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Yukihito Higashi

Publications and source records attributed to Yukihito Higashi.

At least 19 recordsLinked to original sources

Effect of different intensities of exercise on endothelium-dependent vasodilation in humans: role of endothelium-dependent nitric oxide and oxidative stress.

BACKGROUND: Aerobic exercise enhances endothelium-dependent vasodilation in hypertensive patients, patients with chronic heart failure, and healthy individuals. However, it is unclear how the intensity of exercise affects endothelial function in humans. The purpose of the present study was to determine the effects of different intensities of exercise on endothelium-dependent vasodilation in humans. METHODS AND RESULTS: We evaluated the forearm blood flow responses to acetylcholine, an endothelium-dependent vasodilator, and isosorbide dinitrate, an endothelium-independent vasodilator, before and after different intensities of exercise (mild, 25% VO2max; moderate, 50% VO2max; and high, 75% VO2max; bicycle ergometers, 30 minutes, 5 to 7 times per week for 12 weeks) in 26 healthy young men. Forearm blood flow was measured using a mercury-filled Silastic strain-gauge plethysmograph. Twelve weeks of moderate-intensity exercise, but not mild- or high-intensity exercise, significantly augmented acetylcholine-induced vasodilation (7.5+/-2.4 to 11.4+/-5.8 mL/min per 100 mL tissue; P<0.05). No intensity of aerobic exercise altered isosorbide dinitrate-induced vasodilation. The administration of NG-monomethyl-L-arginine, a nitric oxide synthase inhibitor, abolished the moderate-intensity exercise-induced augmentation of the forearm blood flow response to acetylcholine. High-intensity exercise increases plasma concentrations of 8-hydroxy-2'-deoxyguanosine (from 6.7+/-1.1 to 9.2+/-2.3 ng/mL; P<0.05) and serum concentrations of malondialdehyde-modified low-density lipoprotein (from 69.0+/-19.5 to 82.4+/-21.5 U/L; P<0.05), whereas moderate exercise tended to decrease both indices of oxidative stress. CONCLUSIONS: These findings suggest that moderate-intensity aerobic exercise augments endothelium-dependent vasodilation in humans through the increased production of nitric oxide and that high-intensity exercise possibly increases oxidative stress.

Acetylcholine↗

Low body mass index is a risk factor for impaired endothelium-dependent vasodilation in humans: role of nitric oxide and oxidative stress.

OBJECTIVES: The purpose of this study was to evaluate the relationship between body mass index (BMI), including low BMIs, and endothelial function. BACKGROUND: Epidemiologic study has demonstrated that not only obesity but also a low BMI may be a risk factor for cardiovascular disease. METHODS: The forearm blood flow (FBF) response to acetylcholine (ACh) and isosorbide dinitrate (ISDN) was measured in 87 healthy young men (15 low BMI, 51 normal, 14 obese, and 7 extremely obese). RESULTS: Plasma concentrations of 8-hydroxy-2'-deoxyguanosine and serum concentrations of malondialdehyde-modified low-density lipoprotein were higher in low BMI, obese, and extremely obese subjects than in normal subjects and were similar among the low BMI, obese, and extremely obese groups. The FBF response to ACh was greater in the normal group than in the other groups (p < 0.001), and was lower in the extremely obese group as compared with the other groups (p < 0.001). The ACh-stimulated vasodilation was similar between the low BMI group and the obese group. The ISDN-stimulated vasodilation was similar in all four groups. There were no significant differences in ACh-stimulated vasodilation between the four groups after the nitric oxide (NO) synthase inhibitor NG-monomethyl-L-arginine infusion. Co-infusion of vitamin C augmented the FBF response to ACh in low BMI, obese, and extremely obese groups--but not in normal BMI group. CONCLUSIONS: These findings suggest that not only obesity but also a low BMI may be a risk factor for impaired endothelium-dependent vasodilation through the increased oxidative stress, leading to the reduced bioavailability of NO.

Acetylcholine↗

Comparison of forearm endothelial function between premenopausal and postmenopausal women with or without hypercholesterolemia.

