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Biomedical subjects

Namio Higa

Publications and source records attributed to Namio Higa.

7 recordsLinked to original sources

Vascular lipotoxicity: endothelial dysfunction via fatty-acid-induced reactive oxygen species overproduction in obese Zucker diabetic fatty rats.

Vascular endothelial dysfunction has been demonstrated in obesity, but the molecular basis for this link has not been clarified. We examined the role of free fatty acids (FFA) on vascular reactivity in the obese fa/fa Zucker diabetic fatty (ZDF) rat. Addition of acetylcholine produced a dose-dependent relaxation in aortic rings of ZDF and lean +/+ rats, but the ED(50) value was higher in ZDF (-6.80 +/- 0.05 vs. -7.11 +/- 0.05 log(10) mol/liter, P = 0.033). A 2-wk treatment with a 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitor, pitavastatin (3 mg/kg/d) or a reduced nicotinamide adenine dinucleotide phosphate (NADPH) oxidase inhibitor, apocynin (5 mmol/liter in drinking water), improved the response in ZDF (ED(50), -7.16 +/- 0.03 and -7.14 +/- 0.05 log(10) mol/liter, P = 0.008 and P = 0.015 vs. vehicle, respectively). Vasodilator response to sodium nitroprusside was identical between ZDF and +/+ rats. Vascular reactive oxygen species (ROS) levels and NADPH oxidase activity in aorta were increased in ZDF rats but were decreased by pitavastatin. In in vitro cell culture, intracellular ROS signal and NADPH oxidase subunit mRNA were increased by palmitate, but this palmitate-induced ROS production was inhibited by NADPH oxidase inhibitor or pitavastatin. In conclusion, FFA-induced NADPH oxidase subunit overexpression and ROS production could be involved in the endothelial dysfunction seen in obese ZDF rats, and this could be protected by pitavastatin or NADPH oxidase inhibitors.

Acetophenones↗

Effects of a single administration of acarbose on postprandial glucose excursion and endothelial dysfunction in type 2 diabetic patients: a randomized crossover study.

CONTEXT: Postprandial hyperglycemia has been reported to elicit endothelial dysfunction and provoke future cardiovascular complications. A reduction of postprandial blood glucose levels by the alpha-glucosidase inhibitor acarbose was associated with a risk reduction of cardiovascular complications, but effects of acarbose on endothelial function have never been elucidated. DESIGN: This study was aimed to assess the efficacy of acarbose on postprandial metabolic parameters and endothelial function in type 2 diabetic patients. Postprandial peakglucose (14.47 +/- 1.27 vs. 8.50 +/- 0.53 mmol/liter), plasma glucose excursion (PPGE), and change in the area under the curve (DeltaAUC)glucose after a single loading of test meal (total 450 kcal; protein 15.3%; fat 33.3%; carbohydrate 51.4%) were significantly higher in diet-treated type 2 diabetic patients (n = 14) than age- and sex-matched controls (n = 12). RESULTS: The peak forearm blood flow response and total reactive hyperemic flow (flow debt repayment) during reactive hyperemia, indices of resistance artery endothelial function on strain-gauge plethysmography, were unchanged before and after meal loading in controls. But those of diabetics were significantly decreased 120 and 240 min after the test meal. A prior administration of acarbose decreased postprandial peakglucose, PPGE, and DeltaAUCglucose. The peak forearm blood flow and flow debt repayment were inversely well correlated with peakglucose, PPGE, and DeltaAUCglucose but not with DeltaAUCinsulin or the other lipid parameters. CONCLUSIONS: Even a single loading of test meal was shown to impair endothelial function in type 2 diabetic patients, and the postprandial endothelial dysfunction was improved by a prior use of acarbose. Acarbose might reduce macrovascular complication by avoiding endothelial injury in postprandial hyperglycemic status.

Acarbose↗

Electrophysiologic characteristics of atrial myocytes in levo-thyroxine-treated rats.

