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Biomedical subjects

Y Tamura

Publications and source records attributed to Y Tamura.

At least 253 records · Page 14Linked to original sources

Dual actions of nitric oxide in N-methyl-D-aspartate receptor-mediated neurotoxicity in cultured retinal neurons.

This study was performed to elucidate the role of nitric oxide (NO) in N-methyl-D-aspartate (NMDA) receptor-mediated glutamate neurotoxicity in the retina. The experiments were done with primary retinal cultures obtained from 17- to 19-day-old rat fetuses. The NOS activity measured by monitoring the conversion of [3H]arginine to [3H]citrulline was approximately 5 pmol/min/mg protein. A 10-min exposure of the cultured cells to glutamate (1 mM) or NMDA (1 mM) followed by a 1-h incubation in a normal medium consistently resulted in 60% cell death. The concomitant addition of an inhibitor of NOS, Nomega-nitro-L-arginine (300 microM), with glutamate or NMDA reduced cell death by 70%. A brief exposure of the cells to sodium nitroprusside (SNP, 500 microM) or S-nitrosocysteine (SNOC, 500 microM), NO-generating agents, caused 60% cell death. Depletion of NO by reduced hemoglobin prevented the cell death induced by either glutamate, NMDA, or NO generating agents. Fifty microM SNOC alone had no effect on the cell viability. However, pretreatment with 50 microM SNOC as well as simultaneous application of 50 microM SNOC with NMDA inhibited cell death induced by NMDA. These findings indicate that a low concentration of NO plays a protective role in glutamate neurotoxicity via closing the NMDA receptor gated ion channel. However, elevated concentrations of NO, interacting with oxygen radicals, become toxic and mediate glutamate-induced neurotoxicity in the cultured retinal neurons.

Animals↗

Compressibility and specific volume of actin decrease upon G to F transformation.

We measured the densities as well as the sound velocities in solutions of G-actin, F-actin and the reconstituted thin filament. Using the data obtained, we determined their partial specific volumes and partial specific adiabatic compressibilities. The objectives were to investigate the volume change of actin upon polymerization and to detect the conformational change associated with the ca2+-binding to the reconstituted thin filament. The partial specific volume and the partial specific adiabatic compressibility of G-actin were 0.749 cm3/g and 9.3 x 10(-12) cm2/dyne, respectively. The results suggest that G-actin is a rather soft protein compared with other globular proteins. The partial specific volumes of F-actin were in a range of 0.63 -0.66 cm3/g depending on the solvent conditions. The partial specific adiabatic compressibilities of F-actin were negative (-(7-13) x 10(-12) cm3/dyne). These data indicate that the amount of hydration may increase by several times upon polymerization assuming that the size of the cavity remains constant. We detected little difference between the partial specific adiabatic compressibility of the reconstituted thin filament in a Ca2+-bound state and that in a Ca2+-unbound state. This suggests that the Ca2+ binding affected not the subunit itself but the inter-subunit junction.

Actin Cytoskeleton↗

Methylphenylpyridium ion (MPP+) enhances glutamate-induced cytotoxicity against dopaminergic neurons in cultured rat mesencephalon.

Parkinson's disease is characterized by chronic progression of dopaminergic neuronal death, the mechanism of which is still unknown. Although methyl-4-phenylpyridium ion (MPP+) or MPP(+)-like substance, that can reduce mitochondrial complex I activity, is supposed to be a causative agent for Parkinson's disease, it is difficult to explain the chronic neuronal degeneration for years. It is important to identify other putative agents capable of causing chronic cell death besides MPP+. We hypothesized that treatment with small doses of MPP+, not causing severe damage to dopaminergic neurons but merely reducing the activity of mitochondrial complex I, can be a model of Parkinson's disease, and that glutamate can be a putative agent causing chronic neuronal degeneration. Using primary culture of the rat mesencephalon, we investigated glutamate-induced cytotoxicity against dopaminergic and non-dopaminergic neurons with or without the pretreatment with MPP+. Brief exposure to glutamate showed similar cytotoxicity against both dopaminergic and non-dopaminergic neurons. An N-methyl-D-aspartate receptor antagonist completely blocked the glutamate-induced cytotoxicity against both dopaminergic and non-dopaminergic neurons. In the dopaminergic neurons, MPP+ caused cytotoxicity that was not blocked by co-administration of MK-801. After pretreatment with small doses of MPP+, sub-lethal doses of glutamate caused severe cell damage restricted to dopaminergic neurons, suggesting that MPP+ potentiates the glutamate-induced cytotoxicity only against dopaminergic neurons. As glutamate is putatively capable of causing cytotoxicity against dopaminergic neurons, the present findings might be important in considering the pathogenesis of dopaminergic neuronal degeneration and a possible therapeutic application of glutamate receptor antagonists in Parkinson's disease.

