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Biomedical subjects

Satoshi Yamada

Publications and source records attributed to Satoshi Yamada.

At least 19 recordsLinked to original sources

Computer simulation of the role of SOCS family protein in helper T cell differentiation.

The Th1/Th2 balance determines the nature of an immune response, and particular cytokines, IL-4 and IL-12, determine the direction at the initial stage of activation through TCRs. To investigate how cytokine networks and related signaling pathways impact upon the Th1/Th2 balance, we have developed a computer model for the simulation of Th differentiation. The model includes the IL-4, IL-12 and IFN-gamma signal transduction pathways, a positive and negative feedback mechanism for cytokine signaling and cytokine-induced negative regulators such as suppressors of cytokine signaling (SOCS)1, SOCS3 and SOCS5. In the present study, we propose a 'Th0 model', in which naive T cells differentiate neither into Th1 nor into Th2 states in unskewed cytokine conditions. The model was found to be consistent with experimental results in BALB/c mice. The results of in silico analysis in the condition with SOCS- and signal transducer and activator of transcription (STAT) family-deficient and transgenic states were well fitted to ex vivo experimental results for Th1 and Th2 differentiation profiles in the deficient and transgenic mice. The Th0 model suggested the possibility that dominant Th1 differentiation in STAT4/STAT6 double-deficient mice may be due to a positive feedback effect of initial IFN-gamma production from T cells. The in silico assessment of beneficial effects of inhibitory drugs by simulation analysis with our Th0 model indicated that Janus kinase 3-specific inhibitors might be suitable candidates for the modification of Th2-dominant immune responses. Our results demonstrate that models for the simulation of signaling network, such as our Th0 model, are useful tools for the in silico evaluation of novel drug candidates.

Animals↗

Role of left ventricular regional diastolic abnormalities for global diastolic dysfunction in patients with hypertrophic cardiomyopathy.

BACKGROUND: The usefulness of Doppler strain rate imaging for assessment of left ventricular regional diastolic function has not been fully determined. OBJECTIVE: We aimed to clarify the relationships between diastolic strain rates and global diastolic function and find a useful index for regional diastolic function in patients with hypertrophic cardiomyopathy (HCM). METHODS: Strain rate curves were obtained using an apical approach at 12 different sites of the left ventricular myocardium in 25 patients with HCM and 20 control subjects, and peak early diastolic strain rate (ESR), peak late diastolic strain rate, and the time from QRS to ESR were measured. The flow propagation velocity was measured using color M-mode Doppler echocardiography as a global diastolic index. RESULTS: Each of the spatially averaged values of ESR and ESR/peak late diastolic strain rate and the coefficients of variation of time from QRS to ESR was significantly correlated with flow propagation velocity, but the best correlation was observed in ESR. Although both ESR and peak late diastolic strain rate of each myocardial segment of patients with HCM tended to decrease as the wall thickness increased, only ESR significantly decreased even in the segments without apparent hypertrophy. CONCLUSIONS: In patients with HCM, the reduction of ESR was more closely associated with global diastolic dysfunction than asynchrony, and ESR may be a useful and sensitive index for regional diastolic function.

Cardiomyopathy, Hypertrophic↗

Increased plasma concentrations of N-terminal pro-brain natriuretic peptide reflect the presence of mildly reduced left ventricular diastolic function in hypertension.

