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Biomedical subjects

Masatoshi Takeda

Publications and source records attributed to Masatoshi Takeda.

At least 19 recordsLinked to original sources

Amyloid-beta down-regulates XIAP expression in human SH-SY5Y neuroblastoma cells.

Recent observations suggest that amyloid-beta (Abeta), a major constituent of senile plaques, induces apoptosis in cultured neuronal cells. However, the concentration of Abeta that leads to neuronal cell death is much higher (10-25 microM) than that in the cerebrospinal fluid of normal controls or AD patients (nM order). As reported here, we found that subtoxic concentrations (100-500 nM) of Abeta(1-42) can down-regulate the expression of the X-linked inhibitor of apoptosis (XIAP) in human SH-SY5Y neuroblastoma cells, and that vulnerability to oxidative stress caused by Abeta(1-42) is attenuated by over-expression of XIAP. These results suggest that down-regulation of XIAP expression in response to subtoxic, more physiological concentrations (100-500 nM) of Abeta(1-42) increases vulnerability to oxidative stress.

Amyloid beta-Peptides↗

Slow repetitive transcranial magnetic stimulation increases somatosensory high-frequency oscillations in humans.

Repetitive transcranial magnetic stimulation (rTMS) has been proposed as a possible treatment for psychiatric and neurological disorders characterized by focal brain excitability, such as major depression and action myoclonus. However, the mechanism of modulating excitability by rTMS is unclear. We examined the changes in high frequency oscillations (HFOs) of somatosensory evoked potentials (SEPs) before and after slow rTMS over the right primary somatosensory cortex (0.5 Hz, 50 pulses, 80% motor threshold intensity). The HFOs, which represent a localized activity of intracortical inhibitory interneurons, were significantly increased after slow rTMS, while the SEPs were not changed. Our results suggest that slow rTMS affects cortical excitability by modulating the activity of the intracortical inhibitory interneurons beyond the time of the stimulation and that rTMS may have therapeutic effects on such disorders.

Adult↗

Effectiveness of a clinical pathway for the diagnosis and treatment of dementia and for the education of families.

AIMS: Clinical pathways (CPs) are rarely used in the treatment of dementia. We established a CP for a series of medical practices (diagnosis, treatment, establishment of a care system, and caregiver education) for patients with dementia hospitalized for a three-week period, and evaluated its usefulness. METHODS: The length of hospital stay and hospital costs were compared between 23 consecutive patients with dementia hospitalized and treated using a CP and 20 controls treated by conventional medical practice without using a CP in a special ward for dementia patients. In the CP group, at the time of discharge, primary caregivers, physicians, and nurses were given a questionnaire to obtain their comments about the impression of treatment with the CP. RESULTS: The questionnaire survey indicated that the CP deepened the caregiver's understanding of the sequence of medical practices for the inpatient, the disorders of the inpatient, the treatment methods, and the methods for coping with the disorder. The CP was also useful for facilitating inpatient medical practice and promoting the establishment of a care system after discharge. The use of the CP significantly shortened the length of hospital stay and decreased hospital costs during hospitalization but increased the amount of work per day and made the medical staff feel that their freedom to choose medical procedures had been restricted. CONCLUSIONS: The CP was useful for execution of inpatient medical practices for patients with dementia.

Aged↗

Sleep characteristics of menopausal insomnia: a polysomnographic study.

Although menopausal insomnia is of clinical significance, the essential features of this form of disrupted sleep are poorly understood. The aim of the present study was to identify the sleep characteristics of menopausal insomnia by using overnight polysomnography (PSG). Twenty-one subjects with menopausal insomnia (MI) and 13 sex- and age-matched normal control (NC) subjects without sleep complaints took part in the present study. All MI and NC subjects underwent PSG on two consecutive nights. In comparison with NC, MI subjects had non-specific findings such as significantly shorter total sleep time, longer sleep latency, higher wake time after sleep onset, and lower sleep efficiency. As for rapid eye movement (REM) sleep variables, MI subjects had significantly shorter total REM sleep time, fewer numbers of REM sleep periods, longer REM latency, and higher REM density than did the NC subjects. As for the time course of REM density, REM density during the first 3 h period of nocturnal sleep was significantly higher for MI than for NC subjects. Unlike NC subjects, REM density for MI subjects did not tend to rise progressively during nocturnal sleep. The MI subjects had objective evidence of disrupted sleep and the most striking characteristics of this dysfunction were observed in REM sleep variables. The sleep characteristics of MI subjects were found to differ in REM sleep variables from those of patients with major depression (except for REM density). Menopausal insomnia patients appear to be similar to patients with generalized anxiety disorder accompanied by severe sleep disruption. These data lend support to the clinical distinction between menopausal insomnia and insomnia associated with major psychiatric disorders.

