PubMed Health⌕ Search

Biomedical subjects

Y Okuma

Publications and source records attributed to Y Okuma.

At least 37 records · Page 2Linked to original sources

Development of an assay method for activities of serine/threonine protein phosphatase type 2B (calcineurin) in crude extracts.

Despite the physiological importance of serine/threonine protein phosphatase type 2B (PP2B/calcineurin), an accurate assay method of PP2B in crude tissue extracts has not been established. By using recombinant protein phosphatase inhibitor-1 as a substrate and ascorbic acid as an antioxidant, we developed an improved assay method for PP2B activity in crude extracts from mouse tissues and investigated tissue distribution of its activity. Under the assay conditions, the PP2B activities were stable for at least 30 min with more than 100-fold higher sensitivity than those previously reported. The specific activities of PP2B were 22.3, 0.85, 2.9, 0.36, and 1.5 mU/mg protein in mouse brain, heart, spleen, liver, and testis, respectively, and furthermore in each region of the brain they were 26.1, 13.7, 42.8, 40.5, 15.1, and 8.6 mU/mg protein in cerebrum, midbrain plus interbrain, striatum, hippocampus, cerebellum, and brain stem, respectively. This is the first paper to demonstrate a close correlation between tissue distributions and content of PP2B. These results showed that the present assay method is extremely powerful for precise measurement of a wide range of PP2B activities including not only high PP2B activity in the brain but also low PP2B activities in other tissues.

Animals↗

Neurotransmitter contents in the retina of RCS rat.

BACKGROUND: Retinitis pigmentosa is a hereditary disease characterized by gradually developing degeneration of photoreceptors. The Royal College of Surgeons (RCS) rat is an experimental model of retinitis pigmentosa. However, there is a paucity of information concerning neurotransmitter contents in the retina of RCS rats. Thus, we determined the retinal contents of neurotransmitters in RCS rats at 4 and 23 weeks postnatally and in age-matched congenic control rats. METHODS: Dopamine (DA) and acetylcholine (ACh) were electrochemically measured by high-performance liquid chromatography (HPLC). Neuroactive amino acids, including gamma-aminobutyric acid (GABA) and taurine, were determined by means of an HPLC-precolumn derivatization method. RESULTS: Contents of DA, ACh, glutamate, aspartate and GABA in the retina of RCS rats 4 weeks postnatally were within normal ranges. At 23 weeks, the retinal contents of DA, glutamate and aspartate in the RCS rats were significantly lower than in the age-matched control rats, while the contents of ACh and GABA were unaffected even at this later stage. On the other hand, the retinal content of glycine in the RCS rats at 23 weeks was significantly higher than that in the age-matched control rats. It is interesting to note that the content of taurine in the RCS rats had already decreased at 4 weeks postnatally and the decrease was more marked at 23 weeks. CONCLUSION: The decrease in taurine content is probably the first sign of degeneration revealed by the retinal neurotransmitters of RCS rats.

Acetylcholine↗

Asymmetric cortico-cortical inhibition in patients with progressive limb-kinetic apraxia.

OBJECTIVES: To evaluate the activity of cortico-cortical (intracortical) inhibitory circuits within the motor cortex in patients with progressive asymmetric limb-kinetic apraxia. MATERIALS AND METHODS: We studied 4 patients with progressive limb-kinetic apraxia whose clinical diagnosis was corticobasal degeneration (CBD) and 7 control subjects. Cortico-cortical inhibition was measured using the technique of double pulse transcranial magnetic stimulation over the motor cortex. The effects of conditioning stimuli on the test responses were examined. RESULTS: In the normal control subjects, the conditioning magnetic stimulus suppressed motor evoked responses to the test stimulus at interstimulus intervals of 1 to 5 ms. This inhibition was significantly diminished on the affected side of the patients, but it was normal on the less affected side. CONCLUSION: Disruption of intracortical inhibitory circuits in the motor cortex may, at least in part, be related to severe limb clumsiness in the patients with progressive limb-kinetic apraxia.

Aged↗

Glial cell line-derived neurotrophic factor modulates ischemia-induced tyrosine hydroxylase expression in rat hippocampus.