BACKGROUND: The potential use of assays of N-terminal pro-brain natriuretic peptide for detection of diastolic abnormalities associated with alterations in blood pressure has not been elucidated. This study was designed to determine whether increased plasma concentrations of N-terminal pro-brain natriuretic peptide sensitively reflect abnormal diastolic function associated with hypertension. METHODS: Concentrations of N-terminal pro-brain natriuretic peptide in plasma were assayed in 40 previously untreated hypertensive patients without overt congestive heart failure and in 20 age and sex-matched controls. Hypertensive patients were studied with the use of pulsed Doppler and color M-mode Doppler echocardiography for the evaluation of left ventricular diastolic function. RESULTS: Concentrations of N-terminal pro-brain natriuretic peptide were elevated in hypertensive patients [75.1+/-75.2 (SD) pg/ml compared with 37.9+/-38.5 in controls, P<0.05]. In hypertensive patients, concentrations of N-terminal pro-brain natriuretic peptide were negatively correlated with the ratio of color M-mode flow propagation velocity to transmitral E velocity consistent with the view that increased concentrations of N-terminal pro-brain natriuretic peptide are indicative of alterations in diastolic function. Hypertensive patients with N-terminal pro-brain natriuretic peptide values above the mean value in the control group exhibited significantly increased brachial intimal-medial thickness and reduced wall stress, consistent with the view that increased N-terminal pro-brain natriuretic peptide was associated with favorable peripheral arterial remodeling. CONCLUSIONS: Elevated concentrations of N-terminal pro-brain natriuretic peptide in plasma reflect the presence of left ventricular diastolic abnormalities and peripheral arterial remodeling in asymptomatic patients with hypertension.

Biomarkers↗

Integrated backscatter for the assessment of myocardial viability.

PURPOSE OF REVIEW: Ultrasonic tissue characterization is a non-invasive diagnostic method that uses myocardial integrated backscatter analysis to determine contractile performance and myocardial viability independent of wall motion. This review discusses recent clinical findings regarding the application of ultrasonic tissue characterization for the assessment of myocardial viability. RECENT FINDINGS: As this technique is non-invasive, ultrasonic tissue characterization can be used to predict the patency of infarct-related arteries in patients in the early stage of acute myocardial infarction. Several recent studies have shown that this technique is useful in identifying myocardial contractile reserve. The accuracy of ultrasonic tissue characterization for predicting functional recovery after coronary reperfusion is comparable to dobutamine echocardiography and radionuclide methods. Several studies have suggested that the cyclic variation of myocardial integrated backscatter reflects myocardial viability rather than contractile reserve. The cyclic variation of integrated backscatter is associated with myocardial viability confirmed by the integrity of the microvasculature identified by contrast echocardiography. In addition, the cyclic variation of integrated backscatter better reflects myocardial viability confirmed by the integrity of cellar metabolism than contractile reserve. SUMMARY: Ultrasonic tissue characterization with integrated backscatter is a useful non-invasive method that can provide unique information for the assessment of myocardial viability.

Coronary Stenosis↗

Effect of drug transporter genes on cysteine export and overproduction in Escherichia coli.

L-cysteine is an important amino acid in terms of its industrial applications. We previously found a marked production of L-cysteine from glucose in recombinant Escherichia coli cells expressing an altered cysE gene encoding feedback inhibition-insensitive serine acetyltransferase. Also, a lower level of cysteine desulfhydrase (CD) activity, which is involved in L-cysteine degradation, increased L-cysteine productivity in E. coli. The use of an L-cysteine efflux system could be promising for breeding L-cysteine overproducers. In addition to YdeD and YfiK, which have been reported previously as L-cysteine exporter proteins in E. coli, we analyzed the effects of 33 putative drug transporter genes in E. coli on L-cysteine export and overproduction. Overexpression of the acrD, acrEF, bcr, cusA, emrAB, emrKY, ybjYZ, and yojIH genes reversed the growth inhibition of tnaA (the major CD gene)-disrupted E. coli cells by L-cysteine. We also found that overexpression of these eight genes reduces intracellular L-cysteine levels after cultivation in the presence of L-cysteine. Amino acid transport assays showed that Bcr overexpression conferring bicyclomycin and tetracycline resistance specifically promotes L-cysteine export driven by energy derived from the proton gradient. When a tnaA-disrupted E. coli strain expressing the altered cysE gene was transformed with a plasmid carrying the bcr gene, the transformant exhibited more L-cysteine production than cells carrying the vector only. A reporter gene assay suggested that the bcr gene is constitutively expressed at a substantial level. These results indicate that the multidrug transporter Bcr in the major facilitator family is involved in L-cysteine export and overproduction in genetically engineered E. coli cells.

