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S Iritani

Publications and source records attributed to S Iritani.

At least 19 recordsLinked to original sources

Distribution of basal ganglia lesions in diffuse neurofibrillary tangles with calcification: a clinicopathological study of five autopsy cases.

We investigated five Japanese autopsy cases of diffuse neurofibrillary tangles with calcification (DNTC), both clinically and pathologically, and examined the degree and distribution of the basal ganglia lesions, especially in the amygdala, striatum, pallidum, and substantia nigra. The lesions in the amygdala, striatum, and pallidum were classified into three categories (mild, moderate, and severe). The lesions in the substantia nigra were qualitatively judged, compared with normal controls. Severe dementia was observed in four cases neuropathologically showing pronounced neuronal loss in the cerebral cortex, but one case without neuronal loss in the cerebral cortex showed mild memory disturbance. Extrapyramidal signs were evident in three cases. Obvious neuronal loss in the substantia nigra with the presence of Lewy bodies was noticed in four cases. Basal ganglia lesions in all five cases were uniform: the amygdala showed severe to moderate lesions, the caudate nucleus moderate to slight lesions, and the putamen and pallidum slight lesions to normal. Furthermore, the lesions in the amygdala were more prominent in the basolateral group than in the corticomedial group, inconsistent with those in the amygdala of Alzheimer's disease. Moderate lesions were evident in the basolateral group of the amygdala in the case without neuronal loss in the cerebral cortex. In DNTC, the degree and distribution of the basal ganglia lesions, except for nigral lesions, were analogous to those found in Pick's disease with Pick bodies. These clinicopathological findings may contribute to the elucidation of the clinicopathological hallmarks in this disorder.

Age of Onset↗

Abnormal expression of epidermal growth factor and its receptor in the forebrain and serum of schizophrenic patients.

Epidermal growth factor (EGF) comprises a structurally related family of proteins containing heparin-binding EGF-like growth factor (HB-EGF) and transforming growth factor alpha (TGFalpha) that regulates the development of dopaminergic neurons as well as monoamine metabolism. We assessed the contribution of EGF to schizophrenia by measuring EGF family protein levels in postmortem brains and in fresh serum of schizophrenic patients and control subjects. EGF protein levels were decreased in the prefrontal cortex and striatum of schizophrenic patients, whereas the levels of HB-EGF and TGFalpha were not significantly different in any of the regions examined. Conversely, EGF receptor expression was elevated in the prefrontal cortex. Serum EGF levels were markedly reduced in schizophrenic patients, even in young, drug-free patients. Chronic treatment of animals with the antipsychotic drug haloperidol had no influence on EGF levels in the brain or serum. These findings suggest that there is abnormal EGF production in various central and peripheral tissues of patients with both acute and chronic schizophrenia. EGF might thus provide a molecular substrate for the pathologic manifestation of the illness, although additional studies are required to determine a potential link between impaired EGF signaling and the pathology/etiology of schizophrenia.

Adult↗

A quantitative study on the expression of synapsin II and N-ethylmaleimide-sensitive fusion protein in schizophrenic patients.

The application of DNA array technology to schizophrenic studies enabled us to assess molecular features of this disease. The expression of synapsin II and N-ethylmaleimide-sensitive fusion protein (NSF) mRNAs is reported to decrease in the prefrontal cortex of these patients. We attempted to reproduce this result with two distinct approaches. With high quality samples, mRNA and protein levels for synapsin II and NSF were measured by real-time polymerase chain reaction and by immunoblotting. Both experiments led to the same conclusion: The expression of these presynaptic markers is not altered significantly in the prefrontal cortex of our schizophrenic samples, compared to that in control subjects. These observations suggest that the neurochemical impairments of synapses reported in schizophrenia are not evident for all presynaptic markers and needs to be re-evaluated at molecular levels.

Adult↗

Astroglial function of schizophrenic brain: a study using lobotomized brain.

The neurodevelopmental hypothesis is now being recognized as one of the most useful hypothesis for schizophrenia, and by using it, abnormalities in protein associated with neuron growth or neuronal migration have been reported. From neuron-glia interrelations in the neural development, it is important to study the function of astroglia in the schizophrenic brain. In this study, we examined the neuropathological reaction of astroglia using lobotomized brains, and a significant decrease of astroglia after artificial histological damage was observed in schizophrenic brains. We speculated that this may be due to the latent vulnerability of the dynamic function of astroglia in schizophrenia. Astroglia plays a guidance role on migration and if astroglia has latent vulnerability, we speculate that younger neurons may not sufficiently migrate during development. In further investigation of the neurodevelopmental hypothesis of schizophrenia, it will be necessary to examine the function of astroglia.

