Search PubMed⌕ Search

Biomedical subjects

K Shimazu

Publications and source records attributed to K Shimazu.

At least 55 records · Page 3Linked to original sources

[A case of expanding pulmonary aspergilloma].

A 60-year-old female had old pulmonary tuberculosis. Chest radiographs taken in 1980 revealed a small cavitary lesion due to old lung tuberculosis in the right upper lung fields. Chest radiographs taken in 1984 revealed a fungus ball in the cavity and the adjacent pleura was thickened. Chest radiographs taken in 1994, revealed that the margin of the fungus ball had become ill-defined, and infiltrative shadows surrounded the cavity. A test for aspergillus antigen was positive and toxicolor test was elevated in serum. Chest radiographs taken in 1996 revealed that the fungus ball had enlarged substantially. We consider this case to be a semi-invasive pulmonary aspergillosis which spread by direct invasion from an aspergilloma to the surrounding cavitary wall.

Aspergillosis↗

Brain nitrite production during global ischemia and reperfusion: an in vivo microdialysis study.

Nitric oxide (NO) is considered to be associated with the pathogenesis of cerebral ischemic injury. In the present study, NO production was continuously monitored employing in vivo microdialysis. A microdialysis probe was inserted into the stratum. Levels of the major NO metabolite, NO-2, in the dialysate were determined using the Griess reaction. Rats were subjected to global cerebral ischemia produced by occlusion of both common carotid arteries together with induced hypotension. Cerebral ischemia induced a decrease in NO production, which was interrupted by a transient increase in NO synthesis. This increment was abolished in the presence of a NO synthase inhibitor, NG-nitro-L-arginine methyl ester (L-NAME), suggesting that NO synthase activity is transiently activated during ischemia. Following reperfusion, NO synthesis was enhanced. To our knowledge, this is the first report concerning the continuous temporal profile of NO production during global cerebral ischemia and reperfusion.

Animals↗

Nitric oxide regulates NMDA-induced dopamine release in rat striatum.

We investigated the effect of nitric oxide (NO) on N-methyl-D-aspartate (NMDA)-induced changes in levels of dopamine (DA) and its metabolite in the striatum using in vivo microdialysis. Local administration of 1mM NMDA into the striatum significantly augmented DA release in the striatum. Simultaneous administration of -5mM N(G)-nitro-L-arginine methyl ester (-NAME), a NO synthase inhibitor, into the striatum significantly potentiated NMDA-induced DA release. This effect of L-NAME was completely reversed in the presence of 50mM L-arginine (L-Arg). Administration of 1 mM NMDA significantly decreased the levels of dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA). This effect of NMDA was not affected by concurrent administration of L-NAME. This study provides in vivo evidence for the involvement of NO in NMDA-induced DA release.

3,4-Dihydroxyphenylacetic Acid↗

Correlation of in vivo nitric oxide and cGMP with glutamate/glutamine metabolism in the rat striatum.

We have examined how the suppression of endogenous production of nitric oxide (NO) in the striatal tissue affects release of glutamate (GLU) and glutamine (GLN) in pentobarbital-anesthetized male Sprague-Dawley rats. For the quantitative measurement of tissue NO production and amino acid release, an in vivo assay system for extracellular nitrite (NO2-) and amino acids was employed using an in vivo microdialysis technique. An NO synthase inhibitor (NG-nitro-L-arginine methyl ester, L-NAME) in concentrations ranging between 4-40 mM was perfused into the rat striatum using the assay system. Tissue NO production was found to be inversely proportional to the L-NAME concentration. L-NAME likewise decreased striatal levels of GLU and GLN. Furthermore, tissue NO production showed a positive correlation with GLU (R = 0.62, P < 0.02) and GLN (R = 0.86, P < 0.001) concentrations. Exogenous application of NO and cGMP by intrastriatal perfusion with 0.1-2.5 mM hydroxylamine and 0.4-10 mM 8-bromo-cGMP, respectively, increased striatal GLU release in a dose-related manner. Hydroxylamine reduced GLN release, and 8-bromo-cGMP showed a tendency to decrease GLN. In conclusion, striatal GLU/GLN metabolism is a function of the tissue concentration of NO. Normal endogenous concentration of NO causes GLU to be released at a consistent basal level, and enhanced tissue NO production facilitates GLU release via pathways including cGMP formation. We hypothesize that NO may suppress GLN formation by astrocytes.