Anti-Bacterial Agents↗

Apicoaortic valved conduit for a patient with porcelain aorta.

A 69-year-old woman had severe aortic stenosis with a circumferentially calcified aorta from the ascending aorta to the aortic arch, and moderately impaired left ventricular function. Implantation of an apicoaortic valved conduit was performed as aortic clamping was not feasible. The early results were excellent.

Aged↗

[Dilation of the brachial artery in response to sublingual nitroglycerin can predict the antihypertensive effects of valsartan: a study using novel high-frequency high-frame-rate ultrasound imaging].

OBJECTIVES: The efficacy of antihypertensive agents can vary in patients. Four to 8 weeks may be required before antihypertensive agents become fully effective. Predicting the efficacy can help agent selection and dose setting. This study determined whether nitroglycerin-induced vasodilation of brachial arteries can predict the antihypertensive action of angiotensin II receptor antagonist. METHODS: Untreated uncomplicated patients with essential hypertension, who gave informed consent, were studied (n = 20, mean age 55 years). Before antihypertensive treatment, nitroglycerin-induced vasodilation of the brachial arteries was measured using a novel method of 15 MHz high-frequency high-frame-rate ultrasound imaging (Hitachi EUB8000). Diameter of the brachial artery at the end-systolic phase was measured before and after 0.3 mg nitroglycerin sublingual spray and percentage vasodilation (%D-N) was calculated. The reduction of mean blood pressure after nitroglycerin (%BP-N) was calculated. Valsartan monotherapy (40-80 mg/day)was administered for 3-6 months (mean 132 days). Reduction of mean blood pressure after valsartan monotherapy (%BP-V) was calculated. RESULTS: Valsartan decreased systolic blood pressure from 138 +/- 13 to 130 +/- 17 mmHg, and diastolic blood pressure from 83 +/- 11 to 78 +/- 11 mmHg (p < 0.05). %D-N was correlated closely with %BP-V (r = - 0.70, p < 0.001). %BP-N had no correlation with %BP-V (r = 0.13, p = 0.58). CONCLUSIONS: Direct vasodilatory action of nitroglycerin on vascular smooth muscle cells may predict the chronic antihypertensive effect of angiotensin II receptor antagonist.

Angiotensin II Type 1 Receptor Blockers↗

Cardiac surgery for a patient with familial lecithin: cholesterol acyltransferase deficiency.

A 62-year-old female with familial lecithin: cholesterol acyltransferase (LCAT) deficiency was subjected to cardiac surgery consisting of mitral valve repair, tricuspid valve annuloplasty, and left atrium plication, under cardiopulmonary bypass. Familial LCAT deficiency is a very rare disease with clinical features including corneal opacity, hemolytic anemia, and renal failure. Our patient manifests partial LCAT activity and no renal failure. Patients with LCAT deficiency have fragile red blood cells, renal dysfunction, and disturbed metabolism of platelet-activating factor. To date, no record of cardiac surgery on patients with LCAT deficiency has been reported. Thus, we present the result of this experience to share what we learned about this complicated and rare disease.

Cardiopulmonary Bypass↗

Atheroma stabilizing effects of simvastatin due to depression of macrophages or lipid accumulation in the atheromatous plaques of coronary plaque-prone WHHL rabbits.

