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Biomedical subjects

Y Yamasaki

Publications and source records attributed to Y Yamasaki.

At least 19 recordsLinked to original sources

Expression of CD38 gene, but not of mitochondrial glycerol-3-phosphate dehydrogenase gene, is impaired in pancreatic islets of GK rats.

Goto-Kakizaki (GK) rat, a rodent model of spontaneously occurring non-insulin dependent diabetes mellitus (NIDDM), exhibits impaired glucose-stimulated insulin secretion. To explore the background of the beta-cell dysfunction in NIDDM, we investigated whether and how the expression pattern of factors that would potentially be involved in the glucose-stimulated insulin secretion machinery is changed in GK rats. Using quantitative reverse transcription-PCR (RT-PCR) method, we found that the gene expression of CD38, a type 2 membrane protein which has ADP-ribosyl cyclase activity, is reduced by approximately 50% in islets of GK rats. Despite previous studies showing reduction in the FAD-linked mitochondrial glycerol-3-phosphate dehydrogenase (mGPDH) activity in GK rats, the mGPDH mRNA amounts were equal to those in the control Wistar rats, suggesting a difference that arose post-transcriptionally. These observations support the idea that multiple defects of the glucose-responsive insulin secreting machinery are involved in the development of diabetes in GK rats.

ADP-ribosyl Cyclase

Calcium/calmodulin-dependent protein kinase II and protein phosphatase 2B (calcineurin) immunoreactivity in the rat hippocampus long after ischemia.

Calcium/calmodulin-dependent protein kinase II (kinase II) and protein phosphatase 2B (calcineurin) immunoreactivity in the rat hippocampus was studied 100 days after ischemic damage to hippocampal CA1 pyramidal neurons. One-hundred days after ischemia, only a few CA1 pyramidal neurons survived and they exhibited enhanced kinase II and calcineurin immunoreactivity in their basal and apical dendrites. The stratum lucidum of the CA3 (mossy fiber terminal area) had enhanced kinase II and calcineurin immunoreactivity. These results suggest activity-dependent regulation and redistribution of kinase II and calcineurin after intervention in neuronal circuitry.

Animals

Expression and function of mouse Fas antigen on immature and mature T cells.

We prepared mAbs specific for the mouse Fas Ag (CD95) and used them to analyze the expression and apoptosis-inducing activity of the Fas Ag on murine immunocytes. Cytofluorometry of mouse bone marrow, thymus, and splenocytes using the mAbs indicated that cells of the T lineage, except for bone marrow cells, expressed Fas Ag on the surface. CD4-CD8- undifferentiated thymocytes expressed low levels of Fas Ag. Immature CD4+CD8+ thymocytes and mature CD4+CD8- and CD4-CD8+ thymocytes were highly positive for Fas Ag. CD4+CD8+ thymocytes were specifically sensitive to the apoptosis-inducing activity of anti-Fas, although CD4-CD8-, CD4+CD8-, and CD4-CD8+ thymocytes were resistant. Spleen T cells were resistant to anti-Fas, whereas they expressed Fas Ag. The superantigen, staphylococcal enterotoxin B (SEB) administered to BALB/c mice, induced clonal expansion and successive clonal deletion of spleen T cells bearing the V beta 8 TCR, which specifically reacts to SEB. Such clonal deletion of V beta 8 T cells was highly suppressed in lpr mice, which have defects in the Fas Ag gene. In SEB-administrated BALB/c mice, expression of Fas Ag was significantly enhanced on V beta 8, but not on V beta 6 T cells, which cannot react to SEB. Moreover, V beta 8 T cells in SEB-primed mice were sensitive to the cell-killing activity of anti-Fas, although V beta 6 T cells were resistant. These findings show that the expression level and apoptosis-inducing activity of Fas Ag on peripheral T cells are directly up-regulated by stimulation through the TCR in vivo.

Animals

Asymptomatic hyperglycaemia is associated with increased intimal plus medial thickness of the carotid artery.