Animals↗

[Idiopathic segmental anhidrosis].

We described two cases of idiopathic segmental anhidrosis. Case 1 was a 47-year-old man, who noticed anhidrosis on the right side of face and chest during body heating. Case 2 was a 54-year-old woman, who complained of anhidrosis on the left side of face and upper chest during exercise. Both cases had neither somatic neurological deficit nor autonomic failure except for anhidrosis pupil size and deep tendon reflexes were normal. Reflex sweating to pilocarpine was exaggerated in the anhidrotic areas in both cases, suggesting lesions in the preganglionic sudomotor nerves. Abnormal laboratory finding was elevated serum rheumatoid factor level in only case 2. Segmental anhidrosis was static for 1.5 year and one year, respectively. The previous literature contains similar four cases. Idiopathic segmental anhidrosis may be an abortive form of Ross' syndrome (tonic pupil, hyporeflexia and segmental anhidrosis).

Female↗

[A case of sympathotonic orthostatic hypotension following herpes simplex encephalitis].

The etiology of sympathotonic orthostatic hypotension (SOH) is still unknown. We reported a 50-year-old male case of SOH associated with herpes simplex encephalitis. Eight days before admission to our hospital, he noticed fever, which was followed by intractable hiccup. He was admitted to a local hospital, where nuchal rigidity and mononuclear CSF pleocytosis were noted. On the 9th hospital day, he suddenly developed respiratory arrest, and his consciousness state deteriorated to coma. He was transferred to our hospital with artificial ventilation on the same day. The second CSF examination revealed pleocytosis and positive herpes-simplex-virus antibody. CAT scan showed diffuse high density areas in the bilateral temporal lobes. Intensive anti-herpetic therapy was started. On the 14th hospital day, spontaneous respiration came back and consciousness state was improved from coma to stupor. He gradually recovered to alert state and became ambulatory by the 30th hospital day. Seven weeks after the onset of his illness, he noticed orthostatic dizziness for the first time during his rehabilitation exercises. Blood pressure was 116/78mmHg at supine position and 82/62mmHg at standing position, and the heart rate was 83bpm, and 141bpm, respectively. Plasma noradrenaline concentration was 0.09 ng/ml (within normal range) at supine position, but increased to 0.29ng/ml upon standing. Catecholamine infusion tests revealed hyposensitivity in beta 2-receptors; decrease in blood pressure in response to isoprenaline was blunted, while increase of blood pressure to noradrenaline was not impaired. Nerve conduction studies and sweating tests were normal. When he was discharged from our hospital on the 87th hospital day, he still had orthostatic symptoms. His complete recovery took full one year. Some authors claimed that SOH is an abortive form of acute autonomic neuropathy, while others postulated that it was due to unbalanced cardiovascular alpha- and beta-adrenoceptor functions. SOH of the present case seems to be caused by the central nervous lesions; especially, the brain stem involvement due to herpes simplex encephalitis may well be causing SOH.

Autonomic Nervous System↗

Striate cortical contribution to the transcorneal electrically evoked response of the visual system.

Analyses of current-source-density (CSD) and multiple unit activity (MUA) in area 17 of the cat were performed to determine the sources of the cortical transcorneal electrically evoked response. Cortical field potential, CSD and MUA profiles were obtained with multi-electrodes. CSD findings include: current sinks (inward cell membrane current) within 20 ms latency, in layers 4 and 6 of the striate cortex; current sinks corresponding to N3 (negative component of the EER; latency, 35 ms) in layer 4 and lower layer 3 with current sources (outward cell membrane current) for N3 in the supragranular layers; current sinks with latency over 40 ms in the supragranular layers. In the layers 4 and 6, simultaneous MUA was seen. When the stimulus frequency was increased or with dual stimulation, the N3 current sinks were decreased. This indicates that N1 (latency, 9 ms) and N2 (latency, 20 ms) reflect near-field potentials in layers 4 and 6, generated by geniculocortical afferents, and that N3 is a post- and polysynaptic component. It is also suggested that dipoles composed of cell bodies and the apical dendrites of pyramidal cells of layer 3, generated by satellite cells in layer 4, play a major role in generating N3.