Clinical studies showed that both hydrophilic and lipophilic statins reduce coronary events although in vitro studies demonstrated that lipophilic statins inhibited proliferation of arterial smooth muscle cells. Therefore, we examined whether lipophilic simvastatin reduces smooth muscle cells in atheromatous plaque and how simvastatin affects stability of atheroma in vivo. Coronary atherosclerosis-prone WHHLCA rabbits aged 10 months were given simvastatin (15 mg/kg) orally for 52 weeks and examined the serum lipid levels, plasma drug concentration, and aortic and coronary atherosclerosis. Compared to the placebo group, the plasma cholesterol levels decreased by about 20%. In the simvastatin group, the lipid component (macrophages+extracellular lipids) was decreased in the coronary and aortic atheroma, despite no decrease in the fibromuscular components. Consequently, the frequency of vulnerable plaque decreased. In the coronary plaque of the simvastatin group, PCNA-positive cells (which appeared to be macrophages) of the plaques decreased but the TUNEL-positive cells did not show significant change. Finally, fully differentiated smooth muscle cells increased in the aortic lesions of the simvastatin group. In conclusion, our results suggest that simvastatin did not depress the fibromuscular components in atheromatous plaques and the plaque-stabilizing effects were due to the reduction of macrophages/lipid deposits.

Animals↗

Sensitive detection of myocardial viability in chronic coronary artery disease by ultrasonic integrated backscatter analysis.

BACKGROUND: Myocardial viability is not synonymous with contractile reserve and identifiable in a significant percentage of dysfunctional myocardial segments without contractile reserve. The usefulness of ultrasonic tissue characterization by the phase-corrected magnitude of cyclic variation of integrated backscatter (MVIB) in chronic coronary artery disease is not fully validated. Thus, whether MVIB predominantly reflects the contractile reserve or myocardial viability of chronically dysfunctional myocardium was determined. METHODS: The MVIB of severely dysfunctional interventricular septum or posterior wall was measured in 34 consecutive patients with previous myocardial infarction. Dobutamine stress echocardiography and fluorine-18 fluorodeoxyglucose positron emission tomography were used as the standards of contractile reserve and myocardial viability, respectively. RESULTS: Among 44 dysfunctional segments, only 15 were judged as having contractile reserve and 29 were judged as not by dobutamine stress echocardiography, whereas 26 segments showed myocardial viability using fluorine-18 fluorodeoxyglucose positron emission tomography and 18 did not. MVIB was greater in segments with than in those without contractile reserve (4.7 +/- 2.2 vs -1.4 +/- 4.9 dB, P < .0001), but there was considerable overlap between the groups. On the other hand, MVIB of segments with and without myocardial viability (4.1 +/- 2.6 vs -4.3 +/- 3.3 dB, P < .0001) was distinctly different and predicted myocardial viability with a sensitivity of 92% and a specificity of 94%. CONCLUSIONS: For patients with chronic coronary artery disease, MVIB better reflects myocardial viability than it does contractile reserve. Ultrasonic tissue characterization, in concordance with fluorine-18 fluorodeoxyglucose positron emission tomography, is a sensitive method for detecting myocardial viability.

Aged↗

Rapid increase in serum lipid peroxide 4-hydroxynonenal (HNE) through monocyte NADPH oxidase in early endo-toxemia.

We have developed a time-resolved fluoroimmunoassay (TR-FIA) for a lipid peroxide 4-hydroxynonenal (HNE), which is 100-fold more sensitive than conventional enzyme-linked immunosorbent assay (ELISA) and is an easier technique to use for a large number of samples without pre-treatment. By this assay, we found that a low dose of bacterial lipo-polysaccharide (LPS), injected intra-peritoneally (0.5 mg/kg), increased serum HNE level by 28-folds, with a peak at 20 min. LPS also increased HNE in vitro to a much higher level in the monocyte-enriched plasma than in the leukocyte-enriched plasma, with a peak at 10 min. The HNE production after LPS treatment was inhibited by apocynin, a specific NADPH oxidase inhibitor in vivo and in vitro, and to a lesser extent by dimethylsulfoxide a solvent for apocynin and a hydroxyl radical scavenger in vitro. These data suggest that monocyte NADPH oxidase is involved in the lipid peroxidation (HNE formation) in the LPS-challenged rat. This is the first clear demonstration of the link between an inflammatory stimulus and lipid peroxidation in the blood.