Atherosclerotic changes have not been demonstrated directly in asymptomatic hyperglycaemic non-diabetic subjects, although high mortality due to coronary heart disease has been reported. We measured arterial wall thickness non-invasively, in order to directly demonstrate atherosclerosis of the carotid arteries of hyperglycaemic non-diabetic subjects and to evaluate its risk factors. The thicknesses of the intimal plus medial complex (IMT) of the carotid arteries of 112 asymptomatic hyperglycaemic non-diabetic subjects (aged 22-81, 95 males and 17 females) were compared with those of 55 healthy male subjects and 211 non-insulin-dependent NIDDM male diabetic patients. The subjects were subgrouped into impaired glucose-tolerant (IGT) subjects who had a 2-h glycaemic level of more than 7.8 mmol/l, and non-IGT subjects whose 2-h glycaemic levels were within 6.7-7.7 mmol/l. Non-IGT and IGT subjects showed significantly greater IMTs than age-matched healthy males and showed no significant differences compared to age-matched NIDDM patients. Multivariate analysis demonstrated that the risk factors for IMT of non-IGT and IGT subjects were age and systolic blood pressure. According to data on the accumulation of atherogenic risks (hypertension, dyslipidaemia, and smoking), IMT increased linearly in non-IGT and IGT subjects. However, non-IGT and IGT subjects without hyperlipidaemia, hypertension, or smoking risk still had significantly greater IMT than age-matched normal males (1.019 +/- 0.063 vs 0.770 +/- 0.111 mm, p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Ultrastructure of nonenzymatically glycated mesangial matrix in diabetic nephropathy.

Advanced protein glycation has been proposed as a major factor in the development of diabetic nephropathy. Advanced glycation end products (AGEs) have altered the structure of extracellular matrix component and impaired self association in vitro. To elucidate the role of AGEs in the progression of diabetic nephropathy, the present study was undertaken to localize glomerular AGEs immunohistochemically. Ultrastructural changes of the mesangial matrix were analyzed with high resolution scanning electron microscopy. No glomerular AGEs staining was noted in normal control kidney specimens, or in tissue from glomerulonephritis patients without diabetes mellitus. The mesangium showed a positive AGEs staining in advanced stages of diabetic nephropathy, and the most characteristic finding was the strong AGEs staining in nodular lesions. By high resolution scanning electron microscopy, control and diabetic mesangial matrices revealed a meshwork structure composed of fine fibrils (10 nm in width) and numerous pores (12 to 13 nm in diameter). In the nodular lesions, however, loosening of the meshwork was significant, and the diameter of the pores was enlarged (approximately 24 nm). This study provides the first immunohistochemical evidence that AGEs are localized in diabetic glomeruli, most notably to nodular lesions. Advanced glycation might play a role in the progression of diabetic nephropathy through impairment of the assembly of matrix proteins in vivo.

Adult

Interleukin-1 as a pathogenetic mediator of ischemic brain damage in rats.

BACKGROUND AND PURPOSE: It has been suggested that interleukin-1 (IL-1) is a potent inflammatory mediator and that it is synthesized and secreted into the brain parenchyma. The aim of the present study is to evaluate the contribution of IL-1 to brain edema formation after focal brain ischemia. METHODS: The brain water content was measured to evaluate postischemic brain injury in rats after 60 minutes of middle cerebral artery occlusion and reperfusion. The effects of exogenous application of recombinant human interleukin-1 beta (rhIL-1 beta), anti-interleukin-1 beta neutralizing antibodies (anti-IL-1 beta), and the IL-1 blocker zinc protoporphyrin (ZnPP) on brain water content were observed, and histological technique was used to measure the infarction size and number of inflammatory cells infiltrated into the brain. RESULTS: Transient ischemia induced marked increase of brain water content, necrosis, and neutrophilic infiltration in the cortex perfused by the middle cerebral artery and the dorsal and ventral areas of the caudate putamen. Injection of rhIL-1 beta into the left lateral ventricle immediately after reperfusion markedly enhanced ischemic brain edema formation in these three areas in a dose-dependent manner (88.4 +/- 0.7% and 86.6 +/- 0.4% in the dorsal and ventral parts of the caudate putamen, respectively, in rats treated with 10 ng rhIL-1 beta; P < .01). rhIL-1 beta also increased the size of the brain infarction, and it tended to increase the number of infiltrating neutrophils in ischemic areas and the number of neutrophils adherent to the endothelium. In contrast, administration of anti-IL-1 beta and ZnPP into the left cerebral ventricle attenuated the postischemic increase of brain water content and decreased the size of brain infarction (83.5 +/- 2.0% and 79.9 +/- 2.0% in the dorsal and ventral parts of the caudate putamen, respectively, in rats treated with 10 micrograms anti-IL-1 beta; P < .01). The number of neutrophils that infiltrated into ischemic areas also tended to decrease with anti-IL-1 beta or ZnPP treatment. CONCLUSIONS: Application of rhIL-1 beta augmented the increase of brain water content, and application of anti-IL-1 beta depressed the increase of water content. These results tended to correlate with the neutrophilic infiltration into the parenchyma. It thus appears that IL-1 beta may play an important role in ischemic brain damage after reperfusion.

