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Shigetoshi Kuroda

Publications and source records attributed to Shigetoshi Kuroda.

51 records · Page 3Linked to original sources

Association study between the fibronectin gene and schizophrenia.

Fibronectin is one of the cell adhesion proteins. Adhesion molecules play an important role in neural and synaptic genesis, and their dysfunction may result in neurodevelopmental abnormalities, which have been assumed to be a factor in the pathogenesis of schizophrenia. To examine the possible involvement of fibronectin in the etiology of schizophrenia, we analyzed six polymorphisms, located in introns 2, 21, 24, and 26, and exons 20 and 28, in the human fibronectin gene (FN1) of schizophrenic patients in the Japanese population (n = 104) and age-and gender-matched controls (n = 104). No significant positive association was observed between either of the polymorphisms and schizophrenia, nor was an association found between either of the polymorphisms and any subtypes of schizophrenia. These data did not provide evidence for a contribution of the FN1 gene to susceptibility to schizophrenia.

Adult↗

An autopsied case of dementia with Lewy bodies with supranuclear gaze palsy.

A 66-year-old man had suffered from a slow and steady decline in both physical and cognitive function for four years. He showed bradykinesia and small step gait with supranuclear vertical gaze palsy, especially upward gaze palsy. He was started on levodopa therapy but without response. A diagnosis of progressive supranuclear palsy was clinically suspected. He died at age 69. Pathologically, many alpha-synuclein positive inclusions were detected both in the brain stem and cerebral cortices, and the diagnosis of dementia with Lewy bodies was made. Scattered alpha-synuclein-positive inclusions and threads, which may be a pathological substrate for supranuclear gaze palsy, were identified in the rostal midbrain. From a review of five cases of dementia with Lewy bodies with supranuclear gaze palsy including this case, the absence of falls in the early stage of the disease, fluctuation of cognition, hallucination and vertical gaze palsy with a more severe defect in the upward direction distinguished dementia with Lewy bodies with vertical gaze palsy from progressive supranuclear palsy. In the differential diagnosis of parkinsonism with gaze palsy, clinicians should consider dementia with Lewy bodies with gaze palsy as well as progressive supranuclear palsy.

Brain↗

[Pick's disease].

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Diagnosis, Differential↗

[Parkinson's disease].

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Antidepressive Agents, Tricyclic↗

Immunohistochemical examination on intracranial calcification in neurodegenerative diseases.

Fahr-type calcification is a relatively common finding in the elderly, and in younger patients with Alzheimer's disease, calcification in the basal ganglia is not uncommon. However, as far as we know, an immunohistochemical study of intracranial calcification in neurodegenerative diseases has not been performed. In this study, we examined intracranial calcification of the basal ganglia and cerebellum with antibodies against noncollagenous bone matrix proteins. Nineteen brains were employed. The diagnoses were diffuse neurofibrillary tangles with calcification in five, Alzheimer's disease in five, Pick's disease in one, progressive supranuclear palsy in one, Parkinson's disease in one, and six controls. By conventional histology, three patterns of calcium (Ca) deposition were recognized: diffuse deposition within the tunica media of small and medium-sized vessels (type 1 deposition), free spherical or lobulated concretions (type 2 deposition) in the parenchyma, and rows of small calcospherites lying along capillaries (type 3 deposition). Type 3 deposition is relatively rare, and may be a hallmark of severe intracranial calcification. Immunohistochemistry demonstrated that osteopontin was present diffusely in all Ca deposition types. Osteocalcin was present chiefly in the peripheral region of type 2 and 3 depositions, as well as in only the rims of type 1 deposition. Bone sialoprotein and osteonectin were found only in the core portions of type 2 and 3 depositions. In brief, type 1 deposition shows a different staining pattern from type 2 and 3. Different Ca deposition patterns of noncollagenous bone matrix proteins may suggest their separate roles in the pathogenesis of intracranial calcification.

Aged↗

Alzheimer's disease with spastic paresis and cotton wool type plaques.

We reviewed Alzheimer's cases with spastic paresis and cotton wool type plaques in five Japanese and nine Caucasian cases. Most were early onset familial Alzheimer's disease with presenilin 1 mutations. The cotton wool type plaques were related to extremely high production of A beta 42, due mainly to presenilin 1 mutations and low immune responses. Cotton wool plaques were numerous in the entire central nervous system, including basal ganglia, brainstem and even in spinal cord. Cotton wool type plaques were composed of slightly electron dense synaptic structures, but amyloid fibrils were rarely found. Such a high accumulation of A beta 42 may cause degeneration of the pyramidal tract and basal ganglia from an early stage of Alzheimer's disease.

Adult↗

Lectin cytochemical demonstration of glucose- and mannose-containing glycoconjugates on human reactive astrocytes.

