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Biomedical subjects

M Tsuchihashi

Publications and source records attributed to M Tsuchihashi.

8 recordsLinked to original sources

Immunohistochemical study of some cytoskeletal proteins in hereditary myopathy of the diaphragmatic muscles in Holstein-Friesian cattle.

We have investigated the expression, using immunohistochemical and Western blot methods, of some cytoskeletal proteins including desmin, vimentin, actin, alpha-actinin, and ubiquitin in hereditary myopathy of the diaphragmatic muscles in Holstein-Friesian cattle (the histochemical and electron microscopical aspects have been previously reported). Immunohistochemically, the expression of desmin was observed strongly in the subsarcolemmal regions, but was lacking or faint in the area corresponding to the core-like structures. Vimentin showed almost the same localization as desmin, but no activity could be observed in the core-like structures. In addition, the core-like structures showed strong immunoreactivity for actin and ubiquitin, but no immunoreactivity for alpha-actinin. F-actin stained with phalloidin-tetramethyl-rhodamine was strongly positive in irregular spots that corresponded to the core-like structures, but was negative for desmin-positive regions. Western blot analysis of the diseased muscles revealed a significant increase in the amount of desmin and vimentin immunoreactivities and similar amounts of actin and alpha-actinin compared with the control muscles. Two-dimensional electrophoresis revealed no isoforms of desmin, suggesting the absence of abnormal phosphorylated forms of desmin. Since the co-localization of desmin and vimentin and the absence of phosphorylated desmin suggest that the overexpression of desmin may be reflected in the reactive change or regenerating process, the present myopathy should be regarded as an entity separate from desmin-storage myopathy or desmin-related myopathies. We also discuss the possibility that the present myopathy could be considered as myofibrillar myopathy, a recently proposed nosological entity.

Actinin

Mechanism of cardiac involvement in the WBN/Kob rat.

The cardiac characteristics of the WBN/Kob rat resemble those of rats with catecholamine-induced myocarditis. To determine the etiology of these WBN cardiac characteristics, we assessed the number and affinity of beta-adrenergic receptors, and investigated adenylate cyclase activity, the cardiac myocyte cyclic adenosine monophosphate (cAMP) concentration and the activity of guanosine triphosphate (GTP)-binding protein in 3-month-old WBN/Kob rats. Age-matched Wistar rats served as controls. The mean number of beta-adrenergic receptors was similar in WBN/Kob and Wistar rats (28.0+/-9.1 v 28.3+/-8.9 fmol/mg protein), and there was no significant difference in beta-adrenergic receptor affinity between groups (1.09+/-0.54 v 1.26+/-0.60 nM). The mean cAMP concentration in cardiac myocytes was significantly higher in WBN/Kob rats than in Wistar rats 1975.6+/-247.8 v 344.9+/-83.6 pmol/g wet tissue), (P=0.0112) as was adenylate cyclase activity (33.61+/-8.32 v 24.3+/-12.78 pmol/mg/min), (P=0.0174). The activity of GTP-binding protein was significantly higher in WBN/Kob rats than in Wistar rats. After a beta-agonist binds to a beta-adrenergic receptor, activated adenylate cyclase produces cAMP in myocytes, which in turn opens the Ca2+ channel, leading to an influx of Ca2+ into myocytes. Our results suggest that the increase in adenylate cyclase activity in WBN/Kob rats have led to an increase in the cAMP concentration in myocytes. This process may have resulted in excessive beta-adrenergic activity due to high activity of GTP binding protein in WBN/Kob rats, which may explain the hypersensitivity of WBN/Kob rats to isoproterenol and the development of catecholamine-induced myocarditis.

Adenylyl Cyclases

[Two-color flow cytometry analysis of lymphocyte subsets in patients with acute myocardial infarction and post-myocardial infarction syndrome].

Serial changes in lymphocyte subsets were analyzed in 37 patients with acute myocardial infarction (AMI), in 2 patients with postmyocardial infarction syndrome (PMIS), and in healthy subjects (control group) using two-color flow cytometry to investigate cellular immunity after AMI and PMIS. Peripheral blood lymphocyte subsets were measured on admission and at weeks 2, 4, 8, and 16 after the onset of AMI. The white blood cell count was significantly higher on admission and at week 2 in the AMI group compared with the control group. The percentage of CD4-positive helper T cells was significantly higher on admission and at weeks 2 and 4 in the AMI group compared with the control group, and the percentage of CD8-positive suppressor T cells was significantly lower in the AMI group at week 2 than in the control group. The ratio of helper-to-suppressor T cells peaked 2 weeks after the AMI and then decreased gradually. There were no significant changes in the CD4/CD8 ratio, the percentage of cytotoxic T cells, or the percentage of inducer T cells, throughout the observation period. There were no significant differences in the percentage of T cells, B cells, CD4-positive T cells, CD8-positive T cells, and natural killer cells between AMI patients and control subjects. The percentage of activated CD4- and CD8-positive cells was higher in the AMI group at weeks 4 and 8 than in the control group. There was no significant correlation between changes in lymphocyte subsets and infarct size. The percentage of activated CD8-positive cells was consistently higher in the PMIS group compared with the control and AMI groups. The percentage of cytotoxic T cells in one of the PMIS patients was significantly higher than in the AMI group. There were no significant differences in the proportions of other subsets between PMIS and AMI patients. The changes in lymphocyte subsets observed in patients with AMI suggested that immunological competence was enhanced in these patients. Abnormalities in humoral immunity, such as the appearance of anticardiac antibody, have been observed in patients with PMIS. Our results suggest that PMIS is also associated with changes in cellular immunity.