We sought to determine whether menopausal status or postmenopausal hypercholesterolemia affects forearm resistance artery endothelial function. We studied the forearm resistance artery endothelial function in 75 Japanese women: 25 premenopausal volunteers, 25 postmenopausal women with normal serum low-density lipoprotein (LDL) cholesterol concentrations, and 25 hypercholesterolemic postmenopausal women. Excluded from the study were patients with hypertriglyceridemia, hypertension, or diabetes, cigarette smokers. The forearm blood flow (FBF) during reactive hyperemia and after sublingual nitroglycerin (NTG) administration was measured by strain-gauge plethysmography. The serum concentrations of lipoprotein (a) [Lp(a)] were significantly higher in the hypercholesterolemic postmenopausal group than in the other two groups (P<0.01). These lipid parameters were similar between the premenopausal and postmenopausal women with normal cholesterol. The FBF responses to reactive hyperemia were significantly lower in the postmenopausal hypercholesterolemic women than in the other two groups (P<0.01). The reactive hyperemia also was impaired in the postmenopausal group with normal cholesterol as compared with the premenopausal group (P<0.01). Increases in FBF after NTG were similar between the three groups. By stepwise multivariate analysis, menopausal status and serum LDL cholesterol was the significant predictor of forearm endothelial function. These findings suggest that reactive hyperemia is impaired in forearm resistance arteries after menopause, especially in postmenopausal women with hypercholesterolemia.

Adult↗

PDE5 inhibitor sildenafil citrate augments endothelium-dependent vasodilation in smokers.

Smoking is associated with endothelial dysfunction. The purpose of this study was to determine the effect of sildenafil, an inhibitor of phosphodiesterase type 5 (PDE5), on endothelial function in smokers. We evaluated the forearm blood flow (FBF) responses to acetylcholine (ACh), an endothelium-dependent vasodilator, and to sodium nitroprusside (SNP), an endothelium-independent vasodilator, before and after oral sildenafil administration (100 mg) with a strain-gauge plethysmograph in 10 young healthy male smokers and 10 young healthy male nonsmokers. FBF response to ACh was lower in smokers than in nonsmokers. The vasodilatory effects of SNP were similar in both groups. Sildenafil increased the FBF response to ACh from 9.3+/-2.0 to 12.5+/-3.5 mL/min per 100 mL tissue in smokers and from 12.6+/-5.6 to 19.6+/-8.4 mL/min per 100 mL tissue in nonsmokers, and it increased the response to SNP from 13.3+/-3.9 to 15.1+/-4.3 mL/min per 100 mL tissue in smokers and from 14.8+/-5.2 to 18.4+/-6.0 mL/min/100 mL tissue in nonsmokers (P<0.05 for all). The ratio of maximal ACh-stimulated FBF expressed as a ratio of maximal SNP-stimulated FBF significantly increased after administration of sildenafil in both groups. Infusion of NG-monomethyl-L-arginine, a nitric oxide synthase inhibitor, abolished sildenafil-induced augmentation of the FBF response to ACh in both groups. The findings suggest that endothelial function is impaired in smokers compared with that in nonsmokers, that inhibition of PDE5 by sildenafil significantly increases nitric oxide-mediated vasodilation, and that the activities of PDE5 in smokers and nonsmokers may be similar.

3',5'-Cyclic-GMP Phosphodiesterases↗

Smoking activates rho-kinase in smooth muscle cells of forearm vasculature in humans.

Previous studies have shown that smoking is strongly associated with atherosclerosis and coronary vascular disease. Rho-kinase plays an important role in various cellular functions associated with atherosclerosis and hypertension. However, there is no information on the relationship between smoking and Rho-kinase activity in humans. The purpose of this study was to determine the Rho-kinase activity in forearm vascular smooth muscle cells (VSMCs) in healthy young male smokers. We evaluated the forearm blood flow (FBF) responses to fasudil (3, 10, and 30 microg/min for 5 minutes), a Rho-kinase inhibitor, or sodium nitroprusside (0.75, 1.5, and 3.0 microg/min for 5 minutes) in current smokers (n=8) and nonsmokers (n=8). FBF was measured with a strain-gauge plethysmograph. The vasodilatory effect of fasudil was significantly greater in smokers than in nonsmokers (14.9+/-3.5 versus 10.5+/-3.6 mL/min per 100 mL tissue; P<0.01). The FBF responses to sodium nitroprusside were similar in the 2 groups (34.7+/-10.4 versus 33.2+/-10.2 mL/min per 100 mL tissue; P=0.78). These findings suggest that smoking activates Rho-kinase in forearm VSMCs but does not alter the vasodilatory effect induced by exogenous nitric oxide in forearm VSMCs in healthy young men.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Myocardial bridging increases the risk of coronary spasm.