1-Methyl-4-phenylpyridinium↗

Effect of aromatase inhibitor, TZA-2209, on the prostate of androstenedione-treated castrated dogs: changes in prostate volume and histopathological findings.

To determine whether the inhibition of estrogen-related effect in the prostate would be of value in the management of benign prostate hyperplasia (BPH), we examined the effect of TZA-2209, a new steroidal aromatase inhibitor, on the prostate in three of six castrated beagles that received 75 mg/week androstenedione. The three other animals served as controls. Sequential measurements of prostate volume by transrectal ultrasonography showed that the volume in TZA-treated dogs was significantly decreased compared with that in the controls. Prostatic aromatase activity was suppressed by TZA administration. Histopathologically, the stromal component was increased and glands were atrophied by androstenedione treatment. TZA administration increased the volume of the glands. Immunohistochemical detection of estramustine-binding protein showed more positive staining of the protein in the glands that were increased in volume by TZA administration. We concluded that the aromatase inhibitor effectively antagonized the estrogen-related stromal changes, however, this action was accompanied by stimulation of the glandular component due to the accumulation of androgens, the substrate of the aromatase. In the light of these findings, we suggest the simultaneous treatment for the androgen-glandular component route in the prostate is necessary for the effective management of BPH.

Androstenedione↗

A large compressibility change of protein induced by a single amino acid substitution.

The adiabatic compressibility (beta s) was determined, by means of the precise sound velocity and density measurements, for a series of single amino acid substituted mutant enzymes of Escherichia coli dihydrofolate reductase (DHFR) and aspartate aminotransferase (AspAT). Interestingly, the beta s values of both DHFR and AspAT were influenced markedly by the mutations at glycine-121 and valine-39, respectively, in which the magnitude of the change was proportional to the enzyme activity. This result demonstrates that the local change of the primary structure plays an important role in atomic packing and protein dynamics, which leads to the modified stability and enzymatic function. This is the first report on the compressibility of mutant proteins.

Aspartate Aminotransferases↗

Eicosapentaenoic acid suppressed the proliferation of vascular smooth muscle cells through modulation of various steps of growth signals.

Among fatty acids, only n-3 polyunsaturated fatty acids such as eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) inhibited the proliferation of vascular smooth muscle cells. DHA was less effective than EPA. To clarify the anti-proliferative effect of n-3 polyunsaturated fatty acid, we have explored the effect of EPA on the signal transduction pathway of platelet derived growth factor (PDGF). EPA inhibited PDGF binding on its receptor and activation of protein kinase C. EPA also suppressed c-fos mRNA expression, one of immediate early genes, through partly inhibiting c-fos transcription. These data revealed that EPA could inhibit vascular smooth muscle cell proliferation through modulating various steps of the signal transduction by PDGF.

Animals↗

Dislocation of the extensor tendons over the metacarpophalangeal joints.

Twenty-seven patients who had received treatment for dislocation of the extensor tendons over the metacarpophalangeal joint were reviewed. Sixteen patients had traumatic dislocations, seven had spontaneous dislocations, and four had congenital dislocations. The long finger was most frequently affected. The other fingers were affected almost equally. Displacement of the extensor tendon always occurred in the ulnar direction in the long and ring fingers. The index and little fingers exhibited different patterns of dislocation: two patients had ulnar dislocation of both the common and proprius tendons, and the remaining five patients had divergent dislocation of the two tendons. Nonsurgical treatment was undertaken in six cases. Surgery was performed in 21 cases. No recurrent dislocations were reported in any of the patients. Based on our experience, patients seen within 2 weeks of injury initially should be treated with splinting of the involved metacarpophalangeal joint. Chronic dislocations should be treated with a primary repair of the defect in the sagittal band. When the sagittal band is absent or deficient, the tendon must be stabilized using a loop procedure with a tendon slip.

Adolescent↗

High frequency of p53 gene mutations in primary breast cancers in Japanese women, a low-incidence population.

The pattern of acquired mutations in the p53 tumour-suppressor gene is potentially useful for determining factors contributing to carcinogenesis in diverse populations differing in incidence and/or mortality from the disease. We previously reported differences in mutational patterns of the p53 gene in primary breast cancers from Midwest US Caucasian, African-American and Austrian women. Herein, we report 16 mutations in 27 primary breast cancers from Japanese women from Hirosaki, a population with a low incidence of breast cancer. The frequency of 59.3% of p53 mutations is the highest reported in breast cancers from a particular ethnic group thus far. A relatively high number of mutations (7/16) were heterozygous in at least some tumour cell clusters. Intergroup comparisons of the mutational pattern between this population and several other US, European and Japanese populations do not show any statistically significant differences. There were recurrent mutations at two sites, codon 273 (R --> H; three mutations), a common hotspot of mutations in breast and other cancers, and codon 183 (S --> Stop; two mutations), a very rare location for p53 mutations. These mutations were shown to be independent and presumably not in the germ line. The highest frequency of p53 mutations raises the possibility that p53 mutagenesis is a predominant factor for breast cancer development in this low-risk Japanese group, whereas in other cohorts different mechanisms are likely to account for the higher proportion of breast cancer. Further studies are needed to confirm the present observations.

