PubMed Health⌕ Search

Biomedical subjects

T Mito

Publications and source records attributed to T Mito.

At least 55 records · Page 3Linked to original sources

[Neuropathology of peroxisomal disorders; Zellweger syndrome and neonatal adrenoleukodystrophy].

Neuropathology of peroxisomal disorders showed polymicrogyria in the cerebral and cerebellar cortices, neuronal heterotopia in the cerebral white matter, dysplasia of the inferior olivary nucleus and subependymal cyst in 6 cases of Zellweger syndrome (ZS), and diffuse loss of myelin sheath and mild polymicrogyria in a case of neonatal adrenoleukodystrophy. Developmental immunohistochemistry of catalase, acyl-CoA oxidase and ketoacyl-CoA thiolase revealed that positive reaction appears with neuronal and glial maturation. Diffuse dysmyelination may be related to maldevelopment of oligodendroglia, and migration disorder to abnormality of endothelial cells or radial glia, because both cells were positively stained in fetuses of 20 weeks of gestation and endothelial cells were rarely stained in ZS.

Acyl-CoA Oxidase↗

The effects of prostaglandin E1 and nicardipine on cerebral blood flow, blood volume and oxygenation in young rabbits.

The effects of the vasodilators, prostaglandin E1 and nicardipine, on cerebral blood flow (CBF), cerebral blood volume and oxygenation were studied in young rabbits of 2 weeks of age using the hydrogen clearance method and near infrared spectrophotometry. Prostaglandin E1 decreased CBF in the cerebral cortex. However, cerebral oxygenation through oxyhemoglobin and cytochrome a, a3 was not affected by the drug. On the other hand, nicardipine increased CBF in the cerebral white matter and diencephalon in spite of the fall in blood pressure and the decreased cerebral blood volume due to deoxyhemoglobin. Oxidized cytochrome a, a3 variably increased. These results suggest that nicardipine, a calcium channel antagonist, may cause dilation of cerebral arterioles, increase CBF and cellular oxidation, and cause constriction of cerebral veins, in contrast to the little effect of prostaglandin E1 on cerebral vessels.

Alprostadil↗

Growth and development of the brain in Down syndrome.

The brain of a child with Down syndrome develops differently from a normal one, attaining a form reduced in size and altered in configuration. Directly related to the mental retardation are neuronal modifications manifest as alterations of cortical lamination, reduced dendritic ramifications, and diminished synaptic formation. However, selected cholinergic marker enzymes such as choline acetyl transferase and acetyl cholinesterase have shown no alterations in young children with Down syndrome. The pace of the neuronal transformations is related to stage of maturation. With early growth and development, the normal dendritic tree continuously expands. In Down syndrome, at 4 months of age, the neurons show a relatively expanded dendritic tree, but during the first year the dendrites stop growing and become atrophic relative to control neurons. Accompanying these neuronal irregularities are subtle alterations of other cell types: astrocyte, oligodendrogliocyte, microglia, and endothelial cell. In early infancy, one of the astrocytic markers, GFAP, is not altered, but there is greater expression of S-100 protein in the temporal lobe in Down syndrome. Oligodendrogliocyte dysfunction is reflected in delayed myelination in pathways of frontal and temporal lobes. Microglia appear more prominent in Down syndrome. A minority of children with Down syndrome have vascular dysplasias and focal calcification of basal ganglia. In young children, expression of beta-amyloid in Down syndrome is no different than in normal children but disappears after age two, only to reappear in adults. As some of these studies suggest, the identification of genes on chromosome 21 and the determination of the gene product allow the production of specific antibodies and, through immunohistochemical techniques, the identification of the expression of these proteins in both normal development and Down syndrome. Specifically, the localization and appearance in development of proteins such as the beta-subunit of S-100, beta-amyloid (A4 protein), superoxide dismutase, and OK-2 are providing the means for better understanding the morphogenesis of the cellular and eventually molecular basis for the mental retardation in Down syndrome.

Acetylcholinesterase↗

Developmental immunohistochemistry of membrane proteins in the brain coded by a gene on human chromosome 21.

A monoclonal antibody, OK-2, against membrane proteins coded by a gene on chromosome 21 was obtained using hamster/human hybrid cells as an antigen, and used for a developmental study on the brains of Down's syndrome (DS) cases. The membrane proteins recognized by OK-2 were expressed earlier in neurons and vessels of DS brains than in normal brains, the difference being more marked in the temporal lobe than in the frontal lobe. This over-expression of the membrane proteins in DS brains, especially in the temporal lobe, may be related to the pathogenesis of or predisposition to Alzheimer type dementia in elderly DS cases.

Adult↗

Response of Müller cells following experimental lensectomy-vitrectomy.