BACKGROUND: Myocardial bridging (MB) has been associated with cardiac events. Whether coronary spasm is one factor contributing to those events is unknown. HYPOTHESIS: This study investigated whether the likelihood of coronary spasm is increased in patients with MB. METHODS: A spasm-provocation test was performed by infusing acetylcholine into the left coronary artery in 114 Japanese patients with chest pain. The test result was defined as positive when the diameter of the coronary artery was reduced by > or = 50% and ST-segment changes were documented. Myocardial bridging was defined as a > 15% reduction in coronary arterial diameter during systole after intracoronary injection of nitroglycerin. RESULTS: Myocardial bridging was identified in 41 patients (36%) and was located in the mid-segment of the left anterior descending coronary artery (LAD) in all patients. Patients with MB experienced coronary spasm more frequently than patients without MB (MB+: 73%; MB-: 40%, p = 0.0006). Furthermore, among patients with a positive spasm-provocation test, coronary spasm occurred more frequently in the mid-segment of the LAD in patients with MB than in those without MB (MB+: 73%; MB-: 45%, p = 0.0259). Multivariate regression analysis demonstrated that MB was a predictor of coronary spasm (odds ratio: 3.478, p = 0.0088). CONCLUSIONS: These results suggest that MB increases the risk of coronary spasm and that coronary spasm may be the proximate etiology of cardiac events associated with MB.

Acetylcholine↗

A comparison of low-dose and standard-dose oral estrogen on forearm endothelial function in early postmenopausal women.

We investigated the effects of low-dose estrogen plus progestin on endothelial function. Postmenopausal women received daily doses of conjugated equine estrogen (CEE, 0.625 mg) plus medroxyprogesterone acetate (MPA, 2.5 mg) (standard-dose group, n = 18), CEE (0.3 mg) plus MPA (2.5 mg) (low-dose group, n = 18), or no treatment (control group, n = 15) for 3 months. Serum concentrations of lipids and malondialdehyde (MDA)-modified low-density lipoprotein (LDL) were measured. Forearm blood flow (FBF) during reactive hyperemia and after sublingual nitroglycerin administration was measured by strain-gauge plethysmography. Decreases in serum concentrations of LDL cholesterol and MDA-modified LDL and increases in high-density lipoprotein cholesterol and nitrite/nitrate were observed in both treatment groups. After 3 months of treatment, similar increases in the maximal FBF response during reactive hyperemia were observed in both treatment groups (standard-dose group, from 35.8 +/- 3.0 to 47.5 +/- 2.8 ml/min per 100 ml tissue; and low-dose group, from 35.2 +/- 2.2 to 46.8 +/- 3.4 ml/min per 100 ml tissue, P < 0.01). FBF levels in the control group were unchanged. Treatment did not affect nitroglycerin-induced dilation. The incidences of vaginal bleeding and breast tenderness were lower with the low-dose group than with the standard-dose group. Low-dose CEE plus MPA augments endothelial function in forearm resistance arteries and decreased MDA-modified LDL levels similarly to standard doses of CEE plus MPA, with fewer side effects.

Administration, Oral↗

Leptin causes nitric-oxide independent coronary artery vasodilation in humans.