Animals↗

[A study of skin surface temperature in patients with unilateral cerebral infarction--with special reference to central autonomic regulation of skin vasomotor response].

Skin surface temperature was examined using thermography in 26 patients with unilateral ischemic cerebrovascular disease (5 with pontine lesions, 5 with lateral medullary lesions and 16 with hemispheric lesions). Three of the 5 patients with pontine lesions and 4 of the 5 with medullary lesions showed hemihyperthermia on the ipsilateral body surface. However, the face showed no impairment with pontine lesions, whereas it appeared as a hyperthermic area with medullary lesions. Ten of 11 patients with lesions of the internal capsule or putamen had hypothermia on the contralateral body surface except for the face. All the patients with thalamic lesions showed no skin temperature asymmetry. These observations suggest the following: (1) sympathetic skin vasomotor fibers descend through the ipsilateral side of the brainstem; (2) at the level of the medulla, skin vasomotor fibers innervating the body trunk and limbs and those innervating the face descend contiguously, while at the level of the pons the two fiber groups descend separately; (3) hypothermia in patients with cerebral infarction could be explained by interruption of the inhibitory neural pathway that controls vasomotor function on the contralateral side of the body; (4) these inhibitory pathways descend in the vicinity of the pyramidal tract.

Adult↗

[Cardiovascular alpha-, beta 1- and beta 2-adrenoceptor functions in neurogenic orthostatic hypotension].

It has been believed that patients with neurogenic orthostatic hypotension (NOH) usually develop denervation supersensitivity of cardiovascular alpha-, beta 1- and beta 2-adrenoceptors, because the majority studies have shown augmented cardiovascular responses to intravenously given noradrenaline (NA) or isoprenaline (IP) in these patients. This view, however, leaves room for discussion. First, drugs were administered by means of drip infusion method in most of the previous studies. Since this method necessarily provokes baroreflex, which is buffering fluctuations in blood pressure and heart rate, the results may reflect diminished baroreflex rather than denervation supersensitivity. Second, adrenoceptor functions are modulated by multiple factors, such as ageing, thyroid hormone and chronic inflammation. It is, thus, inappropriate to explain the whole picture of functional change in adrenoceptors by the denervation mechanism only. In order to look over the cardiovascular adrenoceptor functions in NOH, we performed bolus infusion tests of NA and IP on the patients. The subjects comprised 7 cases of NOH with pre-ganglionic sympathetic deficit (NOH-I), 6 cases with post-ganglionic deficit (NOH-II) and 15 healthy controls. NOH-I group included 6 patients with multiple system atrophy and one with Parkinson disease, while NOH-II group consisted of 3 patients with idiopathic orthostatic hypotension (pure autonomic failure) and 3 with diabetic autonomic neuropathy. Both NA and IP infusion tests were carried out under the continuous measurement of blood pressure and heart rate. In NA test, different bolus doses (0.01, 0.02, 0.05 and 0.1 microgram/kg) of NA were intravenously administered, and a degree of subsequent rise in mean blood pressure was used as an index for alpha-adrenoceptor function. IP test was performed in the same manner, and an increase in heart rate and a fall in mean blood pressure in response to the drug (0.001, 0.002 and 0.005 microgram/kg) were measured as indices for beta 1- and beta 2-functions, respectively. A rise in blood pressure following the administration of any dose of NA did not statistically differ among three groups. An increase in heart rate in IP test was generally lower in both NOH groups, and a significant difference was obtained between NOH-I and control when a given dose was 0.005 microgram/kg) (p < 0.02). A fall in blood pressure in IP test was significantly greater in NOH-I compared to control when doses were 0.002 and 0.005 microgram/kg (p < 0.02 and 0.01, respectively). It was also greater in NOH-II than in control when a dose was 0.002 microgram/kg (p < 0.01). In disagreement with most of the previous studies, the present results suggest that alpha-adrenoceptor function is hardly altered, beta 1-function is suppressed, and beta 2-function is augmented in NOH.

