotting detected the OP protein expression (69 kDa). FCS and TNF-alpha increased OP protein expression in serum-starved MCs over 48- and 24-hour periods, respectively. The present study clearly demonstrated the expression of OP gene and protein in cultured rat MCs. Increased OP production under serum or TNF-alpha stimulation suggests that intraglomerular OP may contribute to the development of glomerular diseases.

Animals↗

Relationship between the CYP2D6 genotype and the steady-state plasma concentrations of trazodone and its active metabolite m-chlorophenylpiperazine.

The relationship between the cytochrome P450 (CYP) 2D6 genotype and the steady-state plasma concentrations (Css) of trazodone and its active metabolite m-chlorophenylpiperazine (mCPP) was studied in 54 depressed Japanese patients receiving trazodone 150 mg at bedtime. By use of allele-specific PCR analysis, the wild type allele, three mutated alleles causing absent enzyme activity (CYP2D6A, CYP2D6B and CYP2D6D) and one mutated allele causing decreased enzyme activity (CYPZD6 Ch) were identified. The means (ranges) of the Css of trazodone, corrected to the median body weight in 17 cases with no mutated allele, 27 cases with one mutated allele and 10 cases with two mutated alleles, were 556 (281-1115), 643 (302-1362) and 671 (234-1418) ng/ml, respectively, while the values of mCPP were 60 (35-121), 65 (33-99) and 58 (38-112) ng/ml, respectively. Neither the Css of trazodone (F = 0.80, P = 0.45) nor that of mCPP (F = 0.49, P = 0.61) significantly differed among the three groups. The present study thus suggests that the CYP2D6 genotype cannot predict the Css of these compounds.

Adult↗

Relationship between single oral dose pharmacokinetics of alprazolam and triazolam.

The relationship between the single oral dose pharmacokinetics of alprazolam and triazolam was studied in 10 healthy male volunteers. Each subject took single oral doses of alprazolam 0.8 mg and triazolam 0.5 mg with at least a 2 week interval between each dose. Blood samplings were performed up to 48 h after alprazolam dosing and up to 12 h after triazolam dosing. Plasma concentrations of both drugs were measured by high-performance liquid chromatography. The means +/- standard deviation of the peak plasma concentration, the total area under the plasma concentration-time curve and the elimination half-life of alprazolam were 11.3 +/- 3.1 ng/ml, 232.4 +/- 59.2 ng/h/ml and 16.5 +/- 4.6 h, respectively, and those of triazolam were 3.2 +/- 1.0 ng/ml, 11.8 +/- 5.2 ng/h/ml and 2.5 +/- 1.1 h, respectively. There was no significant correlation between the two drugs in any pharmacokinetic parameters (r = 0.35, 0.25 and 0.50). The present study thus suggests that the single oral dose pharmacokinetics of alprazolam and triazolam do not correlate well in individuals.

Adult↗

[Changes in symptom and thermography images after lumbar sympathetic ganglion block].

In 35 lower limbs of 22 patients with peripheral circulation disturbance, we evaluated the effects of lumbar sympathetic ganglion block (LSGB) by skin temperature difference (delta T) between the two measured by thermography before and after LSGB. We divided the patients into two groups; ASO group (n = 15): patients with chronic arterial occulusive diseases, and nonASO group (n = 7): those with peripheral circulation disturbance partly due to decrease nervous function. After LSGB, we recognized a significant increase in delta T and remission of ischemic symptoms in all the patients of nonASO group and those in early stage of ASO group. This suggests that in ASO group LSGB should be applied as soon as possible to obtain good outcome, and thermography is useful to evaluate the effects of LSGB in patients with peripheral circulation disturbance of the lower limbs.

Adult↗

Depletion of lysophosphatidic acid triggers a loss of oriented detyrosinated microtubules in motile fibroblasts.

We reported earlier that isolated plasma membranes trigger a number of responses comprising contact inhibition of motility, including loss of oriented detyrosinated microtubules (Glu MTs) from the lamella of motile fibroblasts. In this study, we show that the membranes trigger this loss of Glu MTs, not by binding to cells, but by removing an essential component from the medium necessary to maintain oriented Glu MTs. Preincubation of membranes with medium containing serum followed by removal of the membranes by sedimentation rendered the membrane-treated medium capable of triggering the loss of oriented Glu MTs. Membrane activity was inhibited by high concentrations of serum and removal of serum from medium triggered the loss of oriented Glu MTs similar to that triggered by membranes. These results suggest that the membranes trigger the loss of Glu MTs by inactivating factors in serum that are required for the maintenance of oriented Glu MTs. By fractionating serum, we have identified lysophosphatidic acid (LPA) as the principal serum factor that is responsible for supporting oriented Glu MTs. The activity of LPA to maintain oriented Glu MTs upon serum withdrawal was half maximal at 100 nM and no activity was observed with structurally related phospholipids. Serum LPA levels were sufficient to account for the ability of serum to support oriented Glu MTs. Enzymatic degradation of serum LPA strongly reduced the ability of serum to support oriented Glu MTs. That membranes degrade LPA was shown by the ability of membranes to block LPA's ability to maintain oriented Glu MTs, and by direct measurement of the loss of radiolabeled LPA after incubation with membranes in vitro. These results show that isolated plasma membranes trigger the loss of Glu MTs from the lamella of motile cells by degrading serum LPA. Coupled with earlier results showing that membranes trigger a number of contact inhibition responses, our data suggest a new model for contact inhibition of motility in which local degradation of LPA and/or interference with LPA-stimulated signalling pathways initiates a contact inhibition response in colliding cells.

Alkaline Phosphatase↗