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Assessment of endothelial function of the renal vasculature in human subjects.

BACKGROUND: L-Arginine, the substrate of nitric oxide (NO) synthase, and N(G)-monomethyl-L-arginine (L-NMMA), a competitive inhibitor of endothelial NO synthase, are used to analyze endothelial function of the renal vasculature. However, little is known about the appropriate dose of L-arginine to be used and the duration of action of L-arginine and L-NMMA. METHODS: Twenty-nine healthy male subjects (age, 27+/-1 years) were examined. In protocol 1 (N = 17), L-arginine at low (100 mg/kg) and high dose (250 mg/kg), and high-dose L-arginine combined either with L-NMMA (total dose, 4.25 mg/kg; N = 9) or placebo (N = 8) were given. In protocol 2 (N = 12), L-NMMA was given before L-arginine infusion (100 mg/kg). Glomerular filtration rate (GFR) and renal plasma flow (RPF) were measured at rest and at the end of each infusion step. RESULTS: In protocol 1, L-arginine dose dependently increased RPF and GFR (RPF: 599+/-19 v 630+/-18 v 690+/-24 mL/min, P <.05; GFR: 111+/-3 v 115+/-3 v 121+/-3 mL/min, P <.01; for baseline, L-arginine 100 mg/kg and 250 mg/kg, respectively). However, these changes could not be antagonized by coinfusion of L-NMMA to L-arginine 250 mg/kg: RPF and GFR remained unchanged in both the placebo and the L-NMMA group. In protocol 2, L-NMMA decreased RPF (492+/-18 v 567+/-27 mL/min, P <.01) and increased GFR (122+/-4 v 118+/-3 mL/min, P <.05). These changes could only be partially reversed by subsequent infusion of L-arginine (RPF: 533+/-15 mL/min; GFR: 121+/-4 mL/min; both parameters P = NS v L-NMMA and v baseline). CONCLUSIONS: L-arginine at a dose of 100 mg/kg is sufficient to analyze endothelial function of the renal vasculature. The prolonged effect of L-NMMA and L-arginine must be taken into account in study protocols using both substances. Thus, stimulation and blockade of NO synthase cannot be examined in the same protocol.

Adult↗

Augmentation of endothelial function by endothelin antagonism in human saphenous vein conduits.

OBJECT: Cerebral revascularization with saphenous vein (SV) conduits is used in the management of hard-to-treat lesions that require deliberate arterial occlusion and in selected patients with occlusive vascular disease. Endothelial dysfunction is thought to contribute to acute perioperative vasospasm and chronic graft atherosclerosis. In the present study the authors examined the contribution of the potent vasoconstrictor endothelin-1 (ET-1) to endothelial dysfunction in human SVs. METHODS: The effects of an ET(A/B) receptor antagonist (bosentan), an ET(A) receptor antagonist (BQ-123), and an ET(B) receptor antagonist (BQ-788) on in vitro endothelium-dependent and -independent responses were studied in human SVs. Vascular segments were obtained in 34 patients who had undergone revascularization procedures, and isometric dose-response curves (DRCs) were constructed using the isolated tissue bath procedure as follows: 1) cumulative DRCs to norepinephrine; and 2) DRCs to acetylcholine (ACh) and sodium nitroprusside in the absence and presence of bosentan, BQ-123, or BQ-788. Maximal vasodilatory responses and sensitivity were compared between groups. In the presence of bosentan (Experiment 1) and BQ-123 or BQ-788 (Experiment 2), ACh responses were significantly augmented (percent maximum relaxation values: 7+/-2 [control] compared with 17+/-3 [bosentan], p < 0.002 [Experiment 1]; and 12+/-2 [control] compared with 29+/-2 [BQ-123] and 25+/-2 [BQ-788], p < 0.003 and p < 0.002, respectively [Experiment 2]). The sensitivity of SVs to ACh was unaffected by treatment. These beneficial effects were specific for the endothelium. CONCLUSIONS: Blockade of ET receptors significantly improves endothelial function in SVs. Furthermore, these effects appear to be independently and maximally mediated by antagonism of either ET(A) or ET(B) receptors. Interventions aimed at improving endothelial function may serve to counter perioperative vasospasm and impede atherosclerosis in SVs used for revascularization procedures.