Recent studies have shown that leptin causes vasodilation. However, it is unclear whether leptin causes coronary vasodilation in humans. To determine how leptin affects human coronary arteries and whether endothelium-derived nitric oxide (EDNO) is involved in the coronary arterial response to leptin, we infused leptin (0.3, 3 and 30 ng/kg/min) for 2 min into the left coronary ostium before and after an infusion of nitric oxide synthase inhibitor, N(G)-monomethyl-L-arginine (L-NMMA), in 11 men with angiographically normal coronary arteries. The diameter of the epicardial coronary arteries was quantitatively measured, and coronary blood flow (CBF) was calculated by quantitative angiography and Doppler flow velocity measurements. The changes in these parameters in response to leptin are expressed as the % change from the baseline values. Leptin caused coronary dilation (0.3 ng/kg/min: 2.0+/-0.5%; 3 ng/kg/min: 4.9+/-0.7%; 30 ng/kg/min: 3.8+/-0.9%) and increased CBF (13.6+/-3.3%, 36.8+/-5.6%, and 39.2+/-7.4%, respectively). After the infusion of L-NMMA, leptin also caused coronary dilation (2.0+/-0.4%, 4.5+/-0.7%, and 4.6+/-0.8%, respectively) and increased CBF (14.6+/-2.8%, 39.2+/-5.7%, 40.3+/-6.2%, respectively). Leptin-induced coronary vasodilation was not affected by the infusion of L-NMMA. These results suggest that leptin dilates coronary arteries in humans. Furthermore, EDNO may not contribute to leptin-induced coronary dilation.

Aged↗

[Endothelial function].

It is well known that diabetes mellitus often combines with hypertension. Diabetes mellitus is associated with endothelial dysfunction. An imbalance of reduced production of nitric oxide or increased production of reactive oxygen species, mainly superoxide, may promote endothelial dysfunction. One mechanism by which endothelium-dependent vasodilation is impaired is an increase in the oxidative stress that inactivates nitric oxide. Both high glucose and insulin resistance reduce the bioavailability of nitric oxide through an increase in oxidative stress. It is unclear that endothelial dysfunction is a cause or consequence of hypertension. In this review, we present the possibility that endothelial dysfunction causes hypertension in diabetes mellitus.

Arteriosclerosis↗

Circadian variation of blood pressure and endothelial function in patients with essential hypertension:a comparison of dippers and non-dippers.

OBJECTIVES: The purpose of this study was to evaluate the relationship between the circadian blood pressure (BP) rhythm and endothelial function in patients with essential hypertension. BACKGROUND: Hypertension is associated with alterations in resistance artery endothelial function. Patients with a non-dipper circadian pattern of BP have a greater risk of cerebrovascular and cardiovascular complications than do patients with a dipper circadian pattern. METHODS: We evaluated the forearm blood flow (FBF) response to intra-arterial acetylcholine (ACh), an endothelium-dependent vasodilator, and isosorbide dinitrate (ISDN), an endothelium-independent vasodilator, infusion in 20 patients with non-dipper hypertension and 20 age- and gender-matched patients with dipper hypertension. The FBF was measured using a mercury-filled Silastic strain-gauge plethysmograph. RESULTS: The 24-h systolic BP, as well as nocturnal systolic and diastolic BPs were higher in non-dipper patients than in dipper patients. The 24-h urinary excretion of nitrite/nitrate and cyclic guanosine monophosphate was lower in non-dippers than in dippers. The response of FBF to ACh was smaller in non-dippers than in dippers (25.1 +/- 3.1 vs. 20.2 +/- 3.0 ml/min/100 ml tissue, p < 0.05). The FBF response to ISDN was similar in dippers and non-dippers. The FBF response to ACh was similar in the two groups following intra-arterial infusion of the nitric oxide (NO) synthase inhibitor N(G)-monomethyl-L-arginine. CONCLUSIONS: These findings suggest that endothelium-dependent vasodilation is blunted through a decrease in NO release in non-dippers compared with patients who have dipper hypertension.

Acetylcholine↗

Endothelial function and oxidative stress in renovascular hypertension.

