PubMed HealthSearch

Biomedical subjects

S Ueno

Publications and source records attributed to S Ueno.

At least 19 recordsLinked to original sources

The alkaline single cell gel electrophoresis assay with mouse multiple organs: results with 30 aromatic amines evaluated by the IARC and U.S. NTP.

The genotoxicity of 30 aromatic amines selected from IARC (International Agency for Research on Cancer) groups 1, 2A, 2B and 3 and from the U.S. NTP (National Toxicology Program) carcinogenicity database were evaluated using the alkaline single cell gel electrophoresis (SCG) (Comet) assay in mouse organs. We treated groups of four mice once orally at the maximum tolerated dose (MTD) and sampled stomach, colon, liver, kidney, bladder, lung, brain, and bone marrow 3, 8 and 24 h after treatment. For the 20 aromatic amines that are rodent carcinogens, the assay was positive in at least one organ, suggesting a high predictive ability for the assay. For most of the SCG-positive aromatic amines, the organs exhibiting increased levels of DNA damage were not necessarily the target organs for carcinogenicity. It was rare, in contrast, for the target organs not to show DNA damage. Organ-specific genotoxicity, therefore, is necessary but not sufficient for the prediction of organ-specific carcinogenicity. For the 10 non-carcinogenic aromatic amines (eight were Ames test-positive and two were Ames test-negative), the assay was negative in all organs studied. In the safety evaluation of chemicals, it is important to demonstrate that Ames test-positive agents are not genotoxic in vivo. Chemical carcinogens can be classified as genotoxic (Ames test-positive) and putative non-genotoxic (Ames test-negative) carcinogens. The alkaline SCG assay, which detects DNA lesions, is not suitable for identifying non-genotoxic carcinogens. The present SCG study revealed a high positive response ratio for rodent genotoxic carcinogens and a high negative response ratio for rodent genotoxic non-carcinogens. These results suggest that the alkaline SCG assay can be usefully used to evaluate the in vivo genotoxicity of chemicals in multiple organs, providing for a good assessment of potential carcinogenicity.

Amines

A novel missense mutant inactivates GTP cyclohydrolase I in dopa-responsive dystonia.

Dopa-responsive dystonia (DRD) due to mutant GTP cyclohydrolase I (GCH) shows the considerable heterogeneity of clinical phenotypic expression. To explain the clinical diversity, we studied a Japanese family with a novel mutant GCH (GCH-G90V), where an affected heterozygote had a higher mutant/normal mRNA ratio than an unaffected heterozygote. Coexpression experiments using the mutant with wild-type GCH showed that GCH-G90V inactivated the normal enzyme in a dose-dependent manner, suggesting that the dominant negative effect of a mutant GCH on the normal enzyme might be one of the molecular mechanisms for the clinical heterogeneity of DRD.

Adult

Mutant GTP cyclohydrolase I in autosomal dominant dystonia and recessive hyperphenylalaninemia.

Guanosine 5'-triphosphate cyclohydrolase I (GCH) mutants (H144P and T186K) associated with dominant dopa-responsive dystonia were enzymatically inactive and inhibited the normal enzyme, suggesting that GCH activity in a heterozygote was <50% of control. The M211I mutant associated with recessive hyperphenylalaninemia was slightly active and had no inhibitory effects, so GCH activity in a heterozygote would be <50% of normal; therefore hyperphenylalaninemia would be evident only in homozygotes.

Animals

Antibiotic-induced endotoxemia in a patient with endogenous endophthalmitis.

PURPOSE: The aim of the study is to describe a case of suspected endotoxin-induced uveitis associated with septic endogenous endophthalmitis followed by antibiotic-induced endotoxemia. METHODS: The human leukocyte antigen (HLA) typing of peripheral leukocytes was studied by lymphocytotoxicity technique. Histological and immunohistochemical studies of paraffin embedded specimen were conducted. RESULTS: Findings of HLA typing revealed positive reaction for B 51, Cw 3, DR 8, DR 11, DQ 3. The vitreous body of an eviscerated eye was occupied by the non-specific granulomatous tissue, composed of fibroblast, plasma cells, and Sudan black staining positive foamy cells, including melaniferous phagocytes, identified as CD 68 positive macrophage. CONCLUSION: It is suggested that antibiotic-induced endotoxemia of a patient with septic endogenous endophthalmitis produced endotoxin-induced uveitis under an upregulation of HLA and endotoxin activated macrophages may release cytokines, followed by fibrin formation and subsequent granuloma.

Aged

Cell type-specific ATP-activated responses in rat dorsal root ganglion neurons.