Aged↗

Dissociation between insulin sensitivity of glucose uptake and endothelial function in normal subjects.

Insulin increases limb blood flow in a time- and dose-dependent manner. This effect can be blocked by inhibiting nitric oxide synthesis. These data raise the possibility that insulin resistance is associated with endothelial dysfunction. To examine whether endothelial function and insulin sensitivity are interrelated we quantitated in vivo insulin-stimulated rates of whole body and forearm glucose uptake at a physiological insulin concentration (euglycaemic hyperinsulinaemic clamp, 1 mU.kg-1.min-1 insulin infusion for 2 h) and on another occasion, in vivo endothelial function (blood flow response to intrabrachial infusions of sodium nitroprusside, acetylcholine, and N-monomethyl-L-arginine) in 30 normal male subjects. Subjects were divided into an insulin-resistant (IR) and an insulin-sensitive (IS) group based on the median rate of whole body glucose uptake (31 +/- 2 vs 48 +/- 1 mumol.kg-1.min-1, p < 0.001). The IR and IS groups were matched for age, but the IR group had a slightly higher body mass index, percentage of body fat and blood pressure compared to the IS group. The IR group also had diminished insulin-stimulated glucose extraction (p < 0.05) compared to the IS group, while basal and insulin-stimulated forearm blood flow rates were identical. There was no difference between the IR and IS groups in the forearm blood flow response to endothelium-dependent (acetylcholine and N-monomethyl-L-arginine) or -independent (sodium nitroprusside) vasoactive drugs. In conclusion, the ability of insulin to stimulate glucose uptake at physiological insulin concentrations and endothelium-dependent vasodilatation are distinct phenomena and do not necessarily coexist.

Acetylcholine↗

High tissue affinity angiotensin-converting enzyme inhibitors improve endothelial function and reduce infarct size.

BACKGROUND: Angiotensin-converting enzyme (ACE) inhibitors differ in their ability to inhibit tissue ACE. This study was, therefore, undertaken to determine whether high tissue affinity ACE inhibitors would improve endothelial function and thereby decrease tissue necrosis during ischemia. METHODS: In a porcine model, the second and third diagonal vessels were occluded for 90 minutes, followed by 45 minutes of cardioplegic arrest and 180 minutes of reperfusion. During the period of coronary occlusion, 10 pigs received enalaprilat (low affinity tissue ACE inhibitor), 0.05 mg/kg intravenously, 10 received quinaprilat (high affinity tissue ACE inhibitor), 10 mg intravenously, and 10 others received no ACE inhibitor. RESULTS: Wall motion scores (4, normal, to -1, dyskinesia) were higher in animals treated with ACE inhibitors (3.20+/-0.15 SE enalaprilat versus 3.08+/-0.23 quinaprilat versus 1.52+/-0.07 no ACE; both p < 0.0001 from no ACE). Endothelial-dependent relaxation to bradykinin was best preserved in the quinaprilat-treated hearts (32.1%+/-7.6% enalaprilat versus 65.8%+/-12.6% quinaprilat versus 30.6%+/-10.7% no ACE; p < 0.0001 from no ACE; p < 0.005 from enalaprilat). This was associated with a greater reduction in infarct size: area necrosis/area risk 24.3%+/-0.8% enalaprilat (p < 0.0001 from no ACE) versus 14.3%+/-3.2% quinaprilat (p < 0.0001 from no ACE; p < 0.005 from enalaprilat) versus 40.0%+/-1.7% no ACE. CONCLUSIONS: ACE inhibitors with higher affinity to tissue ACE result in better preservation of endothelial function and less tissue necrosis during coronary revascularization.

Angiotensin-Converting Enzyme Inhibitors↗

Endothelial function of young healthy males following whole body resistance training.