Adult↗

Electrogastrography abnormality in eating disorders.

Eating disorders are common psychiatric disorders in young women. The aim of the present study was to evaluate the gastric electrical activity of patients with eating disorders and its relation to their symptoms. The electrogastrography (EGG) was performed before and after a water load test for outpatients with eating disorders (n = 36; 14 anorexia nervosa, 14 bulimia nervosa, eight eating disorder not otherwise specified) and healthy women (n = 19). A structured interview (Eating Disorder Examination) was used to assess clinical symptoms. The percentage of normal gastric myoelectrical power was significantly smaller in the eating disorder patients (44.5% vs 74.2%; P < 0.05), while the percentage of bradygastric power was significantly greater, both before and after the water load test compared with the control subjects (30.4% vs 10.4%; P < 0.05). In addition, moderate correlation was found between the duration of illness and the percentage of bradygastria (P < 0.05). In conclusion, it is suggested that longstanding abnormal eating in patients with eating disorders may induce disturbances to gastric motor function, resulting in their abnormal, eating-related behavior, and form a symptomatic vicious circle. The EGG may be a promising method for determining the pathophysiology of eating disorders and for developing effective therapeutic approaches.

Adolescent↗

Interictal spikes in the fusiform and inferior temporal gyri of an epileptic patient with colored elementary visual auras: a 5-year longitudinal MEG ECD study.

Using equivalent current dipole (ECD) analysis of magnetoencephalography (MEG), we examined the locations of interictal spikes for 5 years in an epileptic patient who had experienced colored elementary visual auras that gradually disappeared with medication. During the period that the patient frequently experienced colored elementary visual auras, six of nine spikes occurred in the right fusiform and inferior temporal gyri. As the frequency of the visual auras decreased, the spikes were widely distributed in the right hemisphere, but were not localized to these areas. After the visual auras ceased, six of seven spikes occurred in the right transverse gyrus of Heschl. These results suggest that colored elementary visual auras of epileptic-positive symptoms originate in the fusiform and inferior temporal gyri and that these regions are involved in human color processing. This is the first MEG study suggesting that the fusiform gyrus and the inferior temporal cortex are related to human color processing.

Adult↗

Clinical significance of pulse rate rise during sleep as a screening marker for the assessment of sleep fragmentation in sleep-disordered breathing.

OBJECTIVE: To assess the clinical utility of the frequencies of transient increases of pulse rate, non-invasively measured with a pulseoximeter, as an indirect indication of the degree of cortical arousal, measured conventionally on an electroencephalogram (EEG), in obstructive sleep apnea-hypopnea syndrome (OSAHS) patients. PATIENTS AND METHODS: Thirty-three consecutive patients referred with suspected OSAHS were studied. Polysomnography (PSG) with determination of esophageal pressure (Pes) and pulseoximetry was monitored to identify breathing-related EEG arousal (B-Ar) associated with apnea, hypopnea or respiratory effort and the frequencies of pulse rate increases. We also assessed the association of B-ArI (defined as the number of B-Ar per hour) with the pulse rate rise index (PRRI)-X(X=4-10) (defined as the number of pulse rate increases per hour). In addition, the sensitivity and specificity of PRRI for the assessment of a B-ArI cutoff point of 30 were calculated. RESULTS: The sensitivity and specificity of pulseoximetry for different thresholds of PRRI-X(X=4-10) demonstrated that the greatest diagnostic accuracy for detecting frequent arousal (B-ArI > or =30) occurs at a cutoff point of 40 PRRI-6 with a sensitivity of 0.88 and specificity of 0.86. This point shows a significant area under the curve of 0.84. In addition, a statistically significant correlation between PRRI-6 and B-ArI (r=0.68, P<0.0001) was observed. CONCLUSIONS: The transient increases in pulse rate measured by pulseoximetry during sleep may be a useful clinical marker for predicting the degree of arousal in OSAHS patients, and may, in addition, prevent cases with frequent respiratory effort related arousals from being overlooked. However, further studies are required to improve the confidence level of the PRRI and to investigate the causes of overestimation of EEG arousals.

Adult↗

Autoantibodies against four kinds of neurotransmitter receptors in psychiatric disorders.

There is a hypothesis that autoimmune abnormalities in neurotransmitter receptors might cause some psychiatric disorders. Using a sensitive radioligand assay, we detected serum autoantibodies to recombinant human muscarinic cholinergic receptor 1 (CHRM1, 34.4%), mu-opioid receptor (OPRM1, 13.1%), 5-hydroxytryptamine receptor 1A (HTR1A, 7.4%), and dopamine receptor D2 (DRD2, 4.9%) in 122 psychiatric patients. Positive antibodies to CHRM1 were found in 34.1%, 34.9%, 33.3%, and 9.1% of patients with schizophrenic disorders (n=44), mood disorders (n=63), other psychiatric disorders (n=15) and autoimmune diseases (n=33), respectively. All three patients with neuroleptic maliganant syndrome had high activities of autoantibodies to CHRM1, OPRM1, and/or HTR1A. Our data suggest that autoimmunity to neurotransmitter receptors might be associated with the induction of psychiatric symptoms and have some relation to neuroleptic malignant syndrome.