Recently, we have reported that glial cell line-derived neurotrophic factor (GDNF), which supports the survival of dopaminergic neurons, prevents delayed neuronal death in the hippocampal CA1 region induced by transient forebrain ischemia. In the present study, we examined the role of GDNF in the expression of tyrosine hydroxylase (TH) mRNA induced by transient forebrain ischemia in rats. The expression of TH mRNA was increased in a time-dependent manner, with a significant increase in 24 h to 7 days, in the hippocampus after induction of transient forebrain ischemia, as determined using the reverse transcription and polymerase chain reaction method. Although it has been suggested that the increase of dopamine beta-hydroxylase mRNA expression correlates with the activation of noradrenergic neurons, no increase of dopamine beta-hydroxylase mRNA in the hippocampus was observed in our system. Western blot analysis revealed that TH protein, but not dopamine beta-hydroxylase protein, was produced in a time-dependent manner in the hippocampus during the ischemia. Interestingly, the induction level of TH mRNA was reduced by intrahippocampal microinjection of GDNF (1.0 microg), and this local GDNF treatment also reduced the increase of TH-like immunohistochemistry-positive terminals in the hippocampus. In contrast, local GDNF treatment of normal rats increased the TH mRNA expression at 6-12 h. These findings suggest that GDNF protects against neuronal degeneration including delayed neuronal death in the hippocampal CA1 region by modulating the expression levels of TH mRNA and protein.

Animals↗

Electrical stimulation of afferent vagus nerve induces IL-1beta expression in the brain and activates HPA axis.

Possible roles of the afferent vagus nerve in regulation of interleukin (IL)-1beta expression in the brain and hypothalamic-pituitary-adrenal (HPA) axis were examined in anesthetized rats. Levels of IL-1beta mRNA and protein in the brain were measured by comparative RT-PCR and ELISA. Direct electrical stimulation of the central end of the vagus nerve was performed continuously for 2 h. The afferent stimulation of the vagus nerve induced increases in the expression of mRNA and protein levels of IL-1beta in the hypothalamus and the hippocampus. Furthermore, expression of corticotropin-releasing factor mRNA was increased in the hypothalamus 2 h after vagal stimulation. Plasma levels of ACTH and corticosterone were also increased by this stimulation. The present results indicate that activation of the afferent vagus nerves itself can induce production of IL-1beta in the brain and activate the HPA axis. Therefore, the afferent vagus nerve may play an important role in transmitting peripheral signals to the brain in the infection and inflammation.

Adrenocorticotropic Hormone↗

Extracellular signal regulated protein kinase and c-jun N-terminal kinase are involved in ml muscarinic receptor-enhanced interleukin-2 production pathway in Jurkat cells.

We have previously shown that m1 and m2 muscarinic receptors were expressed on human peripheral blood lymphocytes (hPBL) and that pre-stimulation of these receptors enhanced phytohemagglutinin (PHA)-induced interleukin-2 (IL-2) production. Possible intracellular signal pathways of muscarinic receptors to regulate IL-2 production were examined in human T cell line Jurkat cells. Pretreatment of the cells with muscarinic receptor agonist, oxotremorine M (Oxo-M), enhanced IL-2 production induced by phorbol 12-myristate 13-acetate (PMA)/A23187, while Oxo-M by itself did not affect IL-2 production. The enhancement of IL-2 production by Oxo-M was inhibited by 4-diphenylacetoxy-N-methylpiperidine methiodide (4-DAMP) an ml/m3 receptor antagonist. When the cells were pretreated with AF-DX116, an m2 antagonist, the IL-2 production enhanced by Oxo-M was further stimulated. Reverse transcription-polymerase chain reaction (RT-PCR) revealed that ml and m2 muscarinic receptors exist on Jurkat cells. The stimulation of ml receptors enhanced the PMA/A23187-induced binding activity to AP-1 consensus sequences in IL-2 promoter and production of c-Fos and c-Jun protein. The stimulation of ml receptors did not modify the DNA binding of NF-kappaB, NF-AT or Oct-1. When ml receptors were stimulated, activities of mitogen-activated protein kinase (MAPK)/extracellular signal regulated protein kinase (ERK) and c-Jun N-terminal kinase (JNK) were increased, while p38 MAPK was not affected. Incubation with Oxo-M induced a transient increase in [Ca2+]i, which was abolished by pretreatment with 4-DAMP. Treatment with cyclosporin A markedly decreased the PMA/A23187-induced IL-2 promoter activity. This treatment, however, did not affect the enhancement of the promoter activity induced by ml receptor stimulation. The results suggest that transcription factor AP-1 is involved in the ml receptor-mediated enhancement of IL-2 transcript in Jurkat cells, and that pathways via MAPK/ERK and JNK, but not via p38 MAPK, are involved in the ml receptor-mediated enhancement of IL-2 promoter activity.