1. The aim of our study is to clarify the relationship between expression pattern of P2X receptors and the cell type of male adult rat (Wistar) dorsal root ganglion (DRG) neurons. We identified the nociceptive cells of acutely dissociated DRG neurons from adult rats type using capsaicin sensitivity. 2. Two types of ATP-activated currents, one with fast, the other with slow desensitization, were found under voltage-clamp conditions. In addition, cells with fast but not slow desensitization responded to capsaicin, indicating that there was a relationship between current kinetics and capsaicin-sensitivity. 3. Both types of neurons were responsive to ATP and alpha, beta methylene-ATP (alpha,betameATP). The concentration of alpha,(beta)meATP producing half-maximal activation (EC50) of neurons with fast desensitization was less (11 microM) than that of neurons with slow desensitization (63 microM), while the Hill coefficients were similar. Suramin and pyridoxal-phosphate-6-azophenyl-2',4'-disulphonic acid tetrasodium (PPADS) antagonized alpha,betameATP-induced currents in both types of neurons. 4. In situ hybridization revealed that small cells of the DRG predominantly expressed mRNAs of P2X3 and medium-sized cells expressed mRNAs of P2X2 and P2X3. In contrast, both of mRNAs were not detected in large cells of the DRG. 5. These results suggest that capsaicin-sensitive, small-sized DRG neurons expressed mainly the homomeric P2X3 subunit and that capsaicin-insensitive, medium-sized DRG neurons expressed the heteromultimeric receptor with P2X2 and P2X3.

Adenosine Triphosphate

Expression of the nicotinic acetylcholine receptor alpha4 subunit mRNA in the rat cerebellar cortex.

In order to compare the previous immunohistochemical and immunocytochemical data on the distribution of nicotinic acetylcholine receptor alpha4 subunit-like immunoreactivity with the expression of alpha4 mRNA in the rat cerebellar cortex, the present study determined the cellular distribution of alpha4 mRNA in the rat cerebellar cortex. Northern blot analysis revealed two alpha4 mRNA bands in the rat cerebellum and three in the cerebral cortex, hippocampus, hypothalamus and striatum. The total level of these transcripts was lower in the cerebellum than in the other four regions. The expression of alpha4 mRNA was high in Purkinje cells and granular cells, whereas low expression was detected in the molecular layer. These results suggest that the expression of alpha4 mRNA is closely related to the alpha4-like immunoreactivity in the molecular and Purkinje cell layers. In the granular layer, alpha4 mRNA was very highly and broadly expressed in comparison with the alpha4-like immunoreactivity.

Animals

The first component of polyphasic motor evoked potentials is resistant to suppression by paired transcranial magnetic stimulation in humans.

The suppressive effect of paired transcranial magnetic stimulation on the different components of motor evoked potentials (MEPs) from the left first dorsal interosseous muscle (FDI) was investigated in ten healthy human subjects. Conditioning stimuli were delivered via a round coil centered on the vertex, and test stimuli via a figure-eight coil over the right motor area. The threshold stimulus intensity of the minimally contracted FDI was determined with each coil. The stimulus intensities of conditioning and test stimuli were 80% and 130-140% of the threshold intensity, respectively. The coil current direction at the intersection of the figure-eight coil was medio-lateral. The coil position for test stimuli was adjusted to evoke discretely polyphasic MEPs in the contracted FDI. Conditioning stimuli were followed by test stimuli at intervals of 1-10, and 15 ms. When the interstimulus intervals were less than 5 ms, the second negative phase of MEPs was suppressed compared to that of the unconditioned responses, whereas the first phase was not suppressed. The present results imply that the first phase reflects direct corticospinal volleys, which are resistant to cortico-cortical inhibition.

Adult

Mutations of gamma-aminobutyric acid and glycine receptors change alcohol cutoff: evidence for an alcohol receptor?

Alcohols in the homologous series of n-alcohols increase in central nervous system depressant potency with increasing chain length until a "cutoff" is reached, after which further increases in molecular size no longer increase alcohol potency. A similar phenomenon has been observed in the regulation of ligand-gated ion channels by alcohols. Different ligand-gated ion channels exhibit radically different cutoff points, suggesting the existence of discrete alcohol binding pockets of variable size on these membrane proteins. The identification of amino acid residues that determine the alcohol cutoff may, therefore, provide information about the location of alcohol binding sites. Alcohol regulation of the glycine receptor is critically dependent on specific amino acid residues in transmembrane domains 2 and 3 of the alpha subunit. We now demonstrate that these residues in the glycine alpha1 and the gamma-aminobutyric acid rho1 receptors also control alcohol cutoff. By mutation of Ser-267 to Gln, it was possible to decrease the cutoff in the glycine alpha1 receptor, whereas mutation of Ile-307 and/or Trp-328 in the gamma-aminobutyric acid rho1 receptor to smaller residues increased the cutoff. These results support the existence of alcohol binding pockets in these membrane proteins and suggest that the amino acid residues present at these positions can control the size of the alcohol binding cavity.