Animals

Regulation of cyclic AMP phosphodiesterase activity by particulate protein tyrosine kinase and phosphotyrosine phosphatase activities sensitive to sodium orthovanadate.

Sodium orthovanadate (vanadate) stimulated cAMP phosphodiesterase (PDE) and protein tyrosine kinase (PTK) activities and inhibited the phosphotyrosine phosphatase (PTPase) activity in the particulate of isolated rat fat pads. Okadaic acid never showed any increase in the PDE activity up to 1 microM. Amiloride inhibited in part both stimulations of PDE and PTK activities by vanadate. The particulate PTK activity had an optimal divalent ion requirement of 15 mM Mg+2+2 mM Mn+2 in the assay medium and was not inhibited by 1 mM N-ethylmaleimide, suggesting it to be a different type from the insulin receptor and cytosolic PTK activities. The PDE, PTK, and PTPase active fractions were separated from the solubilized particulate fraction on a DEAE-Sephacel column. PDE activity was increased by the addition of the PTK active fraction. A further increase was observed by using the PTK active fraction pretreated with 1 mM vanadate. In contrast, the addition of PTPase active fraction decreased the PDE activity. This decrease disappeared by using the PTPase active fraction pretreated with 1 mM vanadate. These results suggest that the PDE activity is in part regulated through a process involving the particulate PTK and PTPase activities sensitive to vanadate.

3',5'-Cyclic-AMP Phosphodiesterases

A case of non-insulin dependent diabetes mellitus with antiinsulin antibody: effect of subcutaneous injection of human recombinant insulin-like growth factor-I.

We saw a 57-yr-old female non-insulin dependent diabetes mellitus (NIDDM) patient with antiinsulin antibody, in whom insulin-like growth factor-I (IGF-I) was shown to be effective as a blood glucose-lowering agent. Due to the presence of the antibody, the patient suffered from postprandial hyperglycemia and frequent hypoglycemia, which were uncontrollable even by multiple insulin injection therapy. In contrast to insulin injection (0.24 IU/kg body wt) which showed a delayed glucose-lowering effect, subcutaneous injection of recombinant human IGF-I (0.05-0.1 mg/kg body wt) caused a quick fall in plasma glucose levels. Prolongation of the glucose-lowering effect of "rapid-acting" insulin frequently caused subsequent hypoglycemia in this patient, but the effect of IGF-I seemed to have disappeared within the first three hours.

Diabetes Mellitus, Type 2

Apoptotic cell death triggered by nitric oxide in pancreatic beta-cells.

Nitric oxide (NO) is believed to be an effector molecule that mediates interleukin (IL)-1 beta-induced destruction and dysfunction of pancreatic beta-cells. We have demonstrated that both exogenous NO and NO generated endogenously by IL-1 beta brought about apoptosis of isolated rat pancreatic islet cells as well as pancreatic beta-cell tumor-derived cell line HIT. This apoptosis was characterized by cleavage of DNA into nucleosomal fragments of 180-200 bp and morphologically by nuclear shrinkage, chromatic condensation, and apoptotic body formation. The IL-1 beta-induced internucleosomal DNA cleavage occurred in a time- and dose-dependent manner. Actinomycin D, cycloheximide, and nitric oxide synthase inhibitors inhibited the DNA cleavage, which was correlated with the amount of NO produced, indicating that NO produced by HIT cells themselves could mediate the apoptosis. Furthermore, in the presence of tumor necrosis factor (TNF)-alpha, large amounts of NO were produced by IL-1 beta and DNA cleavage occurred more noticeably, although TNF-alpha alone did not generate NO. Streptozotocin (STZ), a diabetogenic reagent containing a nitroso moiety, also released NO and induced internucleosomal DNA cleavage in HIT cells. These results suggest that NO-induced internucleosomal DNA cleavage is an important initial step in the destruction and dysfunction of pancreatic beta-cells induced by inflammatory stimulation or treatment with STZ.

Amino Acid Oxidoreductases

1,5-Anhydro-D-glucitol evaluates daily glycemic excursions in well-controlled NIDDM.