Adult↗

Characteristics of the pituitary gland in elderly subjects from magnetic resonance images: relationship to pituitary hormone secretion.

OBJECTIVE: Physiological changes in the pituitary gland with age have not been fully evaluated. The aim of this study was to clarify the morphological characteristics of the pituitary gland by magnetic resonance imaging(MRI) in elderly subjects and to relate them to pituitary hormone secretion. DESIGN AND PATIENTS: We investigated the pituitary MRI in 59 elderly (15 males, 44 females; median 82 years) and 41 young (13 males, 28 females; median 34 years) healthy subjects. RESULTS: Pituitary height, width and volume in the elderly subjects were less than those in the young subjects. Empty sella was more frequently observed in the elderly subjects (19%), especially women, than in the young ones. However, no relation was observed between the pituitary size or volume and basal levels of anterior pituitary hormones. Posterior pituitary bright signal(PBS) on T1-weighted MRI, which is thought to reflect its storage of the neurophysin-peptide complex, was not detected in 29% of the elderly subjects while it could be detected in all the young subjects. None of the elderly subjects showed clinical signs or symptoms of diabetes insipidus. Fasting plasma osmolarity and AVP in the elderly subjects were significantly higher than in the young subjects. Moreover, plasma AVP was significantly higher in the elderly subjects without the PBS than in those with the PBS. CONCLUSIONS: It is suggested that the excessive release of AVP from the posterior pituitary as a result of persistently raised plasma osmolality in the elderly subjects may lead to depletion of the neurosecretory granules in the posterior pituitary gland and may result in disappearance of the posterior pituitary bright signal on T1-weighted MRI. As these morphological changes might relate to the normal physiological occurrence of ageing, we should be cautious in evaluating MRI of the pituitary gland in elderly subjects.

Adrenocorticotropic Hormone↗

Antiperoxidative components in Thymus vulgaris.

A biphenyl compound, 3,4,3',4'-tetrahydroxy-5,5'-diisopropyl-2,2'-dimethylbiphenyl (1), and a flavonoid, eriodicytol (2), were isolated as antioxidative components from the leaves of Thymus vulgaris by bioassay-directed fractionation. These compounds inhibited superoxide anion production in the xanthine/xanthine oxidase system. Mitochondrial and microsomal lipid peroxidation induced by Fe(III)-ADP/NADH or Fe(III)-ADP/NADPH were also inhibited by these compounds. Compound 1 is an extremely potent antioxidant; complete inhibition was observed at 1 microM against both microsomal and mitochondrial peroxidation. Furthermore, compound 1 protected red cells against oxidative hemolysis. These phenolic compounds were shown to be effective to protect biological systems against various oxidative stresses.

Animals↗

One-stage repair of skin and tendon digital defects using the arterialized venous flap with palmaris longus tendon: an additional four cases.

The use of the arterialized venous flap with a palmaris longus tendon transfer has previously been reported. Further trials of this technique were conducted in four patients to reconstruct complicated finger injuries involving loss of skin and extensor tendon. In contrast to the results of previous cases, those of recent cases are more encouraging. This technique may be the procedure of choice in patients with digital skin defects, where there are associated extensor tendon defects with exposed bone.

Adult↗

Purification and characterization of arginine:mono-ADP-ribosylhydrolase from Euglena gracilis Z.

Arginine:mono-ADP-ribosylhydrolase was purified from a protozoan, Euglena gracilis Z, using [32P]mono-ADP-ribosylated actin as a substrate. The enzyme showed molecular mass of 33 kDa both in SDS PAGE and gel filtration, indicating it to be a monomeric protein. It was strongly inhibited by ADP and ADP-ribose and activated by Mg2+, DTT, and 2-mercaptoethanol. These results suggest that it recognizes the ADP-ribose moiety of the modified protein. Since the enzyme activity increased in S phase and late G0 phase in a synchronous dividing culture, the enzyme may function in the regulation of the cell cycle.

Actins↗

Experimental and clinical studies of eicosanoids in cerebrospinal fluid after spinal cord injury.