Adult

[Immunohistochemical study of the endomyocardial biopsy of systemic lupus erythematosus].

The mechanisms of cardiac involvement in systemic lupus erythematosus (SLE) were studied using immunohistochemical staining of endomyocardial biopsy specimens from 14 patients with SLE and normal coronary arteriograms. All 14 specimens showed mild interstitial edema, 11 showed mild cardiac fibrosis, and another two cases showed moderate cardiac fibrosis with myocardial derangements. Four specimens showed moderate cell infiltration in the interstitium. Area of fibrosis, diameter of myocardium and area of interstitial edema were increased in the SLE patients compared to the control cases. Immunofluorescence showed IgG and fibrinogen deposition in the membrane of cardiac myocytes and in the interstitium. Immunohistochemistry found no B lymphocytes in any of the seven SLE cases. T lymphocytes were observed in all seven SLE cases, and OKT 8 lymphocytes were increased significantly in the interstitial tissue as compared with OKT 4 lymphocytes. At endomyocardial biopsy, all 14 patients were receiving corticosteroid therapy and had low activity disease. The results suggest that cardiac tissue damage was associated with immunological abnormalities and might progress silently under conditions in which the disease activity was suppressed by corticosteroid therapy.

Adult

Effect of retinoic acid on contraction of collagen gel induced by fibroblasts.

Retinoic acid inhibited the contraction of collagen gel containing fibroblasts. Moreover, in its presence fibroblasts extensions were shorter, fewer collagen fibers were recognized, cell adhesiveness was inhibited concentration-dependently, and microfilaments appeared to be disrupted, resulting in morphological changes including loss of multipolar cell processes due to changes in cytoskeletal linkages.

Cell Adhesion

Angiotensin II receptor antagonist, TCV-116, prevents myocardial hypertrophy in spontaneously hypertensive rats.

Recently, it has been suggested that angiotensin II (AII) might be associated with cardiac hypertrophy and fibrosis. We investigated the preventive effect of an AII receptor antagonist, TCV-116, on the development of cardiac hypertrophy and fibrosis in spontaneously hypertensive rats (SHR) at 24 weeks of age through histopathological study and an AII receptor assay. Treatment with TCV-116, enalapril (an angiotensin-converting enzyme inhibitor, ACEI), and hydralazine for 20 weeks lowered systolic blood pressure (SBP) significantly (-39 mmHg, -45 mmHg, and -45 mmHg, respectively). The heart weight/body weight ratio, cardiac myocyte diameter, and percent cardiac fibrosis were significantly reduced by treatment with TCV-116 and enalapril as compared with hydralazine treatment or no treatment. The AII receptor density was significantly increased by treatment with TCV-116 and enalapril as compared with hydralazine treatment or no treatment. The results of this study suggest that AII receptors are involved in the development of cardiac hypertrophy and fibrosis in SHR. It was demonstrated that the AII receptor antagonist, TCV-116, was comparable to the ACEI, enalapril, in inhibiting the progression of cardiac hypertrophy and fibrosis via the AII receptor.

Angiotensin II

[Determination of the activity of urinary enzymes derived from renal tubulus].

There are several problems in measuring the activities of urinary enzymes, such as alkaline phosphatase (ALP), leucine aminopeptidase (LAP), and gamma-glutamyl transpeptidase (gamma-GTP) which are derived from renal tubulus. The purpose of the present study is to clarify the basic methodological problems in measuring these enzyme activities. Our results indicate that it is not necessary to dialyze urine when determining these three enzymes, except for alkaline phosphatase activity measured by the Kind-King method. Because of contamination of urine by bacteria and cell elements, the enzyme activity is influenced by centrifugal conditions that depend on time and speed. Our results propose that it is necessary, at least, to centrifuge at 3000 rpm for 10 minutes to obtain satisfactory data. Generally, a 24 hour urine sample instead of spot urine sample should be used for measuring the enzyme activity. However if correcting gamma-GTP activity by creatinine, even a spot urine sample may be used for clinical use.

Alkaline Phosphatase