Aldehydes↗

Discrimination of recent ischemic myocardial changes in WHHLMI rabbits from the findings of postmortem degeneration.

To distinguish recent ischemic myocardial changes in myocardial infarction-prone Watanabe heritable hyperlipidemic (WHHLMI) rabbits from general postmortem myocardial degeneration, we examined hearts of WHHLMI rabbits after sudden death and postmortem hearts of non-atherogenic rabbits. Hearts of 8 WHHLMI rabbits were excised within 30 min of sudden death and hearts of 27 non-atherosclerotic rabbits were excised at designated periods after sacrifice. A large number of myocardial cells from WHHLMI rabbits exhibited features characteristic of ischemia (intercellular gap, intracellular edema, eosinophilia, disappearance of myocardial cells, indistinct nuclei, wavy myocardial fibers) simultaneously at regions close to proximal occluded coronary arteries. Although postmortem hearts of non-atherosclerotic rabbits exhibited similar characteristics, several features characteristic of autolyzed myocytes were also randomly observed in the left ventricle wall. Each feature was detected independently in myocardial cells or regions of the ventricle wall. In conclusion, we found several unique characteristics associated with myocardial infarction which enable discrimination between recent ischemic myocardial changes and myocardial degeneration following death.

Animals↗

[Effects of low-dose pergolide therapy on cardiac valves in patients with Parkinson's disease].

BACKGROUND: Pergolide mesilate is widely used to treat Parkinson's disease in both the USA and Japan, but the maintenance dose is distinctly different between the USA (usually more than 1.5 mg/day) and Japan (usually less than 1.5 mg/day). Although several reports from the USA have suggested that mitral, aortic, and tricuspid valvular lesions were caused by pergolide, it is unclear whether low-dose pergolide therapy causes such valvular lesions. OBJECTIVES: The effects of low-dose pergolide therapy on cardiac valves were studied in Japanese patients with Parkinson's disease. METHODS: One hundred and five consecutive patients with Parkinson's disease approved for our protocol were enrolled in this study. Forty patients were treated with low-dose pergolide (0.05-1.5 mg/day for 2-115 months), and were included in the pergolide group (mean age 71 +/- 6 years). The other 44 patients received no ergot-derived dopamine receptor agonists, and 32 patients acted as age-matched controls (mean age 71 +/- 7 years). Both groups of patients underwent echocardiographic examination to detect organic lesions in cardiac valves such as thickening of the leaflet, annular calcification, restriction of valve motion and valvular tenting, and valvular regurgitation greater than 2 + on the 4-point scale. RESULTS: No significant difference was observed in the incidence of aortic, mitral and pulmonic valve lesions between the pergolide group and the control group. Although no organic lesions were detected in the tricuspid valve, the incidence of tricuspid regurgitation was significantly higher in the pergolide group than in the control group (p < 0.05). CONCLUSIONS: Although low-dose pergolide of less than 1.5 mg/day does not cause serious damage in the left-sided valves, it may induce tricuspid regurgitation.

Aged↗

Accumulation of protein-bound 4-hydroxy-2-hexenal in spinal cords from patients with sporadic amyotrophic lateral sclerosis.

