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E Ohama

Publications and source records attributed to E Ohama.

At least 37 records · Page 2Linked to original sources

New consensus research on neuropathological aspects of familial amyotrophic lateral sclerosis with superoxide dismutase 1 (SOD1) gene mutations: inclusions containing SOD1 in neurons and astrocytes.

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease that primarily involves the motor neuron system. Approximately 5-10% of ALS is familial. Superoxide dismutase 1 (SOD1) gene mutations are shown to be associated with about 20% of familial ALS (FALS) patients. The neuronal Lewy-body-like hyaline inclusion (LBHI) and astrocytic hyaline inclusion (Ast-HI) are morphological hallmarks of certain SOD1-linked FALS patients with SOD1 gene mutant and transgenic mice expressing human SOD1 with G85R mutation. From the detailed immunohistochemical analyses, the essential common protein of both inclusions is SOD1. Ultrastructurally, both inclusions consist of granule-coated fibrils 15-25 nm in diameter. Based on the immuno-electron microscopical finding that these abnormal granule-coated fibrils are positive for SOD1, the formation (or aggregation) of the abnormal fibrils containing SOD1 would be essential evidence in diseases caused by various SOD1 mutations. The granule-coated fibrils are also modified by advanced glycation end products (AGEs). The AGEs themselves are insoluble molecules with direct toxic effects on cells. AGE formation of SOD1 composing the granule-coated fibrils (probable AGE-modified mutant SOD1) may amplify their aggregation and produce a more marked toxicity.

Amyotrophic Lateral Sclerosis↗

Postischemic reperfusion in the eyes of young and aged rats.

The hemodynamic changes during postischemic reperfusion were investigated in the eyes of young (4 months) and aged (more than 18 months) rats using laser Doppler flowmetry, and histological changes in the retina were examined 6 h after the cessation of ischemia. During exposure to 80 mmHg of intraocular pressure, choroidal blood flow (ChBF) decreased to 40-50% of the baseline value. Marked hyperperfusion (186 +/- 9%) was observed 1 min after cessation of 30-min ischemia in young rats. The hyperperfusion was less (111 +/- 3%) after 120-min ischemia. Delayed hypoperfusion was not observed during 6 h of reperfusion after 120-min ischemia. In aged rats, the hyperperfusion after 30-min ischemia was less (130 +/- 17%) than that in young rats, and the ChBF decreased to 80% of the baseline value during 6 h of reperfusion after 120-min ischemia. Histological examination of the retina showed that exposure to 120-min ischemia caused microvacuolation in the inner and outer plexiform layers and vacuolar changes in the cytoplasms in the inner nuclear layer of both young and aged rats, suggesting edema formation in the retina. The thickness of the outer layers of the retina tended to increase after 120-min ischemia in young rats, whereas it decreased significantly in aged rats. These results suggest that 120-min ischemia with 40-50% of normal choroidal blood flow causes more severe damage than 30-min ischemia, and that the hemodynamic changes during reperfusion in aged rats are different from those in young rats.

Aging↗

Does edema formation occur in the rabbit brain exposed to head-down tilt?

Earlier studies showed that exposure to microgravity caused cephalad fluid shift, increased capillary pressure in the head, and produced facial edema and nasal congestion. In the present study, edema formation in the brain was investigated in rabbits exposed to simulated microgravity, head-down tilt (HDT), by measuring water content and histological examinations. Water content in the brain tissues of rabbits exposed to 2 and 8 days of HDT did not increase significantly compared with that of control animals. Neither vital staining using Evans blue nor immunohistochemical examination demonstrated extravasation of plasma constituents in the brain tissues of the HDT rabbits. Although marked congestion was noted in the brain, hematoxylin and eosin staining did not show edematous changes, such as distension of the perivascular and pericellular spaces and vacuolar appearance, in the tissues obtained from HDT rabbits. Transmission electron microscopy revealed that tight junctions of the capillary endothelium were intact in the HDT rabbits. These results suggest that either HDT up to 8 days does not cause brain edema in rabbits or it induces only a slight brain edema which is hard to be demonstrated by measurement of water content or histological examinations.