We used morphological, biochemical and immunohistochemical methods to assess the response of Müller cells after experimental lensectomy-vitrectomy in rabbits. We observed widened intercellular spaces between the Müller cells and nerve fibers of ganglion cells, and increased electron opacity in the Müller cells of eyes injected with silicone oil. No apparent morphological changes were detected in the Müller cells of air-injected eyes. The specific and total activities of Müller cell-marker enzymes (glucose 6-phosphatase and glutamine synthetase) showed an initial increase, followed by a decrease. Glial fibrillary acidic protein immunoreactivity was not found in the Müller cells of the normal rabbit retina but was exhibited after surgery. Our results showed that markers of Müller cells associated with glycogenolysis and/or gluconeogenesis, glutamate-glutamine cycle and cytoskeletal protein metabolism were affected by the experimental lensectomy-vitrectomy.

Air↗

Developmental and aging changes in the expression patterns of beta-amyloid in the brains of normal and Down syndrome cases.

Immunohistochemical staining with polyclonal antibodies to synthetic amyloid (residues 1-28 of A4) was performed on normal and Down syndrome brains from fetuses to adults. Positive staining appeared in the cytoplasmic processes of astrocytes in the subpial layer and white matter of developing brains, and reappeared in astrocytic fibers of the subpial layer as well as in cerebrovascular and plaque core amyloid in elderly brains. The reappearance of positively stained astrocytes and amyloid occurred earlier in adult Down syndrome patients. The results indicate that the A4 protein is a developmental protein, and its reappearance in Alzheimer and adult Down syndrome brains may be related to the regeneration process.

Adolescent↗

Response on near-infrared spectroscopy and of cerebral blood flow to hypoxemia induced by N2 and CO2 in young rabbits.

Cerebral blood oxyhemoglobin (HbO2), deoxyhemoglobin (HbR) and total hemoglobin (Hb) were examined in N2 and CO2 induced hypoxemia by near-infrared spectroscopy and compared with CBF examined by the H2 clearance method. HbO2 and HbR changed more sensitively than total Hb, reflecting the blood volume. Low CO2-loading showed marked increase in CBF with little change of blood volume, and higher CO2-induced hypoxemia was less increased and followed by a crossed after-reaction, probably because of persistent arterial dilatation due to the marked hypercarbia and acidosis. Neck venous compression showed a specific pattern of increased total Hb and HbR with little change in CBF. Thus, for near-infrared spectroscopy the intracranial blood volume may be affected mainly by arterial dilatation with an increase in CBF and venous dilatation with congestion. And Hb fractions of HbO2 and HbR may be influenced by cerebral blood oxygenation as well as the arteriovenous blood volume.

Animals↗

Immunohistochemistry of superoxide dismutase-1 in developing human brain.

The developmental changes in superoxide dismutase (SOD)-1 were studied in brains ranging in age from human fetuses to adults by immunohistochemistry. SOD-positive neurons and glial cells appeared with maturation in each region, and increased progressively with gestational and postnatal age. This phenomenon implies a relationship between SOD-1 gene expression and the anti-oxidant defence mechanism in developing neurons and glia.

Adult↗

Dendritic development of motor neurons in the cervical anterior horn and hypoglossal nucleus of normal infants and victims of sudden infant death syndrome.

Morphometric Golgi methods were used to study dendritic development of neurons in the cervical ventral and dorsal horns and the hypoglossal nucleus of 8 victims of sudden infant death syndrome and 20 age-matched control infants. The dendrites and spines of these neurons proliferated rapidly until 28 weeks gestation, then increased slowly until shortly after birth. Dendritic spine density of motor neurons in the cervical anterior horn and hypoglossal nucleus of victims of sudden infant death syndrome was similar to that of the controls. Thus, the delayed maturation of dendritic spines seen in the reticular formation and vagal nuclei is not present in motor neurons of the cervical anterior horn and hypoglossal nucleus.

Dendrites↗

The effect of oral metyrapone on aqueous humor dynamics in normal human eyes.

We studied the possible influence of oral metyrapone tartrate (which inhibits the adrenal biosynthesis of cortisol) on the rate of aqueous humor flow in 9 eyes of 8 normal subjects by fluorophotometry. On the control day, the mean value of Ko was 1.04 +/- 0.32 min-1 x 10(-2), where Ko was the loss coefficient from the anterior chamber. On the metyrapone trial day, the mean value of Ko was 0.63 +/- 0.15 min-1 x 10(-2). The mean difference in Ko between the two periods was significant (P less than 0.005). These results indicated that systemic metyrapone administration decreases the rate of aqueous humor flow.

Administration, Oral↗

[Neurological and pathophysiological analyses of patients with absent auditory brainstem evoked response].

Seventeen patients with no auditory brainstem evoked response (ABR) who suffered from various neurological disorders were reported. We evaluated the possibilities of co-existent brainstem lesions in addition to the peripheral impairment in the auditory pathway, by assessing neurological findings and other laboratory examinations, including cranial CT and electrically elicited blink reflex. Patients who showed cranial nerve symptoms other than that of the acoustic nerve or abnormal postural reflexes were suspected to have brainstem dysfunction. It was difficult, however, to exclude the influence from the dysfunction in the more central level CNS. Definite brainstem atrophy was revealed radiologically only in one case who was at the end stage of the degenerative disease. Blink reflex was studied in eleven cases, four of whom revealed abnormal responses, also suggesting brainstem dysfunction. All the five cases, consistent with these abnormal laboratory findings, had shown severe delay in motor development. Other five patients who showed rather good auditory behavior were considered to have 'desynchronization' response to ABR in the auditory pathway at the peripheral level. Many pathophysiological conditions may be involved in the phenomenon of absent ABR, which should be carefully evaluated from the viewpoints of clinical neurology.