Lectin cytochemistry of the human autopsy cases of Creutzfeldt-Jakob disease and old cerebral infarction was performed on formalin-fixed, paraffin-embedded sections using 15 lectins. Reactive astrocytes showed a positive reaction with concanavalin A (Con A), Lens culinaris agglutinin (LCA) and Pisum sativum agglutinin (PSA), with common specificity for both mannose and glucose. However normal astrocytes demonstrated no or little cytochemical reaction for any of the lectins. Reactivity for the lectins in control sections was obviously reduced using the blocking sugars (0.1 mol/l D-mannose and 0.5 mol/l D-glucose for Con A, LCA, and PSA, and 0.5 M mol/l alpha-methyl mannopyranoside for Con A). The present data provide suggestive evidence that the reactivity for Con A, LCA, and PSA is increased in reactive astrocytes.

Aged↗

Glial involvement in diffuse Lewy body disease.

Diffuse Lewy body disease (DLBD) is characterized by the presence of Lewy bodies (LB) in the neurons and neurites of cortical, subcortical, and brain stem structures. Recently, alpha-synuclein (alphaS) has been found to be a central constituent of LB. In DLBD, abnormal accumulation of alphaS has been reported in both neurons and glia, but studies on glial lesions in DLBD have been limited. We examined in detail the constituents and distribution of glial lesions in eight patients with DLBD and report the pathogenesis of the glial lesions. alphaS-positive neuronal cytoplasmic inclusions (NI), neuropil threads (NT), and coiled bodies (CB) showed similar immunostaining profiles. Without pretreatment, NI, NT, and CB were detected by all antibodies against alphaS. The immunostaining profile of star-like astrocytes (SLA) was quite different from those of NI, NT, and CB. A few SLA were stained by an antibody against the non-Abeta component portion of alphaS without pretreatment, but formic acid pretreatment dramatically enhanced SLA immunoreactivity. SLA and CB were found in all eight brains with DLBD. SLA were scarce in the brain stem, but there were hundreds of SLA per visual field at x100 magnification in the temporal cortex of most cases, while CB were found diffusely in both the cerebral cortex and brain stem, similar to NI. This suggests that the pathogenesis of SLA is different from those of NI and CB.

Aged↗

NACP/alpha-synuclein, NAC, and beta-amyloid pathology of familial Alzheimer's disease with the E184D presenilin-1 mutation: a clinicopathological study of two autopsy cases.

Approximately 60% of familial and sporadic Alzheimer's disease (AD) cases manifest Lewy bodies (LBs), of which a major component is alpha-synuclein. Although the pathogenic role of alpha-synuclein in AD remains unclear, LB formation might be associated with pathological beta-amyloid (Abeta) overproduction. Here, we present the clinical and pathological characteristics of two affected family members from a pedigree with the E184D mutation of presenilin-1. One case presented with typical clinical features of AD, but the other case also developed clinical characteristics of dementia with Lewy bodies (DLB), including visual hallucinations, delusions, and parkinsonism. In both cases, neuropathological examination revealed numerous neurofibrillary tangles and severe Abeta deposition in senile plaques and amyloid angiopathy, in which Abeta42 rather than Abeta40 was predominant. Furthermore, remarkable alpha-synuclein pathology, including LBs and the accumulation of the non-Abeta component of AD amyloid (NAC) in plaques and astrocytes, was detected only in the case that presented with the symptoms of DLB. These findings suggest that (1) LB pathology can influence the clinical features of familial AD, (2) the E184D mutation of presenilin-1 may be associated with the LB formation through Abeta overproduction, although the process of LB formation is strongly affected by other unknown mechanisms, (3) in neurodegenerative disorders with LBs, there is a common pathophysiological background inducing NAC accumulation in neuritic plaques and astrocytes, and (4) the NAC accumulation in neuritic plaques is modulated by the abnormally aggregated tau protein.

Adult↗

NACP/alpha-synuclein immunoreactivity in diffuse neurofibrillary tangles with calcification (DNTC).

Diffuse neurofibrillary tangles with calcification (DNTC) is a rare tangle-predominant dementia, as well as one of the tauopathies lacking Abeta deposition. It is characterized by temporo-frontal lobar atrophy, Fahr-type calcification and, histopathologically, numerous neurofibrillary tangles in the limbic system and neocortex. Recently, accumulation of alpha-synuclein (alphaS), the precursor of the non-beta amyloid component (NAC) of Alzheimer's disease, has been shown in diverse neurodegenerative disorders, including Parkinson's disease, dementia with Lewy bodies, Alzheimer's disease, multiple system atrophy and parkinsonism-dementia complex of Guam. To clarify whether alphaS accumulates in other neurodegenerative disorders, we investigated eight DNTC brains using immunohistochemistry and demonstrated remarkable alphaS deposition in the neurons and astrocytes in many anatomical regions. Abundant Lewy bodies were observed in the amygdala (seven cases) and hippocampus (seven cases), and, to a lesser degree, in the substantia nigra (six cases) and dorsal vagal nucleus (five cases). In the hippocampus, many Lewy neurites were distributed in the stratum oriens and stratum pyramidale in the CA2-3 and the subiculum. Furthermore, numerous NAC-positive astrocytes were detected in the hippocampus and temporal cortex. This investigation reveals that neurons and astrocytes are extensively involved in remarkable alphaS pathology in the DNTC brain, and that the alphaS pathology compounds the cardinal pathological features of tau pathology. These findings suggest that (1) DNTC shares a common pathophysiological background with Parkinson's disease, dementia with Lewy bodies, and multiple system atrophy in which abnormal alphaS aggregation is observed, and (2) there is an interaction between alphaS and tau pathology that does not involve amyloid in DNTC.