OBJECTIVE: To evaluate the usefulness of plasma 1,5-anhydro-D-glucitol (1,5-AG) as a possible marker for daily glycemic excursion, we measured plasma 1,5-AG, HbA1c, fasting plasma glucose (FPG) level, and daily excursion of glycemia, from which the M-value (after Schlichtkrull) was calculated as an index of daily glycemic excursion. RESEARCH DESIGN AND METHODS: The subjects were 76 patients with well-controlled non-insulin-dependent diabetes mellitus (NIDDM) treated with diet therapy only (diet, n = 17), oral hypoglycemic agents (OHA, n = 28), conventional insulin therapy (CIT, n = 16), or multiple insulin injection therapy (MIT, n = 15). RESULTS: HbA1c values were similar among all the groups (diet, 6.9 +/- 0.6; OHA, 7.2 +/- 0.5; CIT, 7.1 +/- 0.6; MIT, 7.2 +/- 0.5%). The MIT group showed a significantly higher 1,5-AG concentration (11.5 +/- 5.3 micrograms/ml), a significantly lower M-value (9.2 +/- 5.2), and little risk of hypoglycemia ( < 4 mmol/l) and hyperglycemia ( > 10 mmol/l) (1.3 +/- 1.1 times/24 h) compared with the CIT group (6.9 +/- 3.3 micrograms/ml, 15.7 +/- 8.9, 2.2 +/- 1.6 times/24 h, respectively). Insulin doses (22.4 +/- 4.5 vs. 22.0 +/- 8.9 U/day), FPG (6.6 +/- 2.2 vs. 7.4 +/- 2.4 mmol/l), and HbA1c concentrations were not significantly different between the CIT and MIT groups. M-values significantly correlated with 1,5-AG concentrations (r = 0.414, P < 0.05), but not with HbA1c concentrations. CONCLUSIONS: The findings suggest that the plasma 1,5-AG concentration can be a useful index of the daily excursion of blood glucose, especially in patients with well-controlled NIDDM.

Biomarkers

New mutant rabbit strain with hypercholesterolemia and atherosclerotic lesions produced by serial inbreeding.

We have investigated the characteristics of the Kurosawa and Kusanagi hypercholesterolemic (KHC) rabbit, a strain manifesting inherited and persistent hypercholesterolemia and produced by inbreeding from mutants discovered in 1985. These KHC rabbits had abnormally high serum cholesterol, triglyceride, and phospholipid concentrations 8 to 10 times greater than the concentrations in clinically normal Japanese white rabbits (Oryctolagus cuniculus). The KHC rabbits also had decreased serum high-density lipoprotein cholesterol concentration, about one-third the value in clinically normal rabbits. In addition, the serum lipoprotein electrophoretic patterns were characterized by a strong, broad beta-lipoprotein band and a diminished alpha-lipoprotein band. Fractionation of lipoprotein lipids revealed increased cholesterol, phospholipid, and triglyceride in the low-density lipoprotein fraction; increased cholesterol and phospholipid in the very low-density lipoprotein fraction; and decreased cholesterol and triglyceride in the high-density lipoprotein fraction. On the basis of incidence of hypercholesterolemia in mating experiments, this abnormality is thought to have been inherited as a single autosomal recessive gene mutation, and analysis of the low-density lipoprotein receptor indicated that the KHC rabbit has a 12-base pair deletion in the low-density lipoprotein receptor mRNA. Macroscopic analysis of the aorta revealed the atheromatous lesions at 2 months of age, drastically increased lesional areas in the total aortic surface at 8 months of age, and a high incidence of coronary atheromas and xanthomas. Light microscopy revealed two typical lesions in the aorta fatty plaque and medical calcification.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

[A case of systemic lupus erythematosus associated with severe fibrinoid necrosis located mainly in the glomerular afferent arteriole].

We report here, a patient of systemic lupus erythematosus (SLE) with severe fibrinoid necrosis in the afferent arteriole of the glomerulus, in whom antiphospholipid antibody might have contributed to the pathogenesis. A 24-year-old female who was suffering from severe anemia with fragmented red blood cells, acute renal failure and thrombocytopenia, was admitted to our hospital. Further examinations revealed findings compatible with active lupus nephritis. Moreover, she was found to be positive for antiphospholipid antibody, and anticardiolipin antibody, as well as for lupus anticoagulant and syphilis test. Intensive treatment by methylprednisolone pulse therapy, hemodialysis, and double filtration plasmapheresis were performed. However, 13 days after admission she died suddenly because of intracranial hemorrhage. Pathological investigation of renal tissue revealed severe fibrinoid necrosis of the arterioles mainly in the glomerular afferent arteriole associated with diffuse proliferative lupus nephritis. In this case, hemolytic uremic syndrome (HUS) was associated with SLE. Antiphospholipid antibody was considered to be not only an accelerator in the arterial lesions of HUS, but also an initiator of HUS itself.