Blinking↗

Immunocytochemical localization of ornithine aminotransferase in human ocular tissues.

Gyrate atrophy of the choroid and retina is a rare inherited form chorioretinal degeneration caused by a deficiency of ornithine aminotransferase. We localized the enzyme in human ocular tissues using immunocytochemical procedures. Immunoreactivity was observed in the nonpigmented epithelium of the ciliary body and lens epithelium. In the retina, ganglion cells and some amacrine cells were immunoreactive. Pigmented granules made it difficult to identify immunoreactive products in the iris, pigmented epithelium of the ciliary body, choroid, and retinal pigment epithelium. Our findings suggested that ornithine aminotransferase plays an important role in ornithine metabolism in these oculartissues.

Eye↗

A pathological study of a peripheral nerve in a case of neonatal adrenoleukodystrophy.

The pathological findings for a sural nerve biopsy specimen in a case of neonatal adrenoleukodystrophy are described. The density and total number of myelinated fibers in the patient showed no significant changes compared with controls. On electric microscopy, however, thickness of the myelin was smaller in the patient than in controls. Some linear or trilamellar inclusion bodies were found in Schwann cells and fibroblasts, similar to those found in X-linked adrenoleukodystrophy. Büngner's bands were also seen on electron microscopy, and myelin ovoids and balls were seen in teased fibers. These results show that a sural nerve biopsy is useful for the diagnosis of neonatal adrenoleukodystrophy. We suspect that axonal or neuronal degeneration occurs with changes in myelin in neonatal adrenoleukodystrophy.

Adrenoleukodystrophy↗

Relationship between periventricular hemorrhage, leukomalacia and brainstem lesions in prematurely born infants.

The brain pathology in very prematurely born infants with intraventricular hemorrhage (IVH) was studied particularly as to the severity and site of the complicated brain lesions responsible for the prognosis. A high frequency of leukomalacia, pontosubicular necrosis and/or olivocerebellar neuronal loss was found in the cases of IVH, and these non-hemorrhagic brain lesions showed an increasing frequency with the grade of IVH. However, there was marked reduction of IVH, periventricular leukomalacia and, in particular, brainstem lesions in prematurely born cases of sudden infant death. These IVH and associated conditions have different pathogenesis, but factors responsible for their occurrence may be present together in each case.

Abnormalities, Multiple↗

Ultrasonographical and morphological examination of subependymal cystic lesions in maturely born infants.

The clinical data and development of 8 cases with subependymal cysts detected on neurosonography in the neonatal period were studied, and the prognosis was found to vary. Also, clinico-pathological examination of 15 autopsied cases of congenital subependymal cysts (SEC) was performed, with immunohistochemical staining involving neuron-specific enolase in three cases, which revealed that congenital SEC are often complicated by various degrees of brain and heart anomalies, and suggested that SEC might occur in a wide gestational age range, with various causes. Therefore, it is important in the future to determine the agents which cause destruction of the subependymal germinal matrix.

Brain Diseases↗

Clinical, biochemical and ultrastructural study on the pathogenesis of hyperornithinemia-hyperammonemia-homocitrullinuria syndrome.

A 10-year-old boy with the hyperornithinemia, hyperammonemia and homocitrullinuria (HHH) syndrome is described. With dietary restriction of protein intake and supplementary administration of L-ornithine and L-arginine, the high concentration of ammonia decreased and the clinical signs of truncal ataxia and lethargy improved. A deficiency of ornithine transport into liver mitochondria was demonstrated biochemically, and glycogen granules and smooth surface endoplasmic reticulum were increased, but mitochondria showed normal construction ultrastructurally. Cranial computed tomography (CT) showed diffuse white matter low density and cerebellar vermis atrophy. The impairment of ornithine transport and energy production in the central nervous system may be related to the cranial CT findings and neurological signs.

Amino Acid Metabolism, Inborn Errors↗

Endotoxin, cerebral blood flow, amino acids and brain damage in young rabbits.

The effects of bacterial endotoxin (lipopolysaccharide; LPS) on the cerebral blood flow (CBF), amino acid levels and brain histology were studied in young rabbits. The CBF was slightly decreased in the cerebral cortex and markedly decreased in the cerebral white matter at 60 and 120 min after LPS administration. Histological examination revealed only slightly pyknotic neurons around small vessels at 24 hours, and multifocal necrosis in the deep cerebral cortex and white matter at 72 hours. Some amino acids were increased in the plasma and brain regions at 24 hours after LPS administration, most of which were essential amino acids. GABA in the cerebral white matter was decreased at 24 hours. At 72 hours, most non-essential and glucogenic amino acids were decreased. These results suggest that the brain histological changes are related mainly to hypoperfusion and vascular damage in the brain. The amino acid changes may also be related to inappropriate amino acid metabolism associated with brain cell damage.

Amino Acids↗