Animals↗

[Lens epithelial cell damage and apoptosis in atopic cataract--histopathological and immunohistochemical studies].

PURPOSE: To elucidate the relationship between damage of lens epithelial cells and apoptotic cell death in patients with atopic cataract. METHODS: Histopathological and immunohistochemical studies were carried out using anterior lens capsules obtained at surgery from 13 patients with atopic cataract and from 25 patients with senile cataract. RESULTS: No specific histopathological findings were found in the lens epithelial cells in atopic cases. However, the frequency and severity of histopathological findings such as flattening, nuclear pyknosis, and loss of cells were more frequent and more severe in atopic cases than in senile cases. The terminal deoxynucleotidyl transferase (TdT)-mediated dUTP-biotin nick end labelling (TUNEL) method revealed that the mean ratio of cells containing fragmented DNA to whole epithelial cells was almost the same in both atopic and senile cases. However, the mean ratio of Bax-positive cells was significantly higher in atopic cases (mean +/- standard deviation, 29.1 +/- 35.0%) than in senile cases (2.7 +/- 7.0%) (p < 0.05). The mean ratio of Bcl-2-positive cells was significantly lower in atopic cases (1.4 +/- 3.4%) than in senile cases (44.3 +/- 35.7%) (p < 0.05). CONCLUSION: These results suggest that apoptotic cell death may play an important role in the development of lens epithelial cell damage in atopic cataract.

Adult↗

[An autopsied case of progressive spinal muscular atrophy showing tremor and choreiform movement].

A 42-year-old man without family history of neurologic disease developed muscle weakness, and wasting associated with tremor and choreiform movement. He died at age 75 with 33 years of total duration of illness. Autopsy revealed neuronal loss and gliosis in the anterior horns of the spinal cord, hypoglossal nuclei, caudate nuclei, putamen, globus pallidus, and substantia nigra. Bunina bodies or Lewy bodies were not seen. Several similar cases with motor neuron disease, dementia and parkinsonism have been reported in the literature. However, this pattern of chronic spinal neostriato-pallido-nigral degeneration has not been reported.

Aged↗

Effects of kainate-mediated excitotoxicity on the expression of rat counterparts of A170 and MSP23 stress proteins in the brain.

Stress proteins play important roles in the protective mechanisms under critical conditions for cell survival. We report here the expression of A170 and MSP23, oxidative stress-inducible proteins, under kainate-mediated excitotoxicity in the rat brain. A170 mRNA was significantly induced in the brain 5-8 h after i.p. kainate administration. MSP23 mRNA was observed at quite a low level in the rat brain, and the induction of MSP23 mRNA was not observed during the period 24 h after kainate administration. Immunoblot analysis demonstrated that the maximal expression level of A170 protein occurred 8 h after treatment in each part of the brain. MSP23 protein was constitutively expressed in the brain and the level of this protein was significantly decreased during the period 24 h after kainate administration. In situ hybridization and immunohistochemical studies showed that A170 was expressed predominantly in neurons, especially in pyramidal neurons of the cerebrum and cerebellar Purkinje cells, while MSP23 was expressed in oligodendrocytes. The induction of A170 was observed in the regions which are affected by excitotoxicity and this induction was observed in the earlier phase than cell death. Also, the region which shows high vulnerability to excitotoxicity such as pyramidal cell layer in the hippocampus, showed lower A170 expression than that which shows resistance to excitotoxicity, such as the dentate gyrus in the hippocampus. These results suggest that A170 may play a protective role in the brain under kainate-mediated excitotoxicity.

Animals↗

Induction of heme oxygenase-1 in the rat brain by kainic acid-mediated excitotoxicity: the dissociation of mRNA and protein expression in hippocampus.