4-Hydroxy-2-hexenal (HHE) is a toxic, reactive aldehydic intermediate formed by nonenzymatic peroxidation of n-3 polyunsaturated fatty acids. The aim of this study was to determine the implication for HHE in the pathomechanism of amyotrophic lateral sclerosis (ALS) by immunohistochemical and enzyme-linked immunosorbent assay (ELISA) techniques using a mouse monoclonal IgG(1) antibody mAbHHE53 specific for protein-bound HHE. Immunohistochemical analysis on formalin-fixed, paraffin-embedded sections and frozen sections of spinal cords obtained at autopsy from 10 sporadic ALS patients and 10 age-matched control subjects demonstrated that protein-bound HHE immunoreactivity was seen and was prominent in the entire gray matter in the ALS cases and localized in the neurons, reactive astrocytes, microglial cells, and the surrounding neuropil, while the immunoreactivity was obscure or undetectable in the control cases. No significant protein-bound HHE immunoreactivity was seen in sections processed with omission of mAbHHE53 or in sections incubated with the antibody with an excess of the respective antigen. Competitive ELISA analysis on trypsin-digested protein extracts of fresh-frozen spinal cord samples disclosed a significant increase in protein-bound HHE level in the ALS cases compared with the control cases. Our results indicate that enhanced HHE formation occurs in the entire gray matter of sporadic ALS spinal cords and suggest that the selective vulnerability of motor neurons to HHE mediates the pathomechanism of this disease.

Aged↗

Effects of a lactoperoxidase-thiocyanate-hydrogen peroxide system on Salmonella enteritidis in animal or vegetable foods.

Lactoperoxidase (LPO) from skim milk was purified by ion-exchange chromatography. The purified protein was used to catalyze the oxidation of thiocyanate by H2O2 in an antibacterial system (LPO system). The LPO system was used to inactivate or inhibit Salmonella enteritidis in tomato juice, carrot juice, milk, liquid whole egg, and chicken skin extract under various conditions. The system was found to be more effective against the organism in vegetable juices than in animal products, at low pH than at neutral pH, and at higher temperatures than at lower temperatures. Acid-adapted S. enteritidis cells were more susceptible than nonadapted cells. The system reduced numbers of S. enteritidis in vegetable products by up to 5.4 log units and inhibited growth of the organism in animal-derived foods during 4 h incubation at 30 degrees C. Sodium chloride (>100 mM) and polyphosphate (0.01-0.5%) enhanced the antibacterial effects of the system in tomato juice and chicken skin extract, respectively. The findings indicate that the LPO system could probably be used to prevent the growth and survival of salmonellae in minimally processed fruit and vegetable products, but combination of the system with other preservatives or treatments would be needed to effectively inhibit growth and survival of salmonellae in animal products.

Animals↗

Maladaptive arterial remodeling with systemic hypertension associated with increased concentrations in blood of plasminogen activator inhibitor type-1 (PAI-1).

Increased carotid artery intima-media thickness (IMT), but not necessarily peripheral vessel IMT, accompanies atherosclerosis. We hypothesized that IMT in a peripheral, muscular artery known to be resistant to atherosclerotic changes would increase with hypertension, thereby limiting increases in wall stress and potentially preserving endothelial cell function reflected by flow-mediated dilation (FMD). Plasminogen activator inhibitor type-1 (PAI-1) can inhibit vascular smooth muscle cell migration contributing to increased IMT. Thus, increased PAI-1 may attenuate the mural adaptive response. A high-resolution scanner designed to delineate brachial artery FMD and IMT was used in studies of previously untreated patients with essential hypertension (n = 18) and age- and gender-matched normotensive subjects (n = 15). Brachial IMT was increased with hypertension (0.36 +/- 0.07 vs 0.27 +/- 0.03 mm in controls, p <0.01), and FMD was lower (3.6 +/- 1.5% vs 7.8 +/- 3.6, p <0.01). PAI-1 antigen in blood was increased (40.5 +/- 31.8 vs 26.3 +/- 11.6 ng/ml, p <0.05). IMT and FMD correlated positively (r = 0.63, p <0.05) in hypertensive patients. FMD correlated inversely with wall stress (r = -0.57, p <0.05). IMT correlated inversely with PAI-1 (r = -0.61, p <0.05). These observations support the hypothesis that increased PAI-1 attenuated increases in neointimal vascular smooth muscle cell cellularity. Thus, increased PAI-1 may attenuate a mural, adaptive response to hypertension associated with preservation of endothelial cell function.

Carotid Arteries↗