BACKGROUND: It has been reported that renovascular hypertension activates the renin-angiotensin system, leading to an increase in oxidative stress. We sought to determine whether renal-artery angioplasty improves endothelial dysfunction in patients with renovascular hypertension through a reduction in oxidative stress. METHODS: We evaluated the response of forearm blood flow to acetylcholine, an endothelium-dependent vasodilator, and isosorbide dinitrate, an endothelium-independent vasodilator, before and after renal-artery angioplasty in 15 subjects with renovascular hypertension and 15 controls without hypertension who were matched for age and sex. Forearm blood flow was measured with the use of a mercury-filled Silastic strain-gauge plethysmograph. RESULTS: The forearm blood flow in response to acetylcholine was less in subjects with renovascular hypertension than in controls, although the forearm blood flow in response to isosorbide dinitrate was similar in the two groups. Angioplasty decreased systolic and diastolic blood pressures, forearm vascular resistance, and urinary excretion of 8-hydroxy-2'-deoxyguanosine and serum malondialdehyde-modified low-density lipoprotein (LDL), indexes of oxidative stress. After angioplasty, the mean (+/-SD) forearm blood flow in response to acetylcholine was increased in the patients with renovascular hypertension (19.3+/-6.8 vs. 29.6+/-7.1 ml per minute per 100 ml, P=0.002). The increase in the maximal forearm blood flow in response to acetylcholine correlated significantly with the decrease in urinary excretion of 8-hydroxy-2'-deoxyguanosine (r=-0.51, P=0.004) and serum malondialdehyde-modified LDL (r=-0.39, P=0.02). Coinfusion of ascorbic acid (vitamin C) augmented the response of forearm blood flow to acetylcholine before angioplasty (P<0.001) but not after angioplasty. CONCLUSIONS: These findings suggest that excessive oxidative stress is involved, at least in part, in impaired endothelium-dependent vasodilatation in patients with renovascular hypertension.

8-Hydroxy-2'-Deoxyguanosine↗

Effect of alcohol consumption on endothelial function in men with coronary artery disease.

An inverse relationship between moderate alcohol consumption and coronary artery disease (CAD) has been observed in several epidemiologic studies. Whether improvement of endothelial function is involved in this beneficial effect is unknown. We investigated endothelial function of the brachial artery in 108 men with CAD, 54 of whom consumed alcohol on at least 1 day per week. Brachial artery diameter responses to hyperemic flow (FMD) and to administration of nitroglycerin (NTG) spray were measured using high- resolution ultrasonography. Coronary risk factors and hyperuricemia were present more frequently among drinkers, who also had higher concentrations of triglyceride and apolipoproteins C2, C3, and E. FMD was greater in drinkers (P<0.0001), while NTG-induced dilation was not. Multiple regression analysis showed alcohol consumption to be one of the factors favorably influencing FMD. These findings suggest that alcohol consumption may improve endothelial function in men with CAD.

Aged↗

Tetrahydrobiopterin enhances forearm vascular response to acetylcholine in both normotensive and hypertensive individuals.

BACKGROUND: A deficiency of tetrahydrobiopterin (BH4), an essential cofactor for nitric oxide (NO) synthase, decreases NO synthesis and increases superoxide production. Supplementation of BH4 has been postulated to improve endothelial function in atherosclerotic patients. The purpose of this study was to determine whether BH4 restores endothelium-dependent vasodilation in patients with essential hypertension. METHODS: We evaluated the effects of BH4 on forearm vascular responses to acetylcholine (ACh), an endothelium-dependent vasodilator, and isosorbide dinitrate (ISDN), an endothelium-independent vasodilator, both in patients with essential hypertension and in age- and sex-matched normal control subjects. Forearm blood flow (FBF) was measured using strain gauge plethysmography. RESULTS: The response of FBF to ACh was less in hypertensive patients (n = 8) than in normal control subjects (n = 8). There was no significant difference in FBF response to ISDN in the two groups. During coinfusion of BH4 (500 mg/min), the FBF response to ACh in hypertensive patients increased significantly (14.8 +/- 4.6 to 25.6 +/- 7.3 mL/min/100 mL tissue, P < .05) to the level of normal control subjects. In the control subjects, also, BH4 augmented the FBF response to ACh (27.8 +/- 8.7 to 36.1 +/- 9.6 mL/min/100 mL tissue, P < .05). The increase in FBF after ISDN was not altered by BH4 in either group (each group, n = 6). CONCLUSION: Supplementation of BH4 augments endothelium-dependent vasodilation in both normotensive and hypertensive individuals.

Acetylcholine↗

A low-calorie diet improves endothelium-dependent vasodilation in obese patients with essential hypertension.