Adult↗

Cognitive decline in schizophrenics with Alzheimer's disease: a mini-review of neuropsychological and neuropathological studies.

Cognitive decline in elderly schizophrenic patients is an important clinical symptom, but it is often difficult to analyze in detail due to the patient's original residual psychotic symptoms. In this article, the authors provide neuropsychological and neuropathological research information about cognitive decline in elderly schizophrenic patients, especially with reference to Alzheimer's disease (AD). Neuropsychological and neuropathological reports about cognitive impairments are reviewed. The effect of long-term antipsychotic medication upon cognitive function is also discussed. As a result, it is apparent that elderly schizophrenic patients often show cognitive impairments, however, such impairments do not have the characteristics of progressive degenerative illnesses such as AD, and the speed of their progress is very slow. Neuropathological studies have shown that AD brain pathology appears no more frequently among schizophrenic patients than in the normal population. Since making a diagnosis of AD means that the progressive deterioration not only of cognitive function, but also of physical ability, paralleling the degeneration of the central nervous system, can be expected within a few years and appropriate care will be required. One should be very cautious in adding a diagnosis of AD to elderly schizophrenic patients with cognitive impairments.

Alzheimer Disease↗

Relationship of calbindin D28K-immunoreactive cells and neuropathological changes in the hippocampal formation of Alzheimer's disease.

Previous studies have reported that calcium binding proteins, which have important functions in regulating the intracellular ion concentration, may influence the vulnerability of neurons in neurodegenerative disease. It has been observed that the neurons containing calbindin D28K (CB) may in certain circumstances be more resistant to excitotoxic and ischemic injury. In the present study the susceptibility of hippocampal neurons containing CB to develop NFT was studied, and the distribution of CB cells was compared with hippocampal plaque density in the Alzheimer's disease (AD) brain. Interestingly CB-positive hippocampal neurons did not contain tangles and could be seen next to degenerating tau-positive pyramidal cells. Comparison of the hippocampal plaque distribution with that of CB neurons showed that in general CB-positive neurons were found in areas with a low plaque burden. Further comparison of cases with differing degrees of severity indicated that CB-positive neurons were relatively preserved in cases with moderate plaque and tangle content but that in severe cases the CB-positive pyramidal cells were lost. These findings indicate that CB cells may be protected in the earlier stages of the disease but that this resistance ability is lost in the late stages of AD. The observation that CB-positive pyramidal cells do not accumulate NFT suggests that proteolysis of tau differs in CB-negative and CB-positive cells.

Age of Onset↗

[An autopsied case of presenile dementia with tangles].

We report an autopsied case of presenile dementia showing neuropathologically abundant neurofibrillary tangles(NFT) without senile plaques(tangle only dementia). A Japanese woman developed memory disturbance when she was 60 years old. At age of 65, her ability to understand deteriorated and euphoria and wandering manifested but neither psychotic symptoms, including hallucination and delusion nor a change in character were observed. The patient was hospitalized at age 66 and a cranial CT scan revealed bilateral moderate atrophy of the cortex and moderate enlargement of the lateral ventricle, especially in the inferior horn. No lobar atrophy was detected. She exhibited an oral tendency and became appallic at her final stage and died at the age of 75. Autopsy showed that her brain weighed 850 g and neuropathological study showed numerous NFT mainly in the entorhinal (trans-entorhinal) region, subiculum, CA1-CA4, dentate gyrus, amygdara, subthalamic nucleus, basal nucleus of Meynert, substantia nigra and locus coeruleus. Severe neuronal loss with gliosis was noted in the temporal lobes including the hippocampal region. No senile plaque was detected in any of the brain regions. There have been some recent reports of patients with abundant NFT with the predominant involvement of the allocortex but no or very little senile plaque. All the patients in the reported cases were very elderly at onset(over 80 years of age). In our case, the onset was presenile and we could exclude any other diseases, that usually present with NFT, and to our knowledge, this is the first report of a presenile dementia with tangles.

Aged↗

Immunohistochemical localization of the P2Y1 purinergic receptor in Alzheimer's disease.

The biological actions of extracellular nucleotides are mediated by two distinct classes of P2 receptor, P2X and P2Y. The G protein-coupled P2Y receptors comprise five mammalian subtypes, P2Y(1-11). The P2Y1 subtype is expressed abundantly throughout the human brain and is specifically localized to neuronal structures. In the present study, the distribution of the P2Y1 receptor was investigated in Alzheimer's disease (AD) brains. In contrast to control human brain, the P2Y1 receptor was localized to a number of characteristic AD structures such as neurofibrillary tangles, neuritic plaques and neuropil threads. Immunoblot analysis showed that this specific immunostaining observed over tangles was not a result of cross-reactivity between the anti-P2Y1 antiserum and abnormal tau protein, the major constituent of tangles. The significance of this altered P2Y1 cellular distribution in AD brains is at present unclear.

