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David J Webb

Publications and source records attributed to David J Webb.

At least 55 records · Page 3Linked to original sources

Comparative effects of glyceryl trinitrate and amyl nitrite on pulse wave reflection and augmentation index.

AIMS: The influence of vasodilators on augmentation index (AIx) offers a simple, rapid and noninvasive method of evaluating vascular function. Glyceryl trinitrate (GTN) is widely used as an endothelium-independent vasodilator, although other nitrates that are shorter acting may have advantages in clinical studies. The aim of this study was to compare the effects of two short-acting nitrates, GTN and amyl nitrite, which have differing pharmacodynamic profiles. METHODS: Twenty-one healthy volunteers (15 male; mean age 35 years, range 21-56 years) attended on three occasions and received sublingual GTN (0.5 mg for 3 min), inhaled amyl nitrite (0.2 ml inhaled for 30 s), or no treatment in a randomized cross-over design. Haemodynamic responses of AIx, blood pressure and thoracic bioimpedance (heart rate, cardiac index) were assessed by measurement at baseline, every 60 s for the first 5 min, and then every 5 min for a further 55 min. RESULTS: AIx was reduced by amyl nitrite (peak effect -9 +/- 2% at 1 min, P < 0.002) and GTN (peak effect -12 +/- 3% at 4 min, P < 0.05). Compared with amyl nitrite, the onset and offset of action of GTN was slower. Amyl nitrite initially increased heart rate by 27 +/- 4% (P < 0.001) and cardiac index by 13 +/- 3% (P < 0.001) whereas GTN had no significant effect (P > 0.05). Neither agent affected blood pressure. CONCLUSIONS: GTN causes a slower and more sustained reduction in AIx than amyl nitrite. Although amyl nitrite causes a more rapid fall and recovery in AIx, it induces a reflex tachycardia that may limit interpretation of the initial (1 min) but not later (2 min) changes in AIx. The prolonged offset of GTN suggests that a sufficient washout period must be included when making repeated measures or when assessing the subsequent effects of other agents.

Adult↗

Vasodilator effects of the endothelin ET receptor selective antagonist BMS-193884 in healthy men.

AIMS: A number of endothelin receptor antagonists (ERAs) are currently in clinical development as potential therapies in states characterized by vasoconstriction, such as systemic hypertension. We investigated the haemodynamic effects of locally and systemically active doses of BMS-193884, an endothelin A (ET(A)) receptor selective ERA, and its influence on vasoconstriction to endothelin-1 (ET-1) in healthy men. METHODS: In three separate randomized, placebo-controlled studies, the forearm blood flow (FBF) response to intra-arterial (i.a.) infusion of ET-1 (5 pmol min(-1)) was assessed during i.a. co-infusion of BMS-193884 (5 and 50 nmol min(-1)), and at 12 and at 24 h after oral administration of BMS-193884 (50, 100 and 200 mg at 12 h; and 200 mg at 24 h). Data were examined by repeated-measures analysis of variance (anova) with treatment and subject as factors. RESULTS: ET-1 caused significant forearm vasoconstriction, attenuated after oral dosing with BMS-193884 (200 mg) at 12 (P < 0.01) and 24 h (P < 0.0001). BMS-193884 (50 nmol min(-1), i.a.) caused local vasodilatation (25 +/- 11%) when infused alone (P = 0.02) and abolished forearm vasoconstriction to ET-1 (P < 0.0001 vs. ET-1 alone). Orally, BMS-193884 (200 mg) caused a reduction in total systemic vascular resistance at 12 (-14 +/- 9%, P = 0.03) and 24 h (-12 +/- 7%, P < 0.0001). There was no rise in plasma ET-1 levels. CONCLUSION: BMS-193884 causes local and systemic vasodilatation and attenuation of local vasoconstriction to ET-1. The absence of a rise in plasma endothelin levels suggests BMS-193884 is selective for the ET(A) receptor. This form of pharmacodynamic modelling may be useful in the development of ERAs in cardiovascular disease.

Administration, Oral↗

Nebivolol increases arterial distensibility in vivo.