Blotting, Western↗

Depressive behavior and alterations in receptors for dopamine and 5-hydroxytryptamine in the brain of the senescence accelerated mouse (SAM)-P10.

The senescence accelerated mouse (SAM) is known as a murine model of aging. SAM consists of senescence accelerated-prone mouse (SAMP) and senescence accelerated-resistant mouse (SAMR). Previous studies reported that SAMP10 exhibits age-related learning impairments and behavioral depression in a tail suspension test after 7 months. We investigated the changes in emotional behavior in a forced swimming test and in receptors for dopamine and 5-hydroxytryptamine (5-HT) in SAMP10. SAMP10 at 8 months showed an increase of immobility in the test compared with SAMR1. Treatment with desipramine (25 mg/kg, i.p., 3 days) in SAMP10 caused a decrease in immobility. In the cortex from SAMP10, [3H]quinpirole binding to D2/D3 dopamine receptors increased significantly compared with control SAMR1. In the hippocampus from SAMP10, [3H]8-hydroxy DPAT binding to 5-HT1A receptor increased. In midbrains from SAMP10, bindings of [3H]quinpirole and [3H]8-hydroxy DPAT increased. [3H]SCH23390 binding to D1/D5 receptors and [3H]ketanserin binding to 5-HT2 receptor in brain regions examined in SAMP10 were similar to those in SAMR1. The present findings represent the first neurochemical evidence of an increase of D2/D3 and 5-HT1A receptors in SAMP10. SAMP10 may be a useful model of aging associated depressive behavior.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

[A senile case of acute necrotizing myopathy presenting prolonged severe muscle paralysis due to high dose glucocorticoid and muscle relaxant].

An 82-year old man was admitted with dyspnea, productive cough and wheezing. In addition to antibiotics (meropenem trihydrate 0.5 g/day), glucocorticoids (hydrocortisone 1.250 mg, methylpredonisolone 4.250 mg) were administered for the severe bronchospasms. Since his respiratory condition deteriorated, he underwent mechanical ventilation using a muscle relaxant (vecuronium bromide, total dose 776 mg) in combination with high dose glucocorticoid. As his pneumonia improved on the 10th hospital day, we started weaning him from the ventilator. However, we were unable to complete weaning from the ventilator because of prolonged quadriplegia and paralysis of the respiratory muscles. A few days later, myoglobinuria appeared. Electrophysiological examinations suggested the involvement of both neuromuscular junctions and muscles. Muscle biopsy showed rhabdomyolysis. Acute necrotizing myopathy was diagnosed due to high doses of glucocorticoid, muscle relaxant, or both. He required about 3 months to be weaned from the mechanical ventilation, and another 3 months to leave the hospital. Based on our experience, we should consider acute myopathy as an adverse effect of glucocorticoids, muscle relaxants or both in elderly patients who require mechanical ventilation.

Acute Disease↗

[Progressive limb-kinetic apraxia with myoclonus focal atrophy in the postcentral gyrus and the supplementary motor area].