Given the increasing emphasis on performance of resistance exercise as an essential component of health, we evaluated, using a prospective longitudinal design, the potential for resistance training to affect arterial endothelial function. Twenty-eight men (23 +/- 3.9 yr old; mean +/- SE) engaged in 12 wk of whole body resistance training five times per week using a repeating split-body 3-day cycle. Brachial endothelial function was measured using occlusion cuff-induced flow-mediated dilation. After occlusion of the forearm for 4.5 min, brachial artery dilation and postocclusion blood flow was measured continuously for 15 and 70 s, respectively. Peak and 10-s postocclusion blood flow, shear rate, and brachial artery flow-mediated dilation (relative and normalized to shear rate) were measured pretraining (Pre), at 6 wk of training (Mid), and at 13 wk of training (Post). Results indicated an increase of mean brachial artery diameter by Mid and Post vs. Pre. Peak and 10-s postocclusion blood flow increased by Mid and remained elevated at Post; however, shear rates were not different at any time point. Relative and normalized flow-mediated dilation was also not different at any time point. This study is the first to show that peripheral arterial remodeling does occur with resistance training in healthy young men. In addition, the increase in postocclusion blood flow may indicate improved resistance vessel function. However, unlike studies involving endurance training, flow-mediated dilation did not increase with resistance training. Thus arterial adaptations with high-pressure loads, such as those experienced during resistance exercise, may be quite different compared with endurance training.

Adaptation, Physiological↗

Effect of a 3-year therapy with the 3-hydroxy-3-methylglutaryl coenzyme a reductase-inhibitor fluvastatin on endothelial function and distensibility of large arteries in hypercholesterolemic renal transplant recipient.

BACKGROUND: In patients after renal transplantation functional arterial vessel wall properties are impaired. Whether 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors have a sustained effect on endothelial function and arterial distensibility in patients after renal transplantation is not clear. The authors studied the effects of a long-term therapy with fluvastatin on large artery distensibility and flow-mediated vasodilation (FMD) in hypercholesterolemic patients after renal transplantation in a prospective, blinded, and randomized trial. METHODS: Twenty-six patients who had undergone renal transplantation were assigned randomly to either fluvastatin, 40 mg/d (n = 13) or placebo (n = 13) and underwent follow-up for 3 years. At baseline and after 6, 12, and 36 months of treatment, carotid and brachial artery distensibility, endothelium-dependent FMD, and nitroglycerine-induced vasodilation (NMD) of the brachial artery were measured by a echo-tracking device. RESULTS: A significant decrease in total and low-density cholesterol was observed after 6, 12, and 36 months in patients treated with fluvastatin but not in the placebo group. FMD increased with fluvastatin from 4.6 +/- 2% to 12.4 +/- 2% after 12 months; this improvement was sustained with 13.4 +/- 3% after 36 months (P < 0.05). However, placebo did not alter FMD (P < 0.001 for trend difference between groups by analysis of covariance). Endothelium-independent NMD was similar in both groups at baseline and during therapy. Neither carotid nor brachial artery distensibility coefficients were altered by either treatment. CONCLUSION: HMG-CoA reductase inhibitor therapy over 3 years results in a significant and sustained improvement of endothelial function in hypercholesterolemic patients after renal transplantation. However, this is not accompanied by a beneficial effect on impaired large artery distensibility even after long-term therapy with fluvastatin.

Anticholesteremic Agents↗

Early morning attenuation of endothelial function in healthy humans.

BACKGROUND: Cardiovascular events such as myocardial infarction, sudden death, and stroke have a peak incidence in the early hours after waking. The mechanisms involved in this circadian variation are not clear. Endothelial dysfunction is associated with increased risk for cardiovascular events. We tested the hypothesis that endothelial function is reduced in the early morning, around the time of waking, compared with measurements obtained both before sleep and later in the day in healthy humans. METHODS AND RESULTS: We studied 30 subjects (19 men, 11 women; mean age, 41.6 years). All participants underwent polysomnography to exclude obstructive sleep apnea or other sleep disorders. Brachial artery flow-mediated endothelium-dependent vasodilation (FMD) and endothelium-independent dilation (non-FMD) were measured on 3 different occasions: before subjects went to sleep (9 PM), the next morning immediately after waking (6 AM), and during the late morning 5 hours after waking (11 AM). All subjects had normal sleep with good sleep efficiency of 84+/-2%. Compared with before sleep, FMD decreased markedly in the early morning after waking and recovered by late morning (9 pm, 7.5+/-1%; 6 am, 4.4+/-0.7%; 11 am, 7.7+/-1%; P=0.02). Non-FMD was similar for the 3 periods of observation (9 pm, 17.3+/-1.6%; 6 am, 17.2+/-1.3%; 11 am, 18.5+/-1.7%). CONCLUSIONS: FMD is blunted in the early morning in healthy subjects. Decreased endothelial function in the early morning may have implications for our understanding of the morning peak in cardiac and vascular events.