Adult↗

Preservation of nigral neurons in Pick's disease with Pick bodies: a clinicopathological and morphometric study of five autopsy cases.

Many reports have described loss of neurons in the substantia nigra in Pick's disease (PiD). In those reports, however, "Pick's disease" includes PiD without Pick bodies (PB), and there is only limited data available on regional nigral pathology in PiD with PB. To elucidate the pathological changes of the substantia nigra in PiD with PB, we examined five cases and 12 age-matched controls by morphometry. The number and size of pigmented and nonpigmented neurons, as well as the area of the substantia nigra were examined. The area of the substantia nigra was significantly reduced in PiD with PB. The pigmented and nonpigmented neuron counts in PiD with PB were not statistically different from those in controls. There was a significant reduction in the size of pigmented neurons in PiD with PB to 82% with that in the controls. In addition, after reviewing 48 cases of PiD with PB reported in the literature, we found that none of the cases with typical frontotemporal lobe symptoms exhibited parkinsonism until the terminal stage. These data are useful for discriminating PiD with PB from other diseases showing frontotemporal characteristics, including the frontal lobe degeneration type and the motor neuron disease type of frontotemporal dementia.

Adult↗

Development and evaluation of a health-related quality of life questionnaire for the elderly with dementia in Japan.

OBJECTIVES: The purpose of this study was the development of the quality of life (QOL) questionnaire for dementia (QOL-D) in Japan. METHODS: We performed a questionnaire survey of QOL assessment in elderly patients with dementia in Japan, and developed QOL-D. RESULTS: The final version consists of only 31 items grouped into six response sets, each with its own scale. Reliability is good to excellent, and validity is, to some extent, established. The six domains of health-related QOL are divided into two groups. One is the positive and the other is the negative aspects of health-related QOL. The positive aspects have been shown to correlate positively with cognitive function and activities of daily living (ADL) score, whereas the negative aspects have not. The concept of QOL for elderly patients with dementia in Japan is similar to that in Western countries. CONCLUSION: We demonstrated that QOL-D is a reliable and valid instrument for QOL assessment in elderly patients with dementia in Japan.

Activities of Daily Living↗

Gene expression related to synaptogenesis, neuritogenesis, and MAP kinase in behavioral sensitization to psychostimulants.

The most important characteristic of behavioral sensitization to psychostimulants, such as amphetamine and cocaine, is the very long-lasting hypersensitivity to the drug after cessation of exposure. Rearrangement and structural modification of neural networks in CNS must be involved in behavioral sensitization. Previous microscopic studies have shown that the length of dendrites and density of dendritic spines increased in the nucleus accumbens and frontal cortex after repeated exposure to amphetamine and cocaine, but the molecular mechanisms responsible are not well understood. We investigated a set of genes related to synaptogenesis, neuritogenesis, and mitogen-activated protein (MAP) kinase after exposure to methamphetamine. Synaptophysin mRNA, but not VAMP2 (synaptobrevin 2) mRNA, which are considered as synaptogenesis markers, increased in the accumbens, striatum, hippocampus, and several cortices, including the medial frontal cortex, after a single dose of 4 mg/kg methamphetamine. Stathmin mRNA, but not neuritin or narp mRNA, which are markers for neuritic sprouting, increased in the striatum, hippocampus, and cortices after a single dose of methamphetamine. The mRNA of arc, an activity-regulated protein associated with cytoskeleton, but not of alpha-tubulin, as markers for neuritic elongation, showed robust increases in the striatum, hippocampus, and cortices after a single dose of methamphetamine. The mRNAs of MAP kinase phosphatase-1 (MKP-1), MKP-3, and rheb, a ras homologue abundant in brain, were investigated to assess the MAP kinase cascades. MKP-1 and MKP-3 mRNAs, but not rheb mRNA, increased in the striatum, thalamus, and cortices, and in the striatum, hippocampus, and cortices, respectively, after a single methamphetamine. Synaptophysin and stathmin mRNAs did not increase again after chronic methamphetamine administration, whereas the increases in arc, MKP-1, and MKP-3 mRNAs persisted in the brain regions after chronic methamphetamine administration. These findings indicate that the earlier induction process in behavioral sensitization may require various plastic modifications, such as synaptogenesis, neuritic sprouting, neuritic elongation, and activation of MAP kinase cascades, throughout almost the entire brain. In contrast, later maintenance process of sensitization may require only limited plastic modification in restricted regions.

Animals↗