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Biomedical subjects

M Torisu

Publications and source records attributed to M Torisu.

129 records · Page 8Linked to original sources

The role of disseminated intravascular coagulation in shock induced by transfusion of human blood in dogs.

Hemolytic blood transfusion reactions were produced in 20 dogs. Animals transfused with human blood twice in a two-week interval demonstrated a significant increase in anti-human red blood cell agglutination titer at the time of the second transfusion. Eighteen dogs that survived from the first transfusion reaction were divided into two groups with or without heparin treatment. The hemolytic transfusion reaction in the sensitized animals was characterized by shock and multiple coagulation abnormalities. Heparin failed to prevent shock, hemoglobinemia and thrombocytopenia, and decreased the mortality rate in heparinized animals. Pathologic examination revealed that the thrombi in the splanchnic organs were less common in the heparinized dogs.

Agglutination Tests↗

Differential expression of metallothioneins in human prion diseases.

We herein report an immunohistochemical and a Western blot analysis on metal/free radical chelating proteins, metallothioneins (MTs; MT-I/II and MT-III), in the brains of human prion disease patients with or without prion protein gene mutation and polymorphism. Irrespective of the isoforms of MTs, the immunoreaction was detected in the cytoplasm and processes of the astrocytes in the cerebral cortex and white matter in normal controls and prion disease brains. Although the immunoreactivities for MTs in Creutzfeldt-Jakob disease (CJD) brains varied from case to case, they were generally dependent upon the disease duration. In CJD patients with a relatively long disease course, the immunoreaction for both MT-I/II and MT-III in the astrocytes was significantly reduced, and this finding was not modified by the genotypes of the patients. On the other hand, in patients with Gerstmann-Sträussler-Scheinker syndrome, MT-I/II immunoreactivity in the astrocytes was exclusively reduced, while the immunoreaction for MT-III was relatively well preserved. Especially the astrocytes in the vicinities of the kuru plaques exhibited a weak or no immunoreaction even for MTs but a strong immunoreaction for glial fibrillary acidic protein. A quantitative Western blot analysis also revealed that MT-I/II protein accumulated in CJD brain with a short disease duration, whereas MT-III in CJD brain with a long disease duration was statistically significantly reduced in comparison to the normal brains. These findings suggest that the protein expression of MTs in the astrocytes is thus regulated differentially among human prion diseases and modified locally by such abnormal prion protein depositions as kuru plaques.

Adult↗

Surface structure of the human cardiac valve. A comparative study of normal and diseased valves.

This article reports the surface structure of the endothelial cells covering the cardiac valves and their changes in chronic inactive rheumatic valvulitis and bacterial endocarditis. The endocardial surface of the normal cardiac valve was covered by a layer of endothelial cells, each of which was recognized because of the presence of centrally located nuclear bulge and marginal folds at the cell boundaries. In the cardiac valves affected by chronic rheumatic valvulitis, the endothelial layer denuded extensively, even in the regions where only slight thickening was noticed in the intravalvular tissues. As compared to the inflow side of the valve, denudation of the endothelial layer was more conspicuous on the outflow side. There was no morphological difference between the two hemodynamically different conditions, i.e. stenosis and regurgitation. In the cardiac valves affected by bacterial endocarditis, in contrast, the destruction of the endothelial layer was preferentially observed along the closing margins of the valve, and in the region of calcification and vegetation. These findings are compatible to the interpretation that differences in morphological changes of the endothelial layer in these two acquired valvular diseases may reflect the differences of their pathogeneses. The present study thus suggest an importance of endothelial cell in elucidating the pathogenesis of acquired valvular diseases.

Aortic Valve↗