Adult↗

Endothelial function of human vena saphena magna prepared with different minimally invasive harvesting techniques.

OBJECTIVES: Minimally invasive saphenous harvesting techniques have been shown to reduce post-operative morbidity. However, when applying new techniques of vein harvesting, endothelial integrity should be preserved in order to guarantee graft quality. We investigated the impact of two different minimally invasive saphenous vein harvesting techniques on endothelial function compared with the traditional 'open' technique by inducing endothelium-dependent in vitro relaxation. METHODS: Two different minimally invasive techniques for harvesting the greater saphenous vein were used in 66 patients, either using a video-assisted dissector (ETHI, n=33) or a light coupled retractor (AUTS, n=33); other patients were treated conventionally (CONV, n=30). The physiological response was tested in vitro using an organ chamber on vein segments exposed to acetylcholine after precontraction with potassium. RESULTS: In both minimally invasive groups, two patients each had to be converted to the traditional open technique and dropped out of the study. The endothelial function of the other veins harvested by either of the minimally invasive techniques showed no significant difference compared with veins harvested conventionally. Reactivity was measured as the percentage relaxation of pharmacological contraction and was significant in all groups (P<0.05); ETHI, 49.1+/-4.2%; AUTS, 48.8+/-5.1%; and CONV, 51.7+/-6. 0%. The responder/non-responder ratio was similar in all groups: ETHI (two drop-outs), 28/3 (90.3%); AUTS (two drop-outs), 28/3 (90. 3%); and CONV, 27/3 (90.0%). CONCLUSION: Veins harvested by minimally invasive techniques have not shown an impaired reactivity of the endothelium compared with the conventional technique.

Endothelium, Vascular↗

Effect of continuous positive airway pressure treatment on vascular endothelial function in patients with obstructive sleep apnea hypopnea syndrome and coronary artery disease.

BACKGROUND: Continuous positive airway pressure (CPAP) treatment has been proven to be effective in improving the symptoms of coexisting coronary heart disease (CHD) in patients with obstructive sleep apnea hypopnea syndrome (OSAHS). However, it is still unclear whether such improvements are linked to changes in vascular endothelial function. This research was carried out to investigate the effects of CPAP treatment on vascular endothelial function in patients with OSAHS and CHD. METHODS: Thirty-six patients with moderate or severe OSAHS and CHD undergoing three months of CPAP treatment were recruited for this study. The changes in their morning plasma nitric oxide (NO) and endothelin (ET) levels, NO/ET ratio, total ischemic burden (TIB) of the myocardium, apnea hypopnea index (AHI), and minimal and mean pulse oxygen saturation (SpO2) were compared and analyzed before and during CPAP treatment. RESULTS: Compared with the plasma levels of ET [(51.39 +/- 11.69) ng/L] and NO [(36.67 +/- 11.86) micromol/L], NO/ET (0.71 +/- 0.14), AHI (32.4 +/- 7.9), minimal SpO2 [(68.9 +/- 11.4)%], and myocardial TIB [(66.29 +/- 16.37) mm.min] before treatment, there were significant decreases in ET [(33.41 +/- 10.03) ng/L] (P < 0.05), increases in NO [(59.89 +/- 10.26) micromol/L] and NO/ET (1.79 +/- 0.38) (P < 0.01), decreases in AHI (1.9 +/- 0.5), and increases in minimal SpO2 [(90.6 +/- 1.8)%] (all P < 0.01) and myocardial TIB [(36.42 +/- 10.87) mm.min] (P < 0.05) after three months of CPAP treatment. CONCLUSION: CPAP treatment may play an important role in the improvement and protection of vascular endothelial dysfunction and myocardial ischemia in OSAHS patients with CHD.

Adult↗

Folate, homocysteine, endothelial function and cardiovascular disease. What is the link?

Elevated plasma homocysteine concentrations are associated with an increased risk of cardiovascular disease, but the relationship has not been proven to be causal. Folate is the strongest nutritional and pharmacological determinant of plasma homocysteine concentrations, which also interact with the genetic variation in methylenetetrahydrofolate reductase (MTHFR). Endothelial dysfunction due to reduced nitric oxide bioavailability is an early feature of vascular pathology. This can be assessed noninvasively by measurement of flow-mediated dilatation. Human studies on folic acid, homocysteine and endothelial function are reported. It is proposed that folic acid in high doses may have beneficial effects on endothelial function, which are independent of homocysteine lowering.