Alcohols

Clinical and molecular genetic study in seven Japanese families with spinocerebellar ataxia type 6.

We report on seven Japanese families with spinocerebellar ataxia type 6 (SCA6) carrying small CAG repeat expansions in the calcium channel alpha1A subunit gene. The number of the expanded CAG repeat, ranged from 22 to 25, showed no intergenerational instability and had a significant inverse correlation with the age of onset. The clinical features of these patients were late onset progressive pure cerebellar ataxia with dysarthria and nystagmus, and are consistent with autosomal dominant cerebellar ataxia type III (ADCA type III). Magnetic resonance imaging scan of the brain demonstrated cerebellar atrophy with no evidence of brainstem involvement. We propose that clinical phenotype of SCA6 is compatible with ADCA type III and SCA6 is one of the most common types of ADCA in Japan.

Aged

Inhibition by imipramine of ATP-evoked responses in rat pheochromocytoma cells.

The effect of imipramine on the ATP-evoked release of dopamine was analyzed in parallel with its effects on the rise in the intracellular Ca2+ concentration ([Ca2+]i) and current induced by ATP in rat pheochromocytoma PC12 cells. Imipramine (10-300 microM) inhibited the ATP-evoked release of dopamine and rise in [Ca2+]i in a concentration-dependent fashion though the effect of imipramine on the release was slightly more obvious. Imipramine also inhibited the ATP-activated inward current at a similar concentration range. These results show a new pharmacological profile of imipramine, namely the inhibition of P2X2 receptors.

Adenosine Triphosphate

Adrenomedullin increases intracellular Ca2+ and inositol 1,4,5-trisphosphate in human oligodendroglial cell line KG-1C.

The effects of adrenomedullin (AM), a hypotensive peptide, were investigated in cultured human oligodendroglial cell line KG-1C. Human AM increased the intracellular Ca2+ concentration ([Ca2+]i) at concentrations greater than 10(-7) M. Human calcitonin gene-related peptide (CGRP), a peptide structurally related to AM, also increased [Ca2+]i with a potency similar to that of AM. AM increased [Ca2+]i in the absence of extracellular Ca2+. Further, AM increased inositol 1,4,5-trisphosphate (Ins(1,4,5)P3) level in a concentration-dependent manner similar to that of AM-induced [Ca2+]i, suggesting that AM-induced elevation of [Ca2+]i is due to Ca2+ release from Ins(1,4,5)P3-sensitive stores. AM (10(-9) to 10(-6) M) increased cAMP in a concentration-dependent manner. Forskolin also increased cAMP, but did not mimic the [Ca2+]i-raising effect of AM. These findings suggest that functional AM receptors are present in oligodendroglial KG-1C cells and that AM increases [Ca2+]i through a mechanism independent of cAMP.

Adrenomedullin

Stimulatory effect of lymphocyte-derived factor on catecholamine efflux from cultured bovine adrenal medullary cells.

The effects of lymphocytes and their conditioned medium on catecholamine efflux and uptake were examined in cultured bovine adrenal medullary cells. Co-culture of adrenal medullary cells with lymphocytes for 3 days caused an increase in appearance of catecholamines in the culture medium. Treatment of adrenal medullary cells with a conditioned medium prepared from lymphocytes also enhanced the appearance of catecholamines in culture medium in time- (8-48 h) and concentration-dependent manners. Heat treatment of the conditioned medium at 60 and 100 degrees C for 10 min reduced its stimulatory effect to 59 and 20% of control, respectively. After gel filtration on a Sephadex G-25 column or dialysis (<8 kDa molecular mass cutoff), the stimulatory activity of the conditioned medium was found in a high molecular fraction. The conditioned medium had little effect on the activity of lactate dehydrogenase in the medium of cultured adrenal medullary cells and on desipramine-sensitive [3H]norepinephrine uptake by the cells. These findings suggest that lymphocytes release a heat-sensitive factor(s) (molecular mass of more than 8 kDa) which increases efflux of catecholamines from cultured adrenal medullary cells.

Adrenal Medulla

Organ-specific genotoxicity of the potent rodent bladder carcinogens o-anisidine and p-cresidine.