Arterial stiffness is a key determinant of cardiovascular risk in hypertensive patients. beta-Blockers appear to be less effective than other drugs in improving outcome in hypertensive patients, and a potential explanation may be that beta-blockers are less effective in reducing arterial stiffness. The aim of this study was to assess the direct effect of beta-blockade on pulse wave velocity (PWV), a robust measure of arterial distensibility, using a local, ovine, hind-limb model. In addition, we hypothesized that the vasodilating beta-blocker nebivolol, but not atenolol, would increase arterial distensibility in vivo. All studies were conducted in anesthetized sheep. PWV was recorded in vivo using a dual pressure-sensing catheter placed in the common iliac artery. Intraarterial infusion of nebivolol reduced PWV by 6+/-3% at the higher dose (P<0.001), but did not alter mean arterial pressure (change of -1+/-3 mm Hg, P=0.1). In contrast, atenolol had no effect on PWV (P=0.11) despite a small drop in mean pressure (change of -5+/-3 mm Hg, P<0.01). Infusion of glyceryl trinitrate led to a dose-dependent fall in PWV, and 2 nmol/min produced a similar reduction in PWV to the higher dose of nebivolol (500 nmol/min). The effect of nebivolol on PWV was significantly attenuated during coinfusion of N(G)-monomethyl-L-arginine (P=0.003) and also during coinfusion of butoxamine (P=0.02). These results demonstrate that nebivolol, but not atenolol, increases arterial distensibility. This effect of nebivolol is mediated through the release of NO via a beta2 adrenoceptor-dependent mechanism. Thus, nebivolol may be of benefit in conditions of increased large artery stiffness, such as isolated systolic hypertension.

Adrenergic beta-Antagonists↗

Bradykinin contributes to the systemic hemodynamic effects of chronic angiotensin-converting enzyme inhibition in patients with heart failure.

BACKGROUND: Bradykinin is an endogenous vasodilator that may contribute to the systemic effects of angiotensin-converting enzyme (ACE) inhibitor therapy. Using B9340, a bradykinin receptor antagonist, we determined the contribution of bradykinin to the systemic hemodynamic effects of long-term ACE inhibition in patients with chronic heart failure. METHODS AND RESULTS: Fourteen patients with heart failure received enalapril (10 mg twice daily) or losartan (50 mg twice daily) in a randomized double-blind crossover trial. After 6 weeks treatment, patients underwent right heart catheterization and were randomized to an intravenous infusion of B9340 (2 to 20 microg/kg per minute) or saline placebo. After B9340 infusion in patients treated with enalapril, mean arterial pressure (+5.2 mm Hg), systemic vascular resistance (+315 dynes x s/cm5), pulmonary arterial wedge pressure (-1.4 mm Hg), and mean pulmonary arterial pressure (-1.3 mm Hg) were greater compared with losartan (P<0.005, P=0.07, P<0.0001, and P<0.05 respectively) or placebo infusion (P< or =0.005 for all). There was a reduction in cardiac output after B9340 with enalapril compared with placebo (P<0.001) but not losartan. CONCLUSIONS: Bradykinin contributes to the systemic hemodynamic effects of long-term ACE inhibition in patients with heart failure. This mechanism may explain the apparent clinical differences between ACE inhibitors and angiotensin receptor blockers in the treatment of heart failure.

Aged↗

Adenoviral gene delivery of elafin and secretory leukocyte protease inhibitor attenuates NF-kappa B-dependent inflammatory responses of human endothelial cells and macrophages to atherogenic stimuli.

Atherosclerosis is a chronic inflammatory disease affecting arterial vessels. Strategies to reduce the inflammatory responses of endothelial cells and macrophages may slow lesion development and prevent complications such as plaque rupture. The human protease human neutrophil elastase (HNE), oxidized low density lipoprotein, LPS, and TNF-alpha were chosen as model stimuli of arterial wall inflammation and led to production of the chemokine IL-8 in endothelial cells. To counteract the activity of HNE, we have examined the effects of adenoviral gene delivery of the anti-elastases elafin, previously demonstrated within human atheroma, and murine secretory leukocyte protease inhibitor (SLPI), a related molecule, on the inflammatory responses of human endothelial cells and macrophages to atherogenic stimuli. We developed a technique of precomplexing adenovirus with cationic lipid to augment adenoviral infection efficiency in endothelial cells and to facilitate infection in macrophages. Elafin overexpression protected endothelial cells from HNE-induced IL-8 production and cytotoxicity. Elafin and murine SLPI also reduced endothelial IL-8 release in response to oxidized low density lipoprotein, LPS, and TNF-alpha and macrophage TNF-alpha production in response to LPS. This effect was associated with reduced activation of the inflammatory transcription factor NF-kappaB, through up-regulation of IkappaBalpha, in both cell types. Our work suggests a novel and extended anti-inflammatory role for these HNE inhibitors working as effectors of innate immunity to protect tissues against maladaptive inflammatory responses. Our findings indicate that elafin and SLPI may be gene therapy targets for the treatment of atheroma.