BACKGROUND: Both obesity and hypertension are associated with endothelial dysfunction. The purpose of this study was to investigate the effects of a low-calorie diet on endothelial function in obese patients with essential hypertension. METHODS: We measured forearm blood flow (FBF) during intra-arterial infusion of acetylcholine (ACh; 7.5, 15, 30 microg/min), an index of endothelium-dependent vasodilation, and isosorbide dinitrate (ISDN; 0.75, 1.5, 3.0 microg/min), an index of endothelium-independent vasodilation, in obese patients with essential hypertension before and after 2 weeks on a low-calorie diet (800 kcal/d). The study included 11 obese hypertensive Japanese patients (mean body mass index, 30.8 +/- 3.6 kg/m2). Fifteen healthy Japanese normotensive individuals were recruited as a control group. RESULTS: In obese patients with hypertension, the response of FBF to ACh was attenuated compared to healthy individuals (P < .001). Caloric restriction reduced body weight from 77.5 +/- 15.0 to 73.2 +/- 13.5 kg (P < .01), the mean blood pressure from 118.4 +/- 8.7 to 105.7 +/- 8.5 mm Hg (P < .01), fasting plasma insulin from 85.8 +/- 22.8 to 64.8 +/- 27.0 pmol/L (P < .05), serum total cholesterol from 5.30 +/- 0.76 to 4.67 +/- 0.58 mmol/L (P < .05), and low density lipoprotein cholesterol from 3.80 +/- 0.48 to 3.29 +/- 0.44 mmol/L (P < .05). Basal FBF was similar before and after weight reduction. Caloric restriction enhanced the response of FBF to ACh (P < .05), but did not alter the response to ISDN. The intra-arterial infusion of NG-monomethyl-L-arginine (8 micromol/min), a nitric oxide synthase inhibitor, decreased the enhanced ACh-induced blood flow response induced by caloric restriction. CONCLUSIONS: The present findings suggest that the caloric restriction improves endothelial-dependent vasodilation through an increased release of nitric oxide in obese hypertensive patients.

Acetylcholine↗

Severity of hypertension affects improved resistance artery endothelial function by angiotensin-converting enzyme inhibition.

The purpose of this study was to determine whether there are differences in the restoration of endothelial function by angiotensin-converting enzyme inhibition based on the severity of hypertension. Forearm blood flow (FBF) was measured in 69 patients with essential hypertension (mild, n = 23; moderate, n = 29; and severe, n = 17 randomly assigned to treatment with either imidapril or amlodipine for 24 weeks in a double-blind fashion during reactive hyperemia and after sublingual administration of nitroglycerin. Imidapril augmented the FBF response to reactive hyperemia after 24 weeks of treatment in the mild and moderate hypertensive groups, but not in the severe hypertensive group. The augmentation of the FBF response to reactive hyperemia induced by imidapril was significantly greater in the moderate hypertensive group than in the mild hypertensive group. Amlodipine did not alter the FBF response to reactive hyperemia. The increase in FBF after the sublingually administered nitroglycerin was similar in all groups. The infusion of NG-monomethyl-l-arginine, a nitric oxide synthase inhibitor, abolished the enhancement of reactive hyperemia in the mild and moderate hypertensive groups treated with imidapril. These findings suggest that the effects of imidapril on endothelial function are affected by the severity of hypertension and that angiotensin-converting enzyme inhibitor-induced augmentation of reactive hyperemia may be due to increased nitric oxide production.

Adult↗

Excess norepinephrine impairs both endothelium-dependent and -independent vasodilation in patients with pheochromocytoma.

There is little information concerning the interaction of nitric oxide and norepinephrine (NE) on endothelial function in humans. The purpose of this study was to determine whether endothelial function is impaired by NE secreted from patients with pheochromocytoma (pheo) and whether surgical resection of the tumor improves endothelial function in these patients. We evaluated the forearm blood flow (FBF) response to acetylcholine (ACh), an endothelium-dependent vasodilator, and isosorbide dinitrate (ISDN), an endothelium-independent vasodilator, before and after adrenalectomy in 8 pheo patients, 20 normotensive subjects, and 20 patients with essential hypertension. FBF was measured using a mercury-filled silastic strain-gauge plethysmograph. The FBF response to ACh was the greatest in normotensive subjects and the least in pheo patients. The FBF response to ISDN was significantly less in pheo patients than in the other 2 groups, which had similar responses to ISDN. Adrenalectomy significantly decreased plasma and urinary NE, systolic and diastolic blood pressures, heart rate, and forearm vascular resistance. After adrenalectomy, FBF responses to both ACh and ISDN were enhanced in all pheo patients. The ratio of maximal ACh-stimulated FBF to maximal ISDN-stimulated FBF was significantly higher after adrenalectomy than before adrenalectomy (2.1 +/- 0.4 versus 1.1 +/- 0.1; P<0.05). The increase in maximal FBF response to ACh correlated significantly with the decrease in urinary excretion of NE (r=-0.62, P<0.01). These findings suggest that excess NE from pheo may predominantly impair endothelium-dependent vasodilation in humans.