We report a 70-year-old right handed man with a 5-year history of slowly progressive clumsiness of his left hand. A neurological examination disclosed mild rigidity and myoclonus in his left hand. He showed limb-kinetic apraxia, but neither ideational apraxia nor ideomotor apraxia was present. Aphasia and agnosia were also absent. He was thought to have the primary progressive limb-kinetic apraxia clinically. Brain CT and MRI revealed focal atrophy in the right postcentral gyrus and the supplementary motor area. A positron emission tomography (PET) study showed diffuse decrement of cerebral blood flow, predominantly in the right hemisphere. The decrease in the uptake of [18F]-Fluoro-deoxyglucose also revealed glucose hypo-metabolism, especially in the right frontal and parietal lobe. Striatal [11C]NMSP and [18F]FDOPA uptake were also reduced in an asymmetric pattern. These findings suggest that our patient is likely to have corticobasal degeneration. Transcranial magnetic stimulation using double pulse paradigm revealed a decrease in the level of cortico-cortical inhibition in the motor cortex on the affected side. Our results indicate increase in the excitability of motor cortical neurons in primary progressive limb-kinetic apraxia, likely due to a decreased excitability of cortico-cortical inhibitory mechanism as a result of focal degeneration of cortical neurons.

Aged↗

Possible involvement of cytochrome c release and sequential activation of caspases in ceramide-induced apoptosis in SK-N-MC cells.

Ceramide is characterized as a second messenger of apoptosis induced by various agents such as tumor necrosis factor (TNF-alpha), Fas ligand, hydrogen peroxide, heat shock and ionizing radiation. In this study, we investigated the mechanism of ceramide-induced apoptosis using a human neuroblastoma cell line, SK-N-MC. N-Acetyl-sphingosine (C2-ceramide), a cell-permeable ceramide analogue, was able to induce apoptosis in SK-N-MC cells as estimated by DNA fragmentation and chromatin condensation. C2-ceramide-induced DNA fragmentation was blocked by caspase inhibitor (Z-Asp-CH(2)-DCB). An increase in caspase-3 (CPP32)-like protease activity was evident during C2-ceramide-induced apoptosis, suggesting that caspases are involved in this apoptosis. Moreover, enzymatic cleavage of VDVAD-AFC and LEHD-AFC (specific substrates for caspase-2 and -9, respectively) was increased by treatment with C2-ceramide. To elucidate which types of caspase are activated in C2-ceramide-treated cells, we performed Western blot analysis using antibodies against each isoform. Both proforms of caspase-2 and -3 were decreased in response to C2-ceramide in a time-dependent manner. Mitochondrial cytochrome c is also time-dependently released into the cytosol in response to treatment with C2-ceramide. Addition of cytochrome c into the S-100 fractions prepared from SK-N-MC cells could activate caspase-2 in cell-free systems. These results suggest the possibility that cytochrome c released to the cytosol can activate caspases (caspase-9, -3, and -2) during C2-ceramide-induced apoptosis of SK-N-MC cells.

Apoptosis↗

Possible involvement of p38 MAP kinase in HSP70 expression induced by hypoxia in rat primary astrocytes.

The aim of this study was to elucidate the possible mechanism of HSP induction in response to hypoxia in rat primary astrocytes. Treatment with SB203580, a selective p38 MAP kinase (p38 MAPK) inhibitor, attenuated the increase in HSP70 in a concentration-dependent manner. p38 MAPK was activated in response to hypoxic treatment. These results suggest that p38 MAPK positively regulates hypoxia-induced HSP70 expression in astrocytes.

Animals↗

Neuroprotective effects of a dihydropyridine derivative, 1,4-dihydro-2,6-dimethyl-4-(3-nitrophenyl)-3,5-pyridinedicarbox ylic acid methyl 6-(5-phenyl-3-pyrazolyloxy)hexyl ester (CV-159), on rat ischemic brain injury.