Cardiovascular Diseases↗

Acute effects of a high-fat meal with and without red wine on endothelial function in healthy subjects.

It has been suggested that a high-fat meal may acutely impair endothelium-dependent vasodilation and that this impairment may be prevented by concomitant intake of antioxidants. Because red wine contains antioxidant polyphenols and may reduce cardiovascular disease, we examined the effect of red wine on postprandial endothelial function. Using a crossover design, 13 healthy volunteers consumed a high-fat meal (0.8 g fat/kg body weight) with red wine (3 ml/kg) or an isocaloric control beverage on 2 separate days, 1 week apart. Flow-mediated dilation of the brachial artery was examined by vascular ultrasound at baseline and at 2, 4, and 6 hours after the meal. At these times, flow-mediated dilation with the high-fat meal and control beverage was 9.5 +/- 5.0%, 7.9 +/- 5.1%, 6.8 +/- 3.6%, and 7.3 +/- 4.6%, respectively (nonsignificant trend). There was also a nonsignificant trend for flow-mediated dilation after the high-fat meal with wine: 8.0 +/- 4.1%, 5.7 +/- 4.7%, 6.4 +/- 3.1%, and 6.9 +/- 3.8%, respectively. There was no difference in the effects between wine and the control beverage (p = 0.77). Triglycerides increased 2- to 2.7-fold over baseline (p = 0.0001) with a peak occurring 5 hours after the high-fat meals. In contrast to previous studies, the present study did not demonstrate a significant effect of a high-fat meal on endothelial vasomotor function in healthy subjects. Under these conditions, we did not demonstrate a beneficial acute effect of red wine on endothelial function.

Adult↗

Flavonoid-rich dark chocolate improves endothelial function and increases plasma epicatechin concentrations in healthy adults.

BACKGROUND: Dark chocolate derived from the plant (Theobroma cacao) is a rich source of flavonoids. Cardioprotective effects including antioxidant properties, inhibition of platelet activity, and activation of endothelial nitric oxide synthase have been ascribed to the cocoa flavonoids. OBJECTIVE: To investigate the effects of flavonoid-rich dark chocolate on endothelial function, measures of oxidative stress, blood lipids, and blood pressure in healthy adult subjects. DESIGN: The study was a randomized, double-blind, placebo-controlled design conducted over a 2 week period in 21 healthy adult subjects. Subjects were randomly assigned to daily intake of high-flavonoid (213 mg procyanidins, 46 mg epicatechin) or low-flavonoid dark chocolate bars (46 g, 1.6 oz). RESULTS: High-flavonoid chocolate consumption improved endothelium-dependent flow-mediated dilation (FMD) of the brachial artery (mean change = 1.3 +/- 0.7%) as compared to low-flavonoid chocolate consumption (mean change = -0.96 +/- 0.5%) (p = 0.024). No significant differences were noted in the resistance to LDL oxidation, total antioxidant capacity, 8-isoprostanes, blood pressure, lipid parameters, body weight or body mass index (BMI) between the two groups. Plasma epicatechin concentrations were markedly increased at 2 weeks in the high-flavonoid group (204.4 +/- 18.5 nmol/L, p < or = 0.001) but not in the low-flavonoid group (17.5 +/- 9 nmol/L, p = 0.99). CONCLUSION: Flavonoid-rich dark chocolate improves endothelial function and is associated with an increase in plasma epicatechin concentrations in healthy adults. No changes in oxidative stress measures, lipid profiles, blood pressure, body weight or BMI were seen.

Adult↗

Prostaglandin E1 improves endothelial function in critical limb ischemia.