Adult↗

A novel in vivo assay system for consecutive measurement of brain nitric oxide production combined with the microdialysis technique.

A novel spectrophotometric nitrite (NO2-)/nitrate (NO3-) assay system for a small quantity (5 microliter) of dialysate sample obtained by in vivo brain microdialysis was developed based on the diazotization reaction. The system has the advantage of in vivo consecutive measurement, high precision, good reproducibility, technical simplicity, relatively short resolution time (2.5-20 min), and wide availability. The NO3- level in the rat striatum was found to be 3 times higher than the NO2- level. A nitric oxide (NO) synthase inhibitor, NG-nitro-L-arginine methyl ester, reduced striatal NO2-/citrulline formation in a dose-related manner and increased arginine, indicating that the tissue NO2- level detected by this assay system adequately reflects the striatal NO synthase activity.

Amino Acid Oxidoreductases↗

Modification of striatal arginine and citrulline metabolism by nitric oxide synthase inhibitors.

The effects of NG-substituted L-arginine (ARG) analogues on striatal ARG and citrulline (CIT) levels were investigated using in vivo microdialysis technique. A microdialysis probe was implanted into the striatum of anaesthesized Sprague-Dawley rats. Direct intrastriatal perfusion with 1 mM NG-nitro-L-arginine methyl ester (n = 8) increased striatal ARG release and decreased CIT release, suggesting suppressed NO synthase activity in the tissue. On the other hand, 1 mM NG-monomethyl-L-arginine (L-NMMA) (n = 6) evoked a persistent increase in both ARG and CIT. Considering that 4-320 microM L-ARG (n = 8) failed to increase CIT formation, CIT seems to be synthesized in the striatal tissue from L-NMMA by the enzyme that has been demonstrated in the kidney and aortic endothelium (NG,NG-dimethylarginine dimethyl-aminohydrolase).

Amino Acid Oxidoreductases↗

Presynaptic glutamate receptors facilitate release of norepinephrine and 5-hydroxytryptamine as well as dopamine in the normal and ischemic striatum.

We investigated the effects of selective glutamate (Glu) agonists on the release of monoamine neurotransmitters and their implication in the enhanced monoamine release in cerebral ischemia. In the striatum of anesthetized Sprague-Dawley rats, in vivo microdialysis was performed and the release of excitatory amino acids (Glu and aspartate (Asp)) and monoamines (dopamine (DA), norepinephrine (NE) and 5-hydroxytryptamine (5-HT)) was measured by high-performance liquid chromatography with an electrochemical detector. (1) Forebrain ischemia by 4-vessel occlusion generated significant correlations between the Glu and Asp levels and the DA, NE and 5-HT levels (r = 0.922-0.967, P < 0.01, n = 6). (2) L-Glu and its selective agonists (N-methyl-D-aspartate (NMDA), alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) and kainate (KA)) evoked a simultaneous release of striatal DA, NE and 5-HT in a dose-dependent manner (P < 0.01, ANOVA, n = 8). The maximal monoamine release evoked by the Glu agonists showed different magnitudes in the order of DA >> NE > 5-HT (118-, 16- and 9-fold from the baseline levels by 62.5 mM L-Glu, respectively). Each Glu agonist exerted a different magnitude of transmitter release and the order of agonist efficacy was different among NE, 5-HT and DA release: AMPA = KA > L-Glu = NMDA for DA release, AMPA > L-Glu = NMDA = KA for NE release, and L-Glu = NMDA = KA = AMPA for 5-HT release.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Presynaptic ionotropic glutamate receptors modulate in vivo release and metabolism of striatal dopamine, noradrenaline, and 5-hydroxytryptamine: involvement of both NMDA and AMPA/kainate subtypes.