CV-159, 1,4-dihydro-2,6-dimethyl-4-(3-nitrophenyl)-3,5-pyridinedicarboxylic++ + acid methyl 6-(5-phenyl-3-pyrazolyloxy)hexyl ester, is a dihydropyridine derivative that blocks the L-type Ca2+ channel and inhibits the calmodulin (CaM)-dependent pathway. In this study, we examined the effects of CV-159 on rat ischemic brain injury. CV-159 (5 and 10 mg/kg, p.o.) gave significant protection against delayed neuronal death in the hippocampal CA1 region after 15-min transient forebrain ischemia. In contrast, the Ca2+ antagonists nicardipine (1 and 10 mg/kg, p.o.) and nifedipine (1 mg/kg, i.p.) and the CaM antagonist N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7, 500 ng, i.c.v.) had no effect on this hippocampal neuronal death. CV-159 also diminished the size of the brain infarct after permanent middle cerebral artery (MCA) occlusion, although physiological variables, including regional cerebral blood flow, were not affected. The increase in the water content of the infarcted cortex induced by MCA occlusion was significantly reduced by CV-159. On the other hand, neither nicardipine nor nifedipine affected the brain infarct size, volume or increased water content induced by MCA occlusion, as previously reported (A. Sauter and M. Rudin, Am. J. Hypertens. 4 121S-127S, 1991). These findings indicate that Ca2+ antagonists, such as nicardipine and nifedipine, and W-7 have no effect on rat ischemic brain injury. The results suggest that CV-159 protects against ischemic brain injury. This might be mediated by both blocking the L-type Ca2+ channel and inhibiting CaM-dependent function via Ca2+/CaM binding at a different binding site from that of W-7 to CaM (H. Umekawa, K. Yamakawa, K. Nunoki, N. Taira, T. Tanaka, and H. Hidaka, Biochem. Pharmacol. 37 3377-3381, 1988).

Animals↗

Glial cell line-derived neurotrophic factor protects against delayed neuronal death after transient forebrain ischemia in rats.

Glial cell line-derived neurotrophic factor, a member of the transforming growth factor-beta superfamily, is a potent neurotrophic factor, which has a variety of biological activities that affect several types of neurons in both the central and peripheral nervous systems. In this study, we examined the effects of glial cell line-derived neurotrophic factor on delayed neuronal death in the hippocampal CA1 region of rats after transient forebrain ischemia. In the control rats pretreated with the vehicle, transient forebrain ischemia-induced delayed neuronal death in the hippocampal CA1 region was observed seven days after reperfusion. Pretreatment with glial cell line-derived neurotrophic factor (1.0 microg), which was directly microinjected into the right hippocampal CA1 region, gave significant protection against the delayed hippocampal neuronal death. On the contralateral side of the hippocampus, which was not injected with glial cell line-derived neurotrophic factor, delayed neuronal death similar to that seen in vehicle-treated control animals was observed. Intracerebroventricular glial cell line-derived neurotrophic factor (2.5 microg) injection also protected against delayed neuronal death. In addition, pretreatment with glial cell line-derived neurotrophic factor gave significant protection against apoptotic cell death induced by brain ischemia in the hippocampal CA1 region, as determined by in situ staining for DNA fragmentation. These findings suggest that glial cell line-derived neurotrophic factor plays an important role in delayed neuronal death induced by brain ischemia.

Animals↗

Effects of test H-reflex size on reciprocal inhibition in forearm muscles.

We studied effects of test H-reflex size on reciprocal Ia inhibition in forearm muscles. In both healthy control subjects and hemiplegic patients, the amount of Ia inhibition decreased as the test H-reflex size increased. It is possible that forearm reciprocal Ia inhibition in hemiplegics reported previously might be underestimated due to larger test H-reflexes used in the hemiplegics than in the controls.

Adult↗

[A case of recurrent Guillain-Barré syndrome with myocarditis].

We report a 35-year-old man who recovered from an initial episode of Guillain-Barré syndrome (GBS) and had acute relapse after two years of asymptomatic interval. He had an acute muscle weakness with areflexia in his extremities following an upper respiratory tract infection in 1993. He was treated with plasma exchange and recovered completely within two months. Two years later he had a relapse of muscle weakness in the same distribution as the initial episode following the symptoms and signs of congestive heart failure. Biopsy of the heart muscle disclosed mild infiltration of lymphocytes with edema and fibrosis: the diagnosis of healing myocarditis was made. He underwent plasma exchange after the heart failure resolved and fully recovered neurologically within three months. The association of GBS and myocarditis is extremely rare. Moreover, there have been no reports describing recurrent GBS with myocarditis. Since GBS with myocarditis sometimes takes a fatal outcome, careful observation and treatment are mandatory.