Adenoviridae↗

Endothelin-A receptor antagonism reduces blood pressure and increases renal blood flow in hypertensive patients with chronic renal failure: a comparison of selective and combined endothelin receptor blockade.

BACKGROUND: Endothelin (ET) is implicated in the pathophysiology of chronic renal failure (CRF). We therefore studied the systemic and renal hemodynamic effects of ET receptor antagonists in CRF and examined differences between selective ETA, selective ETB, and combined ETA/B receptor blockade. METHODS AND RESULTS: We conducted a randomized, placebo-controlled, double-blind, 4-way crossover study comparing selective ET receptor antagonists BQ-123 (ETA) and BQ-788 (ETB), given alone and in combination, in acute studies in 8 hypertensive CRF patients and 8 matched healthy controls. BQ-123, alone and in combination with BQ-788, reduced blood pressure in CRF, particularly with BQ-123 alone (mean arterial pressure: controls -4+/-2%, CRF -13+/-2%, P<0.01 versus placebo). In CRF, in the face of this fall in blood pressure, BQ-123 substantially increased renal blood flow (38.8+/-23.9%, P<0.01 versus placebo) and reduced renal vascular resistance (-44.5+/-11.3%, P<0.01 versus placebo) when given alone but not when combined with BQ-788. These changes were accompanied by a reduction in effective filtration fraction. BQ-123, alone or in combination with BQ-788, had minimal effects on the renal circulation in healthy controls, and BQ-788 alone produced both systemic and renal vasoconstriction in CRF and healthy controls. CONCLUSIONS: ETA receptor antagonism was highly effective in lowering blood pressure in CRF patients currently treated for hypertension. In addition, there were effects consistent with a renoprotective action. However, because the ETB receptor appears to play a key role in the maintenance of tonic renal vasodilation, combined ETA/B receptor antagonism, although it lowered blood pressure, did not confer these renal benefits.

Antihypertensive Agents↗

Comparison of two plethysmography systems in assessment of forearm blood flow.

Venous occlusion plethysmography is widely used to assess forearm blood flow (FBF). We compared the established Hokanson system (HEC4) with a newly developed Filtrass 2001 system (F2001). The HEC4 uses mercury-in-Silastic strain gauges, whereas F2001 detects volume changes with a nonmercury linear displacement device. The aim of this study was to evaluate the new F2001 against the HEC4 in terms of repeatability and systematic bias. Ten subjects were studied on 4 separate days in random order using either the HEC4 on both arms, the F2001 on both arms, the HEC4 on the right arm with the F2001 on the left, or the F2001 on the right arm and the HEC4 on the left. Stroop's colored word conflict test and postocclusive hyperemia were used to increase FBF, and lower body negative pressure was used to lower FBF. Stroop's colored word conflict test and lower body negative pressure increased (24.6 +/- 1.5%, n = 240, P < 0.0001) and decreased (18.7 +/- 0.8%, n = 240, P < 0.0001) FBF, respectively. Postocclusive hyperemia after occlusion times of 5, 8, and 13 min substantially increased FBF by 390 +/- 86, 756 +/- 217, and 851 +/- 132%, respectively. Repeatability was not different between the devices (0.10 +/- 2.37 vs. -0.47 +/- 1.92 l/min, n = 125, P > 0.05), and there was no systematic bias. The F2001 is a newly developed plethysmography system that does not utilize mercury and is suitable for assessing changes of FBF in physiological studies.

Adult↗

Low birth weight predicts higher blood pressure but not dermal capillary density in two populations.

The association between low birth weight and high blood pressure is well established, but underlying mechanisms remain undefined. Vascular rarefaction, which may elevate peripheral vascular resistance, has been observed in capillaries of young men at risk for hypertension and men who had low birth weight. We looked for evidence that capillary rarefaction explains the association of low birth weight with high blood pressure in two cohorts. Participants in study 1 included 107 healthy boys aged 6 to 16 years recruited at random from a single school. Study 2 included 61 members of a cohort recruited at birth and studied at age 24 years. Measurements included indices of current size, blood pressure by automated sphygmomanometer, and dermal capillary density by video capillaroscopy of dorsal index finger skin after 10 minutes of venous occlusion. Lower birth weight predicted higher systolic blood pressure in both studies: in study 1, 3.57 mm Hg/kg birth weight (after adjustment for current height, 95% confidence interval 0.38 to 6.75, P<0.05); in study 2, 122+/-12 mm Hg in low birth weight (<2 kg) versus 115+/-9 in controls (P<0.05). Dermal capillary density was not associated in either group with birth weight or systolic blood pressure. We have found no evidence in these 2 cohorts that reduced capillary density explains the associations between lower birth weight and higher blood pressure.