Heme oxygenase-1 (HO-1) is induced under various stresses. Here we report the induction and localization of HO-1 in the rat brain by intraperitoneal administration of kainic acid (KA). Both mRNA and protein of HO-1 were markedly induced by KA treatment, and each maximal induction was observed 24 h after KA administration. In situ hybridization analysis showed that HO-1 mRNA appeared predominantly in glial cells, and confined neurons were positive in the cerebral cortex, basal ganglia, and hippocampal pyramidal cell layer. Immunohistochemical analysis showed that the positive cells in the cerebral cortex and hippocampus were mainly astrocytes and microglia, whereas neurons in the basal ganglia showed intense immunoreactivity. We also demonstrate the dissociation between HO-1 mRNA and protein level in the hippocampal pyramidal neurons, which is known to be vulnerable against excitotoxicity, and discuss the correlation between this dissociation and the vulnerability of hippocampal pyramidal neurons.

Animals↗

Astrocytic hyaline inclusions contain advanced glycation endproducts in familial amyotrophic lateral sclerosis with superoxide dismutase 1 gene mutation: immunohistochemical and immunoelectron microscopical analyses.

To clarify the neuropathological significance of the deposition of N(epsilon)-carboxymethyl lysine (CML), an advanced glycation endproduct, in astrocytic hyaline inclusions in familial amyotrophic lateral sclerosis (FALS), autopsy specimens from five members of two different families who had the superoxide dismutase 1 (SOD1) gene mutations were analysed. Immunohistochemically, most of the neuronal and astrocytic hyaline inclusions were intensely stained by the antibody against CML. The distributions and intensities of the immunoreactivities for CML and SOD1 were similar in the inclusions in both cell types. Immunoelectron microscopy showed that both inclusions consisted of CML-positive granule-coated fibrils and granular materials. No significant CML or SOD1 immunoreactivity was observed in the neurons and astrocytes of the normal control subjects. Our results suggest that astrocytic hyaline inclusions contain CML and SOD1 in FALS patients with SOD1 gene mutations, and that the formation of CML-modified protein (probably CML-modified SOD1) is related to the cell degeneration.

Adult↗

Development of Purkinje cells in humans: an immunohistochemical study using a monoclonal antibody against the inositol 1,4,5-triphosphate type 1 receptor (IP3R1).

Immunohistochemical analyses were carried out on the Purkinje cells from 21 autopsied fetal and early postnatal normal cerebella using a monoclonal antibody against the inositol 1, 4, 5-triphosphate type 1 receptor (IP3R1) as a cytochemical marker of Purkinje cells. In normal adult cerebella used as positive controls, the cell bodies, axons, and dendrites, including spiny branchlets of the Purkinje cells, were specifically stained by the antibody. In the fetal cerebella examined, the IP3R1 immunoreactivity was first detected in the soma of multilayered cells just beneath the molecular layer at 16 weeks of gestation. The IP3R1 immunoreactivity gradually increased in area of positive staining from soma to dendrites and spiny branchlets, and the dendritic outgrowth rapidly progressed during 6 months after birth. The Purkinje cell maturation was more advanced in the vermis than in the hemisphere, more in the posterior lobe than in the anterior lobe, and more at the bottom of the folia than at the top. Partial absence of the Purkinje cells in the cerebellar cortex was observed in three cases. Heterotopias including Purkinje cells were often noted in the cerebellar white matter in five cases.

Antibodies, Monoclonal↗

Dopamine receptor upregulation in Lesch-Nyhan syndrome: a postmortem study.