Adrenalectomy↗

Hormone replacement effects on endothelial function measured in the forearm resistance artery in normocholesterolemic and hypercholesterolemic postmenopausal women.

We investigated whether forearm resistance artery endothelial function differed between hypercholesterolemic postmenopausal women (n = 41) and normocholesterolemic postmenopausal women (n = 37), both generally and in terms of effects of long-term hormone replacement therapy (HRT) on endothelial function. Both menopause and hypercholesterolemia are associated with endothelial dysfunction and increased coronary risk. Forearm blood flow (FBF) during reactive hyperemia and after sublingual nitroglycerin (NTG) administration was measured by strain-gauge plethysmography. Treated women received conjugated equine estrogen (0.625 mg) plus medroxyprogesterone acetate (2.5 mg) daily for 6 months. Nitrite/nitrate, angiotensin-converting enzyme, and lipids were measured in serum. FBF during reactive hyperemia as well as serum nitrite/nitrate concentrations were significantly lower in hypercholesterolemic than normocholesterolemic subjects. Increases in the FBF induced by NTG were similar in the two groups. HRT significantly increased estradiol, high-density lipoprotein cholesterol, and serum nitrite/nitrate, while decreasing circulating angiotensin-converting enzyme activity in both groups. Reduction in total and low-density lipoprotein cholesterol was seen only in hypercholesterolemic subjects. After 6 months of HRT, maximal FBF response during reactive hyperemia increased in both groups. Augmentation of this response was greater in hypercholesterolemic than in normocholesterolemic subjects (maximal FBF, 55.4 +/- 11.2 vs. 25.9 +/- 11.5%; P < 0.05). Changes in the FBF with NTG were not altered by HRT in either group. Long-term HRT augments endothelial function in forearm resistance artery. This beneficial effect is greater in patients with hypercholesterolemia.

Arteries↗

Leptin causes vasodilation in humans.

Leptin, a product of the ob gene, plays an important role in the regulation of body fat and has been suggested to cause vasodilation in rats. The purpose of this study was to evaluate whether leptin also has a vasodilating effect in humans. Using a strain-gauge plethysmography, we evaluated forearm blood flow (FBF) during intra-arterial infusion of leptin (1, 10 or 100 ng/kg/min for 5 min) in the absence and presence of the nitric oxide synthase inhibitor N(G)-monomethyl-L-arginine (L-NMMA; 8 micromol/min for 5 min) in ten healthy men (mean age, 23.0+/-1.2 years). Leptin infusion significantly increased the FBF (8.5+/-3.8, 20.3+/-7.0 and 17.7+/-5.4% at 1, 10 and 100 ng/kg/min of leptin, respectively; p<0.05) and the forearm vascular resistance (FVR; -6.9+/-3.1, -14.6+/-4.3 and -13.4+/-3.9% at 1, 10 and 100 ng/kg/min of leptin, respectively; p<0.05). No significant changes in blood pressure or heart rate were detected during infusion of leptin. The intra-arterial infusion of L-NMMA did not alter the FBF response (6.6+/-4.9, 22.1+/-7.5, 13.3+/-3.2% at 1, 10 and 100 ng/kg/min of leptin, respectively) or the FVR response (-4.3+/-4.6, -15.2+/-5.4, -11.1+/-2.5% at 1, 10 and 100 ng/kg/min of leptin, respectively) to leptin. These findings suggest that leptin per se directly causes vasodilation and that leptin-induced vasodilatation is nitric oxide-independent in healthy men.

Adult↗