Adenosine Diphosphate↗

Immunohistochemical localization of gamma-aminobutyric acid(B) receptor in the hippocampus of subjects with schizophrenia.

Recent studies have demonstrated the involvements of gamma-aminobutyric acid (GABA) neurotransmitter systems in the schizophrenic brain. In order to further elucidate the alterations of this system in schizophrenia, we employed immunohistochemical techniques and examined the expression and anatomical distribution of the GABA(B) receptor in the hippocampus of five subjects with schizophrenia and three age-matched controls. In the control hippocampus, the most intense immunoreactivity was observed in the soma and processes of multipolar interneurons throughout the hippocampus. Pyramidal cells too were intensely labeled in their soma and proximal portion of dendrites, although the labeling intensity was varied in each subregion. For example, in the CA1 subfield, the labeling intensity of pyramidal cells was much less intense than that in the CA3 and CA2 subfields. In the subjects with schizophrenia, GABA(B) immunoreactivity was markedly reduced in granule cells as well as in pyramidal cells throughout the CA fields. In interneurons, GABA(B) labeling was relatively preserved compared to that in pyramidal cells. Our findings suggest that in the hippocampus of schizophrenic patients the expression of the GABA(B) receptor is reduced, and raise the possibility that this reduction contributes to the pathophysiological process in the schizophrenic brain.

Dentate Gyrus↗

The distribution of neuropeptide Y and brain-derived neurotrophic factor immunoreactivity in hippocampal formation of the monkey and rat.

The distribution of neuropeptide Y (NPY) and Brain-Derived Neurotrophic Factor (BDNF) in the hippocampal formation of monkey and rat brains was studied immunohistochemically. The NPY-neuronal system is more highly developed in the monkey compared to that in the rat. The distribution of NPY-positive products was coincident with that of abundant BDNF-positive deposits. These observations suggest that the role of BDNF and the interaction of BDNF-NPY may differ between species.

Animals↗

Morphological changes in neuropeptide Y-positive fiber in the hippocampal formation of schizophrenics.

1. The authors observed NPY-positive fibers in the CA4 area of the hippocampus from schizophrenics and normal controls using immunohistochemical techniques. 2. Positive fibers followed a straight course and were oriented to exit the CA4 region of hippocampus in normal controls. 3. Many NPY-positive fibers in the CA4 area appeared coiled or helix-like or appeared wasted and thread-like in schizophrenic brains, compared to those of normal controls. 4. These findings may indicate a dysfunction of the interneuron in the schizophrenic brain and support the hypothesis of developmental impairments of the CNS in schizophrenia, and these morphological changes in fibers may relate to schizophrenic symptoms such as memory or/and learning deterioration.

Aged↗

Argyrophilic glial inclusions in the midbrain of patients with Parkinson's disease and diffuse Lewy body disease are immunopositive for NACP/alpha-synuclein.

Argyrophilic glial inclusions occur in the midbrain of patients with Parkinson's disease (PD) and diffuse Lewy body disease (DLBD). These inclusions are immunohistochemically positive for NACP/alpha-synuclein but negative for tau protein. The results of the present study suggest that a primary degenerative process involves NACP/alpha-synuclein in PD and DLBD and that the process takes place not only in neurons but also in glial cells. Argyrophilic cytoplasmic inclusions, both glial and neuronal, in a variety of degenerative diseases may be grouped into two major categories; one related to aggregates of abnormally phosphorylated tau protein and the other to unusual accumulations of NACP/alpha-synuclein.

Aged↗

A high incidence of apolipoprotein E epsilon4 allele in middle-aged non-demented subjects with cerebral amyloid beta protein deposits.

We examined the apolipoprotein E (ApoE) genotypes of 19 middle-aged non-demented subjects with cerebral amyloid beta protein (Abeta) deposits, and compared the results with those of 16 patients with sporadic Alzheimer's disease (AD) and those of 34 age-matched controls. The frequency of the ApoE epsilon4 allele was higher (P = 0.0256) in these 19 subjects (0.211) than in controls (0.059), and was close to that in AD patients (0.281). This result suggests that middle-aged non-demented subjects with cerebral Abeta deposits are at high risk of developing AD, and that the diffuse Abeta deposits in these cases represent an early stage of AD pathology. We speculate that in the majority of late-onset sporadic AD patients, cerebral Abeta deposition commences when these patients are in their forties or fifties, and that the pathological process progresses gradually, taking 20 to 30 years for clinical manifestation of dementia.

Adult↗

Sporadic amyotrophic lateral sclerosis with multiple system degeneration: a report of an autopsy case without respirator administration.