The brains of two patients with Lesch-Nyhan syndrome (LNS) were studied. The concentration of dopamine was decreased in the caudate nucleus of LNS patients. Immunohistochemical methods revealed that the dopamine (DA) D1 and D2 receptor and methionine-enkephalin immunoreactivities (IRs) were increased in the putamen, and less significantly in the caudate nucleus. The D1 and D2 receptor IRs of the cingulate cortex, the tryptophan-hydroxylase IR in the dorsal nucleus of the midbrain, as well as the substance P and methionine-enkephalin IRs of the nociception-conducting structures, including the periaqueductal gray and spinal trigeminal nucleus, were not changed. Tyrosine-hydroxylase IR was not decreased in the substantia nigra of the LNS patients. Therefore, the cause of the decreased dopaminergic activity in LNS may not be involved in the production of tyrosine hydroxylase in the substantia nigra. Developmental abnormalities due to the DA defect at an early age might exist in the postsynaptic structure in the striatum.

Adolescent↗

Monoclonal antibody to human midkine reveals increased midkine expression in human brain tumors.

We produced a rat IgG2a monoclonal antibody against the carboxyl terminal region of human midkine (MK), a novel growth factor. This monoclonal antibody was used in immunohistochemical studies to compare the expression of MK, proliferating cell nuclear antigen (PCNA) and p53 protein in 133 primary brain tumors and 21 carcinoma metastases to the central nervous system. Approximately half of the glioblastomas multiforme (GBMs) (19/32), medulloblastomas (8/14), primitive neuroectodermal tumors (PNETs) (5/11), breast carcinoma metastases (Br-Mts) (6/10) and lung carcinoma metastases (L-Mts) (5/11) as well as some astrocytomas (2/14) had tumor cells that expressed MK; however, oligodendrogliomas, ependymomas, schwannomas, meningiomas, and pituitary adenomas did not express MK. The values of the PCNA-labeling index were statistically higher in GBMs, medulloblastomas, PNETs, Br-Mts, and L-Mts that expressed MK than in those that did not (Wilcoxon rank-sum test, p < 0.05). There was no correlation between MK and p53 protein in all tumor types. Normal and non-neoplastic brain tissues were negative for MK, PCNA, and p53 protein. We conclude that primary and metastatic tumors of the brain express MK and that the MK expression in brain tumors may depend, in part, on the proliferating potential.

Animals↗

Oligodendroglial vacuolar degeneration in the bilateral motor cortices and astrocytosis in epileptic beagle dogs.

We performed a pathologic examination of the brains of three dogs in an epileptic beagle colony. Histologically, all the cases had diffuse astrocytosis in the cerebral cortex and basal ganglia as well as the hippocampus, whereas they showed acute nerve cell change in the hippocampus and some other areas of the cerebrum. One of these animals showed laminar myelin pallor associated with the presence of many vacuoles in the IV to VI layers of the bilateral motor cortices. Most of the vacuoles contained fine granules stained with luxol-fast-blue stain. Ultrastructural examination revealed that some oligodendrocytes and perineuronal satellite oligodendrocytes in the bilateral cerebral motor cortices of the two affected dogs had many vacuoles surrounded by myelin-like lamellar structures. These findings suggest a possibility that astrocytosis in the cerebrum and vacuolar degeneration of oligodendrocytes in the cerebral motor cortex may be, at least in part, related to the occurrence or development of seizures.

Animals↗

Recent advances in research on neuropathological aspects of familial amyotrophic lateral sclerosis with superoxide dismutase 1 gene mutations: neuronal Lewy body-like hyaline inclusions and astrocytic hyaline inclusions.