Prostaglandin E1 (PGE1) may relieve rest pain and heal ulcers in critical limb ischemia, but its mechanism of action is still incompletely understood. To investigate the effects of PGE1 treatment on endothelial function evaluated as brachial artery flow-mediated vasodilation (FMV) and on soluble adhesion molecule plasma levels (vascular adhesion molecule-1 [sVCAM-1] and intercellular adhesion molecule-1 [sICAM-1]), 12 patients with critical limb ischemia were treated with daily PGE IV infusion (alprostadil 60 microg) for 2 weeks. FMV and plasma sICAM-1 and sVCAM-1 concentrations were determined at baseline, after the first infusion, and after 1 and 2 weeks. Compared with 30 healthy control subjects, patients had higher baseline sVCAM-1 (2.402 +/- 296 ng/ml vs 972 +/- 117 ng/ml) and sICAM-1 levels (464 +/- 51 ng/ml vs 206 +/- 37 ng/ml, both p < 0.05) and lower FMV (1.0 +/- 1.1% vs 5.6 +/- 1.6%, p < 0.05). sICAM-1 concentration progressively decreased with treatment (from 464 +/- 51 ng/ml to 326 +/- 56 ng/ml, 288 +/- 42 ng/ml, and 279 +/- 44 ng/ml after the first dose and, respectively, after 1 and 2 weeks; all p < 0.05). sVCAM-1 showed a reduction after 2 weeks (from 2.402 +/- 296 ng/ml to 1.916 +/- 176 ng/ml; p < 0.05). FMV improved after 1 and 2 weeks (from 1.0 +/- 1.1% to 3.1 +/- 0.6% and 5.2 +/- 2.1%, both p < 0.05). In conclusion, treatment with PGE1 determines a significant improvement in endothelial function in patients with critical limb ischemia.

Aged↗

Evidence of preserved endothelial function and vascular plasticity with age.

We sought to identify the relationship between shear stimuli and flow-mediated vasodilation and to determine whether small muscle mass exercise training could provoke limb-specific improvements in endothelial function in older subjects. In five young (22 +/- 1 yr old) and six old (71 +/- 2 yr old) subjects, ultrasound Doppler measurements were taken in the arm (brachial artery) and leg (deep and superficial femoral arteries) after suprasystolic cuff occlusion with and without ischemic exercise to evaluate flow-mediated dilation (FMD) in both limbs. Older subjects were reevaluated after 6 wk of single-leg knee extensor exercise training. Before the training, a significant FMD was observed in the arm of young (3 +/- 1%) but not old (1 +/- 1%) subjects, whereas a significant leg FMD was observed in both groups (5 +/- 1% old vs. 3 +/- 1% young). However, arm vasodilation was similar between young and old when normalized for shear rate, and cuff occlusion with superimposed handgrip exercise provoked additional shear, which proportionately improved the FMD response in both groups. Exercise training significantly improved arm FMD (5 +/- 1%), whereas leg FMD was unchanged. However, ischemic handgrip exercise did not provoke additional arm vasodilation after training, which may indicate an age-related limit to shear-induced vasodilation. Together, these data demonstrate that vascular reactivity is dependent on limb and degree of shear stimuli, challenging the convention of diminished endothelial function typically associated with age. Likewise, exercise training improved arm vasodilation, indicating some preservation of vascular plasticity with age.

Adult↗

The UW solution has greater potential for longer preservation periods than the Celsior solution: comparative study for ventricular and coronary endothelial function after 24-h heart preservation.

OBJECTIVE: Improvement of long-term heart preservation methods would potentially increase the donor pool and improve survival. We compared the efficacies of the University of Wisconsin (UW) and Celsior solutions on ventricular and endothelial functions after 24-h preservation. METHODS: We used an isolated heart preparation perfused with blood. The heart was excised from a rabbit, stored for 24 h in the UW or Celsior solution, and then perfused with blood from a support-rabbit. We evaluated cardiac output and coronary endothelial function. RESULTS: The Frank-Starling curve showed a significant left and upward shift in the UW group compared with that in the Celsior group (p<0.01). There were no significant differences between the groups for the coronary blood flow in response to sodium nitroprusside or acetylcholine. The serum creatine kinase MB level after reperfusion was significantly lower in the UW group than in the Celsior group (10.7+/-1.4 ng/mL vs 30.4+/-5.4 ng/mL, p<0.01), whereas lipid peroxide levels did not differ significantly between the two groups. CONCLUSIONS: The UW group showed better left ventricular function than the Celsior group, indicating that the UW solution has greater potential for long-term preservation than Celsior solution.

Adenosine↗

Involvement of thrombolysis in recombinant tissue plasminogen activator-induced cerebral hemorrhages and effect on infarct volume and postischemic endothelial function.