To investigate whether thyroid hormone modulates electrical properties of atrial myocytes, electrocardiogram (ECG), action potentials (APs), and ionic currents were measured. Male Sprague-Dawley rats were randomly divided into control and levo-thyroxine (T4)-treated groups at 6 weeks of age. Levo-thyroxine (500 microg/kg of body weight) was injected daily into the peritoneal cavity for 14 days (T4-treated rats) and the same volume of saline was injected in control rats daily. ECG signals were recorded using apex-base leads. APs, voltage-dependent Na+ and L-type Ca2+ channel current (I(Na) and I(Ca(L))), inwardly rectifying K+ channel current (I(K1)), transient outward K+ channel current (I(to)), and delayed rectifier K+ channel current (I(K(delay))) were measured using patch-clamp techniques. T4 treatment significantly changed electrical properties in rat atrial myocytes, including (1) the increase in heart rate, (2) the increase in cell size, (3) the shortening of action potential duration (APD), (4) the increase in cell membrane capacitance (C(m)), and (5) the decrease in input resistance (R(in)). Although the current densities of I(Na) and I(K1) in T4-treated atrial myocytes did not differ from those in control cells, I(Ca(L)) was significantly decreased and I(K(delay)) was significantly increased in T4-treated rats. Thus, thyrotoxicosis could induce the shortening of APD by alterations in current density of both I(Ca(L)) and I(K(delay)) in rat atrial myocytes.

Action Potentials↗

Effect of sodium channel blocker, pilsicainide hydrochloride, on net inward current of atrial myocytes in thyroid hormone toxicosis rats.

To investigate effect of pilsicainide hydrochloride (pilsicainide) on electrocardiogram (ECG) signals and action potentials (APs) of atrial myocytes, levo-thyroxine (T4, 500 microg/kg body weight) was daily injected into peritoneal cavity of Sprague-Dawley rats for 14 days. T4-treatment significantly shortened RR interval, P wave, and QRS complex durations on ECG. Although pilsicainide did not affect the heart rate, P wave and corrected QT interval (QTc) was increased in T4-treated rats. AP recordings revealed that AP durations at 20%, 50%, and 90% repolarization were significantly shortened and maximal rate of rise (Max dV/dt) was significantly increased in T4-treated rat atrial cells. Pilsicainide significantly decreased AP amplitude (APA) and Max dV/dt in both control and T4-treated rat atrial cells. Concentration-inhibition study demonstrated that pilsicainide significantly inhibited net inward current of T4-treated rats at lower concentration (IC50 of 29.2 microg/mL) than that of control rats (133 microg/mL). In conclusion, pilsicainide could decrease the conduction velocity in T4-treated rat atrium by decreasing the Max dV/dt and net inward current, which could be a possible treatment of thyrotoxicosis-induced arrhythmia.

Action Potentials↗

Fluvastatin improves endothelial dysfunction in overweight postmenopausal women through small dense low-density lipoprotein reduction.

Small dense low-density lipoprotein (sdLDL), which are often associated with obesity, are considered as the most atherogenic and have been shown to impair endothelial function. It is not known whether reduction of sdLDL by pharmacological intervention can improve endothelial function. Thirty-four consecutive postmenopausal women with >/=5.70 mmol/L total cholesterol were placed into either an overweight (body mass index [BMI] >/= 25.0, n = 22) or a normal-weight (BMI < 25.0, n = 12) group, and forearm blood flow (FBF) was measured using strain-gauge plethysmography during reactive hyperemia before and after fluvastatin treatment. At baseline, the peak FBF during reactive hyperemia in the overweight group was less than that in the normal-weight group (mean +/- SD, 13.6 +/- 4.4 v 22.2 +/- 4.0 mL/min/100 mL, P <.01). The maximal FBF after nitroglycerin was similar in both groups. In the stepwise multiple regression analysis, only the concentration of sdLDL was the predictor for peak FBF (standard coefficient = -0.517, P =.0115). The nonsignificant parameters for the correlations in the model were age, BMI, systolic blood pressure, the homeostasis model assessment of insulin resistance (HOMA-IR), hemoglobin A(1c) (HbA(1c)), and LDL-cholesterol. Fluvastatin treatment was associated with the recovery of the peak FBF in the overweight group but it did not influence that of the normal-weight group. Changes in sdLDL fractions by fluvastatin correlated well with the peak FBF recovery. These results suggested that an increased sdLDL was linked to endothelial dysfunction in overweight postmenopausal women and fluvastatin treatment improved endothelial dysfunction by decreasing the atherogenic sdLDL fraction in this population.