Adult↗

Three components of obstructive sleep apnea/hypopnea syndrome.

The aims of this study were to calculate the apnea-hypopnea index (AHI), which represented as the number of apnea-hypopnea occurrences per hour, the 4% oxygen desaturation index (ODI4) and the breathing-related arousal index (B-ArI) in polysomnographic studies of obstructive sleep apnea/hypopnea syndrome (OSAHS) patients and to investigate whether there was any relationship between each pair of scoring schemes. Thirty-four cases of OSAHS were studied. Total OSAHS patients were subdivided into those with a high AHI (> 25), and those with a low AHI (< 25). The correlation between each pair of scoring schemes for OSAHS with a high AHI showed high value. The correlation between AHI and ODI4 for OSAHS with a low AHI was 0.18 and that between AHI and B-ArI showed a weak correlation of 0.59, while that between ODI4 and B-ArI was only -0.078. Our results mean that oxygen desaturation and arousal occur separately in mild or moderate OSAHS patients, even though they are diagnosed with the same level of OSAHS by means of AHI. Breathing-related arousal without oxygen desaturation often occurs in mild or moderate OSAHS patients. We previously reported that AHI does not accurately reflect the severity of the increase in negativity of esophageal pressure manifested as respiratory efforts. We consider that the comprehension and assessment of OSAHS can be improved by the systematic differentiations among the three components: oxygen desaturation, arousals and respiratory efforts.

Adult↗

Predictors of first-onset major depressive episodes among white-collar workers.

Major depression is a multifactorial disorder. Previous studies have mainly evaluated work stress to determine the risk factors for depression among workers. The present study aimed to determine factors predictive of the first depressive episode 1 year later among white-collar workers, and to examine whether work 'stress' is associated with an elevated risk of depression. A 5 year open-cohort study was carried out in a Japanese company. The odds ratios (OR) of the development of depression 1 year later were calculated. Ninety-eight first-onset cases were compared with 1267 never-ill cases. Forward stepwise multiple logistic regression indicated that the first onset of depression was associated with a past history of panic attack (OR: 5.14; 95% confidence interval (CI): 1.64-16.10), neuroticism (OR: 3.59; 95%CI: 2.06-6.26), perceived overprotection (OR: 2.75; 95%CI: 1.66-4.55), poor support (OR: 2.55; 95%CI: 1.58-4.10), and low care (OR: 2.23; 95%CI: 1.23-4.04). First-onset cases were more likely to have had objective work events (OR: 1.50; 95%CI: 1.18-1.90) but they did not differ from never-ill cases in subjective job stress. The development of major depression in white-collar workers is associated with multiple factors, as is depression in the community.

Adult↗

Neural mechanism of propofol anesthesia in severe depression: a positron emission tomographic study.

BACKGROUND: The precise neural mechanisms of propofol anesthesia in humans are still unknown. The authors examined the acute effects of propofol on regional cerebral blood flow (rCBF) using positron emission tomography in patients with severe depression. METHODS: In six severely depressed patients (mean age, 55.0 yr) scheduled for electroconvulsive therapy, anesthetic levels were monitored by electroencephalography, and rCBF was serially quantified in the awake, sedated, and anesthetized states. The authors used high-resolution positron emission tomography with 15O-labeled water and statistical parametric mapping 99 for imaging and analysis of the data. RESULTS: Global cerebral blood flow showed sharp decreases from the awake level during the administration of propofol, decreasing 26.8% in the sedated state and 54.4% in the anesthetized state. Moreover, a dose effect was seen in both parietal cortices and the left lateral prefrontal region with larger regions of relative decrease in rCBF at higher propofol doses. At the higher dose, the values of rCBF in the pulvinar nucleus of the thalamus, the pontine tegmentum, and the cerebellar cortex were also affected. Meanwhile, there were few changes of relative rCBF in the basal frontal lobes during both sedated and anesthetized states. CONCLUSIONS: As in earlier studies using normal subjects, pronounced suppression in rCBF in the brain stem reticular formation, the thalamus, and the parietal association cortex occurred even in severely depressed patients. However, previously reported decreases in rCBF in the basal frontal lobe were absent in depressed patients.

Adult↗

[Research strategy for understanding neuronal plasticity and degeneration].