BACKGROUND AND PURPOSE: In a model of mechanical focal ischemia, we investigated the involvement of thrombolysis products (TLP) in recombinant tissue plasminogen activator (rtPA)-induced intracerebral complications and the effects on infarct volume and postischemic endothelial function. METHODS: Hemorrhage incidence and severity were evaluated by histomorphometric analysis in male spontaneously hypertensive rats (SHR) subjected to 60-minute intraluminal middle cerebral artery (MCA) occlusion and receiving intravenously 5 hours later either saline, rtPA (3, 10, or 30 mg/kg), or rtPA (10 mg/kg) associated with TLP (rtPA+TLP). In addition, MCA reactivity was assessed in rtPA- or rtPA+TLP-treated SHR versus control Wistar-Kyoto rats or SHR. RESULTS: No hemorrhage was observed visually in SHR receiving saline. In contrast, rtPA administration induced hemorrhagic complications in infarcted areas in a dose-independent manner. Administration of rtPA+TLP solution, containing a high concentration of plasmin, did not affect hemorrhage incidence but significantly increased hemorrhage severity (8.8+/-2.3 petechiae versus 3.0+/-1.0 petechiae in rtPA group; P<0.001). This increased severity was associated with a significant increase of both infarct volume (182+/-10 versus 144+/-15 mm3 in rtPA group; P<0.01) and postischemic impairment of MCA endothelium-dependent relaxation (9+/-0.5% versus 13+/-1% in rtPA group; P<0.05). CONCLUSIONS: Treatment with rtPA led to intracerebral hemorrhages, in contrast to saline-treated animals, and the presence of TLP increased the severity of these hemorrhages, in parallel with increased infarct volume and worsened endothelial function.

Animals↗

Endothelial function in the forearm circulation of patients with the metabolic syndrome--effect of different lipid-lowering regimens.

We compared the effect of statin therapy (either alone or combined with ezetimibe) on the inhibition of cholesterol resorption and endothelial function by measuring forearm blood flow in male patients with the metabolic syndrome. Compared to 40 mg atorvastatin alone, combination therapy with 10 mg ezetimibe and 10 mg atorvastatin for 8 weeks resulted in significantly decreased total serum cholesterol and triglycerides levels (n = 14). Endothelium-dependent, acetylcholine-mediated vasodilation was significantly better with combination therapy (p < 0.05). In contrast, endothelium-independent forearm blood flow response to sodium nitroprusside was comparable in both groups. Our data suggest a more effective restoration of endothelial function with the statin/ezetimibe combination compared to statin monotherapy in patients with the metabolic syndrome.

Acetylcholine↗

Endothelial function in patients with peripheral vascular disease: influence of prostaglandin E1.

Peripheral arterial occlusive disease (PAOD) is characterized by atherosclerotic lesions in large vessels and disturbances on the microcirculatory level. In the local regulation of vascular tone and microvascular perfusion, vascular endothelium plays a key role. For many years prostaglandin E1 (PGE1) has been used for the treatment of PAOD. Because PGE1 has only moderate effects on blood flow other mechanisms may be relevant for the therapeutical efficacy. The aim of our pilot study was to evaluate endothelial function in patients with PAOD and to investigate the impact of PGE1 on endothelial-dependent vasodilation in peripheral vesselsIn 8 controls and in 8 patients with PAOD stage II, endothelial-dependent vascular responses of the femoral vessels to increasing doses of acetylcholine (30,60,90 microg/min) were determined by Doppler flow velocity measurements in the common femoral artery. Furthermore, vascular reactivity was evaluated before and immediately after intravenous infusion of 30 microg PGE1/30 min in patients. Endothelial-dependent vasodilation was significantly reduced in patients with PAOD compared to control subjects. Infusion of PGE1 neither increased blood flow in the common femoral artery nor endothelium-dependent vasodilation of peripheral resistance vessels as indicated by unchanged reaction to acetylcholine. In conclusion, endothelial function is impaired in patients with PAOD. Administration of PGE1 did not increase femoral artery blood flow or improve endothelial-dependent reactivity of peripheral resistance vessels in patients with PAOD. Therefore, beneficial effects of PGE1 in peripheral vascular disease cannot be attributed to an increase in blood supply or an improvement of endothelial-dependent vasodilation.

Aged↗