Adult↗

Reassessment of H-reflex recovery curve using the double stimulation procedure.

We conducted two types of experiments to assess the validity of the H-reflex recovery test, using double stimulation to test soleus motoneuron pool excitability in healthy and spastic subjects. One type dealt with the mechanical effect of the conditioning H reflex on the ankle joint; the other type with the effect of change in reflex size. The mechanical effect was tested both with the ankle joint fixed (FX) and free to move (FR). Differences between FX and FR conditions commenced with relaxation of soleus muscle contraction by the conditioning H reflex. In the FR condition, abrupt facilitation occurred, and changed to marked depression. We conclude that specific facilitation and inhibition in the FR condition were secondary effects of group Ia inflows caused by the ankle extensor muscle stretching on relaxation. In some spastic patients as well as in controls, facilitation due to the mechanical effect in the FR condition was observed despite the FX condition. The effects of systematic changes on soleus H-reflex size were investigated at conditioning-test intervals of 80 ms, so as to avoid mechanical effects. When conditioning and test reflexes were the same size, the amount of recovery increased as the H-reflex size increased. Comparison of the relation between amount of recovery and H-reflex size, expressed as a percentage of Mmax, showed no significant difference between the two groups. We speculate that the stronger recovery of spasticity mentioned in previous literature may have resulted from the fact that relatively greater H reflexes were tested in those studies. In conclusion, the present study indicates that double stimulation is not appropriate for assessing spinal motoneuron pool "excitability increase" in spasticity.

Electric Stimulation↗

Changes of callus diameter during axial loading and after fixator removal in leg lengthening.

We retrospectively reviewed nine tibial lengthenings in seven achondroplastic patients. The callotasis method was used, and a unilateral type lengthener, either the Dynamic Axial Fixator (Orthofix, Italy; eight legs) or the High Functional Fixator (Matsumoto Co., Japan; one leg), was applied. The distracted length averaged 14.6 (range 10-18) cm. The minimum diameter of the callus was measured using a ruler on anteroposterior and lateral radiographs. The callus diameter ratio (%) was calculated as the callus diameter divided by the original diaphysis diameter. For periods during axial loading and after removal of the fixator in each patient, a single regression line was drawn on the callus diameter ratio data using the least squares method, and the diameter change rate (%/day) was evaluated by inclination of this line. The diameter change rates during axial loading were negative in six legs, but those after fixator removal were positive in all legs, and the latter were significantly greater than the former. The diameter change rates after fixator removal on the anteroposterior radiographs were negatively correlated with the callus diameter ratio at the time of fixator removal (r = 0.84, P = 0.0008). Simple axial loading may not be a sufficient mechanial environment for restoration of the physiological shape, and it is important to be aware that we cannot expect the callus diameter to increase by this means alone.

Achondroplasia↗

Properties of calcium channels coupled to endogenous glutamate release from the vascularly perfused rat stomach in vitro.

We have demonstrated that both high-K+ and electrical stimulation of the vagus nerves release endogenous glutamate from the vascularly-perfused rat stomach in a calcium-dependent manner. In the present study, we examined properties of calcium channel subtypes mediating endogenous glutamate release from the stomach. Application of 50 mM KCl elicited a release of glutamate, and this release was abolished in calcium-free medium. The release of glutamate was significantly inhibited by both omega-agatoxin IVA, a P/Q-type calcium channel antagonist, and isradipine, an L type calcium channel antagonist. Omega-conotoxin GVIA, an N type calcium channel antagonist and flunarizine, a nonselective T-type calcium channel antagonist were without effect. In contrast to this case of glutamate, omega-conotoxin GVIA induced a marked inhibition in the release of gastric noradrenaline. The combined treatment with omega-agatoxin IVA plus isradipine produced a marked synergistic inhibition of the glutamate release. This inhibition was, however, much less than that by cadmium. The present results suggest that P/Q and L type calcium channels coexist to regulate the release of gastric glutamate. Furthermore, it is possible that unidentified calcium channels other than P/Q and L type channels are also involved in the release of glutamate in the stomach.

Animals↗