This report concerns an autopsy case of amyotrophic lateral sclerosis (ALS) with unusual clinical and neuropathological findings. The patient was a Japanese man without hereditary burden who was 49 years old at the time of death. His clinical manifestation included dysarthria at age 48, followed by dysphagia, atrophy and fasciculation of the tongue, muscle weakness in the four extremities, tremor, rigidity, increased deep tendon reflexes in the upper and lower extremities, and incoordination of the four extremities. He died of respiratory failure 12 months after the disease onset. No respirator administration was performed throughout the clinical course. The neuropathological examination revealed not only degeneration of upper and lower motor neuron systems, including the presence of Bunina bodies and ubiquitin-immunoreactive neuronal inclusions in the lower motor neurons, but also prominent degeneration of the substantia nigra and dentate nucleus with slight neuronal loss in the locus ceruleus and pontine nucleus. To our knowledge, this is the first reported case of sporadic ALS without dementia and respirator support, showing degeneration of the substantia nigra and dentate nucleus. This report may contribute to the resolution of the question concerning the neuropathological heterogeneity of sporadic ALS with respiratory support.

Amyotrophic Lateral Sclerosis↗

Calbindin immunoreactivity in the hippocampal formation and neocortex of schizophrenics.

1. The authors studied the morphology of CalbindinD28K (CaBp) immunoreactive cells and processes in the hippocampal formation and the prefrontal cortex of schizophrenics using the immunohistochemical technique of avidin-biotin-complex method (ABC method), and the results were compared with those from normal human brains. 2. In the hippocampal formation area CA2 of schizophrenics, many CaBp-immunopositive cell bodies and fibers were disordered in their arrangement compared to normal control brains. 3. In the prefrontal cortex (Brodmann area 9) of schizophrenics, many immunopositive cell bodies were exhibited irregular axis arrangement and fiber disarray. 4. The altered distribution pattern of CaBp-immunopositive structures in the hippocampal formation and the prefrontal cortex might indicate the existence of GABA(gamma-aminobutyric acid)ergic dysfunction in the brain of schizophrenic patients.

Aged↗

Alz-50/Gallyas-positive lysosome-like intraneuronal granules in Alzheimer's disease and control brains.

The Gallyas-Braak silver impregnation method revealed neurons containing well-defined intraneuronal granules in both Alzheimer's disease and normal control brains. The granules were immunostained prominently with the Alz-50 antibody and, to a lesser degree, with the tau-2 antibody, but not with other anti-tau antibodies examined. The areas of distribution of granule-containing neurons detected by the Gallyas-Braak method appeared to overlap with the reported main sites of subcortical distribution of neurofibrillary tangles. They, however, were not observed in the cerebral cortex, including the hippocampal region. The Alz-50 immunoreactive granules showed ultrastructural features similar to those of lysosomes or lipofuscin. These findings suggest that denatured tau might be degraded in lysosomes.

Aged↗

Autopsy study of Alzheimer's disease brain pathology in schizophrenia.

The brains of 125 schizophrenic patients (DSM-IV criteria) without other major diseases likely to affect brain morphology were examined at autopsy in our hospital for an evaluation of the number of neurofibrillary tangles (NFT) and senile plaques (SP) as indicators of the incidence of Alzheimer's disease (AD) brain pathology. The clinical degree of dementia and the presence or absence of delirium and Parkinsonism were determined in a review of the patients' charts. No significant difference in the degree of AD brain pathology between the 12 schizophrenics more than 75 years old and 12 age-matched normal controls was present. We conclude that AD pathology seems to be no more frequent among schizophrenic patients than in the normal population, and that the severe cognitive impairment observed in schizophrenics is based on neither neuronal degeneration nor neuronal loss like that occurring in AD. We believe that future morphological studies of cognitive impairments in schizophrenics will require a more detailed investigation at the receptor level.

Adult↗

P3a of event-related potential in chronic methamphetamine dependence.

To investigate the psychophysiological features of methamphetamine (MAP) dependence, we recorded auditory event-related potentials (ERPs) in 15 patients with MAP dependence and in 15 age-matched normal controls. ERPs were recorded during a standard oddball task and a read task similar to those employed by Squires et al. (Squires NK, Squires KC, Hillyard SA [1975] Two varieties of long-latency positive waves evoked by unpredictable auditory stimuli in man. Electroenceph Clin Neurophysiol 38:387-401). The patients with MAP dependence showed reduced P3a amplitude and area in the read task and delayed P3b latency with normal P3b amplitude and area in the oddball task. These results suggest that central noradrenergic dysregulation may persist after the remission of acute psychotic symptoms in MAP psychosis and that chronic MAP dependence would produce impairment of the frontal cortex.

Acoustic Stimulation↗