The University of Osaka · Medicine
Professor Shigeo Murayama's research lab specializes in the neuropathology of neurodegenerative diseases, with a focus on the molecular and histological characterization of proteinopathies in aging and dementia. The lab investigates the distribution and staging of pathological proteins such as alpha-synuclein, tau, and TDP-43 in neurodegenerative conditions including dementia with Lewy bodies, limbic-predominant age-related TDP-43 encephalopathy (LATE), and Pick's disease. Using advanced immunohistochemical techniques and serial autopsy analyses, the lab has identified novel pathological forms such as Lewy threads, Lewy dots, and argyrophilic grains, contributing to refined staging systems for neurodegenerative progression. Their work emphasizes the link between age-related protein aggregation and clinical phenotypes, advancing early diagnosis and understanding of disease mechanisms.
Figures are computed from collected data and may differ slightly.
We have reported that the ambient gyrus is the site with the greatest accumulation of argyrophilic grains (AGs) and that the degeneration of the ambient gyrus is responsible for dementia with grains. Here we analyzed 1,405 serial autopsy cases from 2 hospitals and detected AGs only in cases older than 56 years of age. The distribution of AGs followed a stereotypic regional pattern. Thus, we propose the following staging paradigm: stage I: AGs restricted to the ambient gyrus and its vicinity; sta
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
To clarify the significance of Lewy body (LB)-related alpha-synucleinopathy in aging, we investigated the incidence of LBs in 1,241 consecutive autopsy cases (663 males and 578 females). LB pathology was identified histologically in sections stained with hematoxylin and eosin and with anti-ubiquitin and anti-alpha-synuclein antibodies. Cases without LBs were classified as LB stage 0 (987 cases). Cases with LBs were classified as follows: LB stage I = incidental LBs (149 cases); LB stage II = LB-
In conclusion, TDP-43 immunoreactive DNs may develop as a consequence of aging processes in the human brain. In particular, the uncus of the anterior hippocampus is an area highly susceptible to TDP-43 accumulation over age 65.
Cerebral cortical changes in 10 cases with Pick's disease were studied immunocytochemically and ultrastructurally. All cases contained Pick's argentophilic bodies and ballooned neurons. The antibodies against phosphorylated tau proteins that intensely stained all Pick bodies recognized numerous neuronal processes around Pick body-bearing cells and focal portions in the perikarya of ballooned neurons. Monoclonal and polyclonal anti-ubiquitin antibodies stained not only some Pick bodies with varia
Open papers in the app to read, cite, and organize with AI.