Adult

[Hemodynamic and blood gas changes during femoral neck prosthetic replacement using a cement gun].

We investigated hemodynamic and blood gas changes in eight patients undergoing femoral neck prosthetic replacement. We measured blood pressure, heart rate, pulmonary artery pressure, cardiac output and blood gas before packing bone cement with a cement gun and 5, 10, and 15 min after the insertion of the prosthesis. Significant increases in mean pulmonary artery pressure, and arterial PCO2 were observed, but there were no significant changes in mean arterial pressure, cardiac output, or arterial PaO2. These pulmonary circulatory and blood gas alterations suggested that pulmonary embolism or pulmonary vasospasm had been brought about by the insertion of the prosthesis, but this did not result in systemic changes in the patients in this study. In conclusion, it is recommended to monitor circulatory and respiratory changes closely to detect pulmonary embolism during femoral neck prosthetic replacement using a cement gun.

Aged

Accurate and rapid detection of heterozygous carriers of a deletion by combined polymerase chain reaction and high-performance liquid chromatography.

We have developed a technique to detect accurately heterozygous carriers of a deletion. Specific target sequences were amplified by the polymerase chain reaction (PCR), and the products subsequently were analyzed by high-performance liquid chromatography. Examples from four loci demonstrated that 24-27 cycles of amplification for a single-copy DNA, based on 50 ng of genomic DNA, results in excellent quantitation that readily permits the detection of heterozygous carriers of a deletion. We have demonstrated that triplex PCR (three targets in a single PCR) entails no loss of precision. We also have demonstrated that this method can accurately differentiate the heterozygous carriers of a deletion from normal individuals in four family studies, three for Duchenne muscular dystrophy patients and one for a hemophilia B patient.

Base Sequence

Possible involvement of interleukin-1 in ischemic brain edema formation.

To determine the contribution of interleukin 1 (IL-1) on ischemic brain edema formation, the effect of recombinant human interleukin 1 beta (rhIL-1 beta), or zinc protoporphyrin (ZnPP) as an IL-1 blocker, on brain edema was studied in rats. The animals were subjected to 60 min of ischemia in a middle cerebral artery occlusion model. Immediately after reperfusion, rhIL-1 beta at a dose of 10 ng/2 microliters, or ZnPP at doses of 1 and 10 micrograms/2 microliters were topically applied into lateral cerebroventricle. In rhIL-1 beta-treated rats, ischemic brain edema formation was significantly increased in the dorsal and ventral areas of the caudate putamen 24 h after reperfusion, compared to that of vehicle-treated control rats. Furthermore, in ZnPP-treated rats, brain edema was decreased in both caudate-putamen areas. This suggests that IL-1 plays an important role in pathogenesis for post-ischemic brain edema.

Animals

The role of GTP binding proteins in ischemic brain damage: autoradiographic and histopathological study.

Cerebral ischemia produces perturbation of signal transduction systems in neurons. In order to estimate the contribution of guanine nucleotide-binding protein (G-protein) to hippocampal neuronal death, the effect of pertussis toxin (PTX) on the CA1 pyramidal cell damage after transient forebrain ischemia in rats was examined. PTX was administered 3 days before 20 min of transient forebrain ischemia. PTX injection into the CA1 subfield failed to alter the number of ischemic-damaged CA1 pyramidal cells. In contrast, ventricular PTX injection exacerbated CA1 pyramidal cell damage. We also studied postischemic alteration of GTP binding sites in the hippocampal formation using quantitative in vitro autoradiography. Autoradiographic imaging demonstrated predominant distribution of GTP binding sites in synaptic areas in the hippocampus. No significant change of GTP binding activity was observed in the hippocampus until 2 days after recirculation. Seven days after ischemia, when the CA1 pyramidal cells were depleted, the GTP binding sites of the strata oriens and radiatum in the CA1 subfield had reduced by 32% and 31%, respectively. In contrast, GTP binding in the CA3 subfield and the dentate gyrus remained unaltered throughout the reperfusion period. These results suggest that the amount of G-proteins as estimated by GTP binding remained unaltered in the hippocampus during the early recirculation period, when the CA1 pyramidal cells were morphologically intact, and that signal transduction pathways mediated by Gi and Go do not play a major role in delayed death of the CA1 pyramidal cells.

Animals