After the disclosure of human genomic information in 2003, the new era of post-genomic research will be in full bloom in the field of neuroscience, brain science as well as in neuropsychiatry. In this paper, the authors discussed possible strategies for understanding neuronal plasticity and neuronal degeneration in the post-genomic research paradigm. Five presentations are discussed in the following orders; 1) pharmacogenomics and epigenetics, 2) neuronal stem cell differentiation and transplantation into brain tissue, 3) Elucidation of the mechanism of neuro-protection and neurogenesis, 4) mechanisms of protein processing, especially importance of regulated intramembranous proteolysis, and 5) simulation analysis of signal transduction pathways. All of these newly developing strategies will be of increasing importance in the research in neuropsychiatry.

Nerve Degeneration↗

[Neuroprotective actions of lithium].

Lithium has long been one of the primary drugs used to treat bipolar mood disorder. However, neither the etiology of this disease nor the therapeutic mechanism(s) of this drug is well understood. Several lines of clinical evidence suggest that lithium has neurotrophic actions. For example chronic lithium treatment increases the volume of gray matter and the content of N-acetyl-aspartate, a cell survival marker, in bipolar mood disorder patients (Moore et al., 2000). Moreover, treatment with this mood-stabilizer suppresses the decrease in the volume of the subgenual pre-frontal cortex found in bipolar patients (Drevets, 2001). To elucidate molecular mechanisms underlying the neuroprotective and neurotrophic actions of lithium, we employed a preparation of cultured cortical neurons prepared form embryonic rats. We found that treatment with therapeutic doses (0.2-1.2 mM) of lithium robustly protects cortical neurons from multiple insults, notably glutamate-induced excitotoxicity. The neuroprotection against glutamate excitotoxicity is time-dependent, requiring treatment for 5-6 days for maximal effect, and is associated with a reduction in NMDA receptor-mediated Ca2+ influx. The latter is correlated with a decrease in Tyrosine 1472 phosphorylation levels in the NR2B subunit of NMDA receptors and a loss of Src kinase activity which is involved in NR2B tyrosine phosphorylation. Neither the activity of total tyrosine protein kinase nor that of tyrosine protein phosphatase is affected by this drug, indicating the selectivity of the modulation. Lithium neuroprotection against excitotoxicity is inhibited by a BDNF-neutralizing antibody and K252a, a Trk antagonist. Lithium treatment time-dependently increases the intracellular level of BDNF in cortical neurons and activates its receptor, TrkB. The neuroprotection can be completely blocked by either heterozygous or homozygous knockout of the BDNF gene. These results suggest a central role of BDNF and TrkB in mediating the neuroprotective effects of this mood-stabilizer. Finally, long-term lithium treatment of cortical neurons stimulates the proliferation of their progenitor cells detected by co-labeling with BrdU and nestin. Lithium pretreatment also blocks the decrease in progenitor proliferation induced by glutamate, glucocorticoids and haloperidol, suggesting a role in CNS neuroplasticity. We used animal models to investigate further therapeutic potentials for lithium. In the MCAO/reperfusion model of stroke, we found that post-insult treatment with lithium robustly reduced infarct volume and neurological deficits. These beneficial effects were evident when therapeutic concentrations of lithium were injected at least up to 3 h after ischemic onset. The neuroprotection was associated with activation of heat-shock factor-1 and induction of heat-shock protein-70, a cytoprotective protein. In a rat excitotoxic model of Huntington's disease, the excitotoxin-induced loss of striatal medium-sized neurons was markedly reduced by lithium. This lithium protection was correlated with up-regulation of cytoprotective Bcl-2 and down-regulation of apoptotic proteins p53 and Bax, and neurons showing DNA damage and caspase-3 activation. Taken together, our results provide a new insight into the molecular mechanisms involved in lithium neuroprotection against glutamate excitotoxicity. Moreover, these novel molecular and cellular actions might contribute to the neurotrophic and neuroprotective actions of this mood-stabilizer in patients, and could be related to its clinical efficacy for treating mood disorder patients. Clearly, mood-stabilizers may have expanded use for treating excitotoxin-related neurodegenerative diseases.

Animals↗

[Biological markers for Alzheimer disease].

The development of diagnostic markers for earlier and more reliable diagnosis of Alzheimer disease (AD) is essential, particularly because therapeutic medication is available for AD. Cerebrospinal fluid (CSF) is a useful source of diagnostic information. Previously we found the increase of total tau protein in CSF in normal pressure hydrocephalus patients, and others reported the increase also in corticobasal degeneration and frontotemporal dementia. To differentiate the AD from other diseases, further approach was employed and oxidized protein in CSF was investigated. Heat stable fractions of CSF were analyzed on the content of carbonyl residues, which are derivatives of protein oxidization. The result suggests that protein oxidation is highly involved in AD and that this method might be useful to differentiate AD from other neurological disease.

Alzheimer Disease↗