Aged↗

Hypoadiponectinemia is closely linked to endothelial dysfunction in man.

Vascular endothelial dysfunction has been demonstrated in overweight or obese patients, but the molecular basis for this link has not been clarified. We asked what the relationship was between adiponectin, an adipose-specific molecule, and endothelial function. Forearm blood flow (FBF) was measured during reactive hyperemia by using strain-gauge plethysmography in 76 Japanese subjects without a history of cardiovascular or cerebrovascular disease, diabetes mellitus, hepatic, or renal disease. The peak FBF and total reactive hyperemic flow [flow debt repayment (FDR)] during reactive hyperemia were correlated with waist circumference (r = -0.418 and -0.414, respectively) and body mass index (r = -0.597 and -0.626, respectively). After correcting for age, gender, and body mass index, the peak FBF was correlated with systolic blood pressure (r = -0.294; P = 0.010), free fatty acid (FFA) (r = -0.331; P = 0.004), and adiponectin in log 10 (r = 0.492; P < 0.001), and FDR was correlated with adiponectin in log 10 (r = 0.462; P = 0.001). In stepwise multiple regression analyses, predictive variables for peak FBF were adiponectin in log 10 (r = 0.468) and FFA (r = -0.292; r(2) = 0.487; P < 0.0001); and predictive variables for FDR were adiponectin in log 10 (r = 0.474) and FFA (r = -0.275; r(2) = 0.346, P < 0.0001). Endothelial function was impaired in proportion to the severity of obesity, and the level of severity was closely related to plasma adiponectin levels. Adiponectin may play a protective role against the atherosclerotic vascular change, and loss of effects enhances endothelial dysfunction, as in obese people.

Adiponectin↗

Comparison of the antioxidant and vascular effects of gliclazide and glibenclamide in Type 2 diabetic patients: a randomized crossover study.

The aim of the present study is to compare the short-term effects of gliclazide and glibenclamide on the oxidative state and vascular endothelium function of Type 2 diabetic patients in an observer-blinded, randomized crossover study. Thirteen Type 2 diabetic patients were enrolled: one group of seven patients took daily 160 mg of gliclazide for the first 4 weeks and then daily 5 mg of glibenclamide for the next 4 weeks; another group of six patients took daily 5 mg of glibenclamide for the first 4 weeks and 160 mg of gliclazide for the next 4 weeks. Forearm blood flow (FBF) measurement for endothelial function and biochemical analyses were conducted before and after each crossover treatment. Four weeks of treatment with either sulfonylurea showed the similar antihyperglycemic effects and enhancement of the peak FBF and total reactive hyperemic flow (flow debt repayment: FDR) during reactive hyperemia. Treatment with gliclazide resulted in the significant reduction to about 60% of baseline in urinary 8-iso-prostaglandin F2alpha (8iPGF2alpha) excretion while no such change was detected in the glibenclamide period. The increases in peak FBF and FDR were in parallel with its anti-hyperglycemic effect, but not with antioxidant state. Results suggest that gliclazide and glibenclamide can protect vascular endothelium from hyperglycemia-induced injury in Type 2 diabetic patients.

Aged↗