In order to explore further the presynaptic modulation of monoamine release by glutamatergic nerve fibers, we investigated the effects of selective agonists for ionotropic glutamate (GLU) receptors on striatal release of dopamine (DA), noradrenaline (NA) and 5-hydroxytryptamine (5-HT). In the striatum of anesthetized Sprague-Dawley rats, in vivo microdialysis was performed to measure the release of monoamines and metabolities, and also to administer GLU agonists locally in the tissue. L-GLU and its selective agonists (N-methyl-D-aspartate (NMDA), alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) and kainate (KA)) evoked simultaneous release of striatal DA, NA and 5-HT in a dose-dependent manner. Pretreatment with MK-801 (5 mg/kg i.p.), a noncompetitive NMDA receptor antagonist, selectively suppressed NMDA-evoked monoamine release. The rank order of GLU agonist efficacy in releasing monoamines was different among DA, NA, and 5-HTergic terminals: AMPA = KA > NMDA for DA release, AMPA > NMDA = KA for NA release, and NMDA = AMPA = KA for 5-HT release. In conclusion, presynaptic ionotropic GLU receptors exist extensively on monoaminergic terminals including not only catecholaminergic (DA and NA) but also indoleaminergic (5-HT) terminals in the rat striatum. Their subtypes include both NMDA subtype and AMPA/KA subtype, and show a differential distribution among these three monoaminergic terminals and a differential contribution to facilitating monoamine release.

Animals↗

[Analysis of electrically evoked response in relation to the central pathway of the cat (3). Current source density analysis in area 17 of cats].

We analyzed current source density and multiple unit activity of area 17 of cats in response to transcorneal electrical stimuli to clarify the localization of the transmembrane current flows contributing to the generation of the electrically evoked response. The results of the current source density analysis were as follows. 1. Current sinks within 20 ms were observed in layers 4 and 6. 2. Current sinks corresponding to N3 (latency 35 ms) were detected in layers 4 and lower 3 and current sources were in the supragranular layers. 3. Current sinks with a latency of more than 40 ms were observed in the supragranular layers. Simultaneous multiple unit activity was present in cases 1 and 2. With increased stimulus frequency or double electrical stimuli, the current sinks corresponding to N3 were decreased. These findings indicate that N1 (latency 9 ms) and N2 (latency 20 ms) reflect near-field potentials generated by geniculocortical afferents in layers 4 and 6, and that N3 is a post-and polysynaptic component. In addition, it appears that dipoles consisting of cell bodies and apical dendrites of pyramidal cells in layer 3 generated by satellite cell in layer 4, play a major role in generating N3.

Animals↗

[Idiopathic pure sudomotor failure].

We describe three cases of acquired generalized anhidrosis without other autonomic and somatic nervous dysfunctions (idiopathic pure sudomotor failure; IPSF) and a review of the literature was made in regard to the clinical features of this disease. Patient 1. A 17-year-old man was found to be severely anhidrotic and intolerant to heart loading, which produced an immediate sharp pain over the entire body surface in April, 1989. Sudden and spontaneous remission occurred in July, 1990, but relapsed six months later. He was admitted to our hospital seeking for therapy in April, 1991. There were no abnormal findings on physical and neurological examinations except for anhidrosis. Patient 2. A 14-year-old boy was admitted to our hospital in March 1991 with complaints of intolerance to heart loading and sharp pain, which had begun ten months before admission. Physical and neurological examinations revealed no abnormal findings except for anhidrosis. Patient 3. A 21-year-old woman suddenly experienced a burning sensation in the whole body in 19th, February, 1991, which was followed by severe pain. She was admitted to our hospital in the next day. Apart from sensory impairment of glove and stocking type, neurological examination revealed no abnormal findings. Reflex sweating to pilocarpine was absent in all three cases, suggesting abnormality in the postganglionic sudomotor nerves or cholinergic receptors. Skin biopsy was performed in one patient (patient 1), and revealed no abnormalities of the sweat glands and ducts.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