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease that primarily involves the motor neuron system. Of all patients with ALS, approximately 5%-10% of them are familial and most of the others are sporadic. Superoxide dismutase 1 (SOD1) gene mutations are shown to be associated with about 20% of familial ALS (FALS) patients. FALS is neuropathologically classified into two subtypes: classical FALS in which degeneration is restricted to only motor neurons and FALS which is characterized by the degeneration of the posterior column in addition to the lesion of the motor neuron system. The neuronal Lewy body-like hyaline inclusion (LBHI) is a characteristic neuropathological marker of mutant SOD1-linked FALS with posterior column involvement. Inclusions similar to the neuronal LBHIs have been discovered in astrocytes in certain patients with FALS exhibiting SOD1 gene mutations. The purpose of this review is to discuss the novel neuropathological significance of the astrocytic hyaline inclusions (Ast-HIs) and neuronal LBHIs in brain tissues from individuals with the posterior-column-involvement-type FALS with SOD1 gene mutations. In hematoxylin and eosin preparations, both Ast-HIs and neuronal LBHIs are eosinophilic inclusions and sometimes show eosinophilic cores with paler peripheral halos. Immunohistochemically, both inclusions are intensely positive for SOD1. At the ultrastructural level, both inclusions consist of approximately 15-25 nm-sized granule-coated fibrils and granular materials. Immunoelectron microscopically, these abnormal granule-coated fibrils and granular materials are positive for SOD1. Therefore, the FALS disease process originating from SOD1 gene mutations occurs in astrocytes as well as neurons and is involved in the formation of both inclusions.

Amyotrophic Lateral Sclerosis↗

Analysis of the CAG repeat number in a patient with Huntington's disease.

This study was performed to confirm 1) the difference in the trinucleotide CAG repeat number among tissues, 2) somatic mosaicism in each tissue, 3) the correlation of the repeat number with pathological severity in Huntington's disease. The CAG repeat number was determined by analysis of the polymerase chain reaction (PCR) product in various tissues, including central nervous system (CNS) tissues and non-CNS tissues. We also determined the pathological severity grade in each brain section and compared this with the results of CAG repeat analyses. The patient was a Japanese male with Huntington's disease who died at 62 years of age. Genomic DNA was extracted from 10 parts of the central nervous system and 6 parts of other tissues from the patient. Each part of the formalin-fixed brain was subjected to gross and microscopic pathological assessment. The main peaks of CAG repeat in all tissues were 22 and 44. In analysis of somatic mosaicism, high degrees of mosaicism were obtained in the caudate nucleus, putamen and cerebral cortex, in which more severe degeneration was observed by pathological examination. These results, although this is a single case study, indicated that pathological severity did not correlate with the CAG repeat number, but it did relate to the degree of somatic mosaicism. Somatic mosaicism might reflect region-specific neuronal degeneration in Huntington's disease.

Brain↗

Aggregation and motor neuron toxicity of an ALS-linked SOD1 mutant independent from wild-type SOD1.

Analysis of transgenic mice expressing familial amyotrophic lateral sclerosis (ALS)-linked mutations in the enzyme superoxide dismutase (SOD1) have shown that motor neuron death arises from a mutant-mediated toxic property or properties. In testing the disease mechanism, both elimination and elevation of wild-type SOD1 were found to have no effect on mutant-mediated disease, which demonstrates that the use of SOD mimetics is unlikely to be an effective therapy and raises the question of whether toxicity arises from superoxide-mediated oxidative stress. Aggregates containing SOD1 were common to disease caused by different mutants, implying that coaggregation of an unidentified essential component or components or aberrant catalysis by misfolded mutants underlies a portion of mutant-mediated toxicity.

Amyotrophic Lateral Sclerosis↗

Medulloblastoma in an adult suggestive of external granule cells as its origin: a histological and immunohistochemical study.

We describe a rare case of medulloblastoma in an adult woman with histological findings suggesting an origin for this neoplasm in the external granular layer or its remnants. The patient presented with cerebellar dysfunction, and neuroimaging revealed a right cerebellar mass lesion. Pathological examination of the operative specimen revealed a medulloblastoma with occasional areas of neuronal or glial differentiation. Zic protein was also detected immunohistochemically in the tumor cells. The tumor cells were mainly distributed in the subarachnoid space and extended to the cerebellar parenchyma through the perivascular space to form tumor nodules. A suggestive finding, as concerns the origin of this neoplasm, was that the tumor cells were also spread evenly along the subpial zone of the molecular layer, reminiscent of the cellular architecture of the fetal external granular layer.

Adult↗