We used a modification of the alkaline single-cell gel electrophoresis (SCG) (Comet) assay to evaluate the in vivo genotoxicity of two potent rodent bladder carcinogens, o-anisidine and p-cresidine, in mouse liver, lung, kidney, brain, and bone marrow, and in the mucosa of stomach, colon, and bladder. Male CD-1 mice (8 weeks old) were sacrificed 3 and 24 h after oral administration of o-anisidine at 690 mg/kg or p-cresidine at 595 mg/kg. Both chemicals were dissolved in olive oil. Both chemicals yielded statistically significant DNA damage in bladder mucosa 3 and 24 h after treatment. o-Anisidine yielded DNA damage in the colon at 3 h, but not at 24 h. No significant effects were observed in any other organs. Our results suggest the importance of the urinary bladder as a sentinel organ for evaluating chemical genotoxicity in rodents.

Aniline Compounds

Dominant negative effect of GTP cyclohydrolase I mutations in dopa-responsive hereditary progressive dystonia.

Hereditary progressive dystonia (HPD) is caused by the mutant gene encoding GTP cyclohydrolase I (GCH). The clinical presentation of this disease varies considerably, and many cases appear to be sporadic. We have previously proposed that this clinical variation may be due to differential expression of the mutant and normal GCH mRNA, presumably at the protein level. To provide support for this proposal, we studied a new Japanese family with HPD, in which 2 members were heterozygous for an exon-skipping mutation. This mutation produced truncated GCH, which shared 180-amino acid residues at the amino terminus of the normal enzyme (GCH180). An affected heterozygote had a higher mutant/normal mRNA ratio than an unaffected heterozygote, consistent with our previous finding in the HPD family with GCH114. A further study, using coexpression of the mutant with wild-type GCH in COS-7 cells, showed that three mutant GCHs inactivated the normal enzyme. GCH114 was most effective in enzyme inactivation, which was followed by GCH180 and a normally occurring mutant GCH209. These results suggested that the dominant negative effect of a mutant GCH on the normal enzyme might be one of the molecular mechanisms determining the heterogeneity of clinical phenotypes of HPD.

Adolescent

Efficient gene transfer into cardiac myocytes using adeno-associated virus (AAV) vectors.

Adeno-associated virus (AAV) vectors, derived from a non-pathogenic parvovirus, are considered to be an appropriate gene transfer vehicle for both dividing and non-dividing cells. In the present study, we investigated whether the rat heart could be efficiently transduced with AAV vectors. Rat cardiac myocytes (CM) were infected with AAV-lacZ vector containing beta-galactosidase (beta-gal) gene in vitro, and the expression of beta-gal in CM was evaluated by X-gal staining and beta-gal ELISA. With increasing multiplicities of infection (MOI), more than 60% of CM were stained positively with X-gal, and the beta-gal expression increased to 31.1 +/- 4.6 ng/mg protein in a MOI-dependent manner (MOI: 10(4) to 10(6) particles/cell). The beta-gal expression was also increased in an incubation period-dependent manner (1-24 h). beta-gal expression was maximal at day 3 and then gradually decreased with time. However, beta-gal expression at day 14 was almost the same level as that at day 1 (45.5 +/- 5.9 v 55.2 +/- 6.2 ng/mg protein). Excised rat right ventricular papillary muscles were also infected with AAV-lacZ ex vivo. When the beta-gal expression was evaluated by X-gal staining, more than 80% of CM in the papillary muscles were stained positively, indicating efficient gene transfer into CM using AAV vectors. These findings suggest that AAV vectors are promising for cardiac gene therapy.

Animals

Postoperative management following massive hepatectomy in a patient with Dubin-Johnson syndrome: report of a case.

We report herein the case of a 46-year-old man with Dubin-Johnson syndrome (DJS) who was referred to our hospital to undergo a right hepatic lobectomy for hepatocellular carcinoma. His complicated postoperative conjugated hyperbilirubinemia was successfully treated by hemopurification based on the increased level of serum hepatocyte growth factor (HGF). It is considered that hemopurification based on the early postoperative HGF levels has beneficial effects for patients with DJS; however, the specific role of hemopurification in the conjugated hyperbilirubinemia that develops postoperatively in these patients has not been determined.

Carcinoma, Hepatocellular

Biological effects of static magnetic fields on the microcirculatory blood flow in vivo: a preliminary report.

There have been few studies of the effect of static magnetic fields on microcirculatory haemodynamics in vivo. The rat skinfold transparent chamber technique was used, which provides an excellent means of observing and quantifying direct in vivo microvascular haemodynamic responses to static magnetic fields up to 8 T. An intravital videomicroscope was used to measure the changes in blood flow before and after exposure to a magnetic field for 20 min in a horizontal type superconducting magnet with a bore 100 mm in diameter and 700 mm long. After exposure, microcirculatory blood flow showed an initial increase for about 5 min followed by a gradual decrease and a return to the control value. It is hypothesised that these changes represent rebound hyperaemia following reduced blood flow during exposure.

Animals