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Shunichi Koyama

Publications and source records attributed to Shunichi Koyama.

2 recordsLinked to original sources

Accumulation of phosphorylated alpha-synuclein in aging human brain.

Alpha-synuclein in Lewy bodies (LBs) is phosphorylated at Ser129. We raised monoclonal and polyclonal antibodies to this phosphorylation site (psyn) and examined 157 serial autopsy brains from a geriatric hospital. Anti-psyn immunoreactivity was observed in 40 of these cases (25.5%). Immunohistochemistry revealed 4 novel types of pathology: diffuse neuronal cytoplasmic staining (pre-LB); neuropil thread-like structures (Lewy threads); dot-like structures similar to argyrophilic grains (Lewy dots); and axons in the white matter (Lewy axons). This novel pathology was abundantly present around LBs and also involved the limbic subcortical white matter, the cerebral cortical molecular layer, and the spongiform changes of the medial temporal lobe associated with cases of dementia with LBs (DLB). The phosphorylated alpha-synuclein was limited to the temporal lobe in cases of Parkinson disease, spread from the temporal lobe to the frontal lobe in cases of DLB transitional form and further spread to the parietal and occipital lobes in DLB neocortical form. Our findings suggest that LB-related pathology initially involves the neuronal perikarya, dendrites, and axons, causes impairment of axonal transport and synaptic transmission, and later leads to the formation of LBs, a hallmark of functional disturbance long before neuronal cell death.

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[Marked decrease of intracranial atherosclerosis in contrast with unchanged coronary artery stenosis in Japan].

We conducted comparative studies on intracranial atherosclerosis and coronary artery stenosis over the past 28 years. Two-year consecutive autopsy case studies from an urban geriatric hospital between 1974-1975 (Group I. 484 cases). 1986-1987 (Group II, 504 cases) and 2000-2001 (Group III, 273 cases) were employed. Atherosclerotic changes of the bilateral middle cerebral arteries and basilar artery were semiquantitatively evaluated as none (0), mild (1), moderate (2) and severe (3) and values of the 3 arteries were totalled to give a value of 0-9 which was taken as the intracranial atherosclerotic index (ICAI). The coronary stenotic index was calculated as previously reported (Sugiura et al 1969). ICAI and CSI were directly compared with each other, together with risk factors for each, including mean blood pressure (BP), serum level of total cholesterol (Tch) and the history of diabetes mellitus (DM+). Chronologically ICAI decreased dramatically but CSI did not change at all. There was continuous lowering of BP, elevation of Tch and increased incidence of DM+. There was a significant positive correlation in BP in relation to both ICAI and CSI (p < 0.01). DM+ vs. CSI (p < 0.01) and ICAI (p < 0.05), and Tch vs. CSI (p < 0.01) but not ICAI. Regression analysis highlighted age and BP as major risk factors for ICAI. Our study provides the first morphological confirmation of marked decrease of the intracranial atherosclerosis in the recent 28 years, in contrast with unchanged coronary stenosis in Japanese elderly subjects.

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