OBJECTIVE: In an attempt to elucidate a possible role for eicosanoids in the pathogenesis of spinal cord injury (SCI), we measured the concentration of leukotriene (LT) C4, thromboxane B2, and 6-keto-prostaglandin F1 alpha in cerebrospinal fluid in both a canine experimental model and 11 patients with SCIs. METHODS: The eicosanoid concentration in cerebrospinal fluid was measured by radioimmunoassay. Neurological severity was assessed according to the grading system of Frankel et al.. Control samples were obtained from 20 patients without SCIs. RESULTS: In the canine model, a significant increase in all eicosanoid levels was found on Days 1 to 7, which subsequently returned to the control levels. In the clinical study, the highest mean (+/- standard error of the mean) concentrations of LTC4, thromboxane B2, and 6-keto-prostaglandin F1 alpha in the acute stage of SCI were 95.9 +/- 10.7, 175.2 +/- 38.2, and 167.5 +/- 39.9 pg/ml, respectively. These concentrations were five to nine times higher than control levels. There was a good correlation between cerebrospinal fluid LTC4 levels and the neurological severity. The time-dependent change in LTC4 concentrations in seven patients with SCIs was similar to that observed in the canine model. In addition, the highest mean concentrations of the eicosanoids measured in patients with complete paralysis was also similar to those of the canine model. The eicosanoid concentrations in five patients with SCI were measured more than 6 months after the onset of injury. Although all eicosanoid levels had elevated in the acute stage of injury, they were not elevated and showed the same levels as the controls at the chronic stage. CONCLUSION: The findings suggest that enhanced arachidonate metabolism occurs in humans and support the evidence from animal experiments that emphasizes the importance of eicosanoids in the secondary processes mediating ischemia and edema.

6-Ketoprostaglandin F1 alpha↗

Adenosylcobalamin-dependent methylmalonyl-CoA mutase isozymes in the photosynthetic protozoon Euglena gracilis Z.

The photosynthetic protozoon Euglena gracilis Z contains adenosylcobalamin-dependent methylmalonyl-CoA mutase (MCM) involved in propionate metabolism. The specific activity of the Euglena mutase was about 6.5-fold greater in propionate-adapted Euglena cells than in photoautotrophic cells (control). Although the control cells contained only one mutase (apparent M(r) 72,000), the propionate-adapted cells contained two mutases with M(r) values of 72,000 and 17,000; both enzymes were located in the mitochondria. These results provide evidence that propionate-adapted Euglena contains two MCM isozymes. The induced mutase (M(r) 17,000) permits photoassimilation of propionate.

Animals↗

Inhibition of natural killer cell cytotoxicity by cell growth-related molecules.

Certain MHC class I molecules on target cells are known to inhibit the cytotoxic action of NK cells. By using monoclonal antibody (mAb) Cho-1, we have found inhibitory non-MHC class I cell surface molecules that are noncovalently-associated with 200 kDa and 40 kDa antigens. Poly I-C-induced rat NK cells were not cytotoxic to rat fetus-derived fibroblast WFB cell line. In contrast, NK cells were cytotoxic to H-ras oncogene-induced transformants of WFB, W14 and W31. FACS analysis indicated that mAb Cho-1 reacts with WFB, but not with W14 and W31 cells. Thus, this antigen may disappear concomitantly with cell growth and transformation. Cho-1 antigens were also expressed on other NK-resistant lines, such as mouse BALB3T3 fibroblast, EL-4 lymphoma and human fibroblast HEPM. However, they were not expressed on NK-sensitive mouse YAC-1 and H-ras transformant (Brash) of BALB3T3 cells. Furthermore, treatment of target cells with IFN-gamma clearly induced the cell surface expression of Cho-1 antigens, and conferred a resistance to NK cytolysis on target cells. These data strongly suggest that Cho-1 antigen expression may correlate with target cell susceptibility to NK cells. Indeed, treatment of NK-resistant WFB as well as HEPM cells with F(ab')2 fragments of mAb Cho-1 resulted in the acquisition of susceptibility to NK cytolysis. Cho-1 antigens may be novel molecules that regulate the NK resistance of cells.

Animals↗

Co-ordination of tongue movements and peri-oral muscle activities during nutritive sucking.

A feeding bottle equipped with micro-video-camera and pressure sensor was devised to show the inside of the mouth and record sucking pressure. Activities of the temporal (TM), masseter muscle (MM), orbicular muscle of the mouth (OM) and suprahyoid muscles (SM) of 25 healthy infants were examined. Tongue and jaw movements, EMGs and sucking waves were scanned simultaneously. The tongue movements included elevation of the medial part of the tongue in a backward-moving peristaltic wave; significant correlations were found between jaw motion, tongue movement and sucking pressure. The TM, MM and OM were most active when the sucking pressure became positive and the jaw was closing, the SM showing highest activity in the negative-pressure phase. These findings show that each suckling cycle is biphasic, with sucking pressure, peri-oral muscle activities and jaw motion all closely correlated.

Electromyography↗