Adolescent↗

No adverse hemodynamic interaction between sildenafil and red wine.

OBJECTIVE: Our objective was to investigate the hemodynamic interaction between sildenafil and red wine. Sildenafil citrate (Viagra), a phosphodiesterase type 5 inhibitor, is an effective treatment for male erectile dysfunction that potentiates nitric oxide-mediated vasodilation. Alcohol is a commonly used recreational substance with complex vascular effects, which may, in part, be mediated by nitric oxide. Thus there is potential for an adverse hemodynamic interaction. METHODS: Eight healthy men received either 100 mg sildenafil, alcohol (750 mL red wine, 13.5% by volume), or the combination, in a 4-way, double placebo-controlled, randomized crossover study. Blood pressure, heart rate, and cardiac index were measured every 15 minutes up to 180 minutes. RESULTS: Results are expressed as mean +/- SEM. Red wine increased cardiac index (by 15% +/- 8%, P = .04) and heart rate (by 27% +/- 5%, P < .0001). Mean arterial pressure initially increased by approximately 5% and then fell by a maximum of approximately 7%. Sildenafil reduced peripheral vascular resistance (by 24% +/- 8%, P = .03) and mean arterial pressure (by 7% +/- 3%, P = .03) with no effect on cardiac index or heart rate. CONCLUSIONS: There is no clinically important hemodynamic interaction between sildenafil and alcohol (red wine).

Adult↗

Non-invasive measures of pulse wave velocity correlate with coronary arterial plaque load in humans.

OBJECTIVE: Arterial stiffness is an emerging major risk factor for cardiovascular morbidity and mortality. The aim of the present study was to assess if coronary artery plaque load correlates with non-invasive measures of arterial stiffness. DESIGN: Prospective investigational study. SETTING: Tertiary university hospital centre. PATIENTS: Patients undergoing elective diagnostic coronary angiography. INTERVENTIONS AND MAIN OUTCOME MEASURES: Coronary artery plaque burden was assessed using a 30 MHz intravascular ultrasound catheter during an automated pullback. Proximal coronary artery plaque volume was determined using a validated edge-detection algorithm following three-dimensional computerized reconstruction. Central arterial stiffness was assessed in each patient using applanation tonometry to radial, carotid and femoral pulses, with derivation of aortic pressure augmentation and pulse wave velocity using pulse wave analysis. RESULTS: In 35 patients (61 +/- 2 years), proximal coronary arterial plaque volume was 5.9 +/- 0.6 mm3/mm of vessel. Plaque volume correlated positively with carotid-radial pulse wave velocity (r = 0.47, P = 0.008) and appeared to correlate with carotid-femoral pulse wave velocity (r = 0.34, P = 0.07). Aortic augmentation (r = 0.24, P = 0.16), augmentation index (r = 0.3, P = 0.08), and pulse pressure (r = 0.22, P = 0.2) did not correlate significantly with proximal coronary artery plaque volume. CONCLUSIONS: Non-invasive measures of carotid-radial pulse wave velocity correlate with the extent of coronary artery plaque volume and may be a useful non-invasive surrogate marker for the extent of coronary atherosclerosis. Our findings are consistent with the suggestion that central aortic stiffness may promote the development of coronary atherosclerosis and ischaemic heart disease.

Aged↗

Vitamin C has no effect on endothelium-dependent vasomotion and acute endogenous fibrinolysis in healthy smokers.

Blood flow and plasma fibrinolytic factors were measured on five occasions in both forearms of eight otherwise healthy male smokers during unilateral brachial artery infusion of the endothelium-dependent vasodilator, substance P (2 to 8 pmol/min), and the endothelium-independent vasodilator, sodium nitroprusside (2 to 8 microg/min). On the first occasion, intra-arterial vitamin C was co-infused at 25 mg/min. On subsequent occasions, subjects attended after 28 and 35 days treatment with oral vitamin C (1 g daily) or placebo in a double-blind randomized crossover design still smoking but with and without acute smoke inhalation (3 cigarettes over 30 minutes). Basal plasma ascorbate concentrations increased from 37 +/- 6 micromol/L to 105 +/- 11 micromol/L following oral vitamin C supplementation (P = 0.002). Substance P caused dose-dependent increases in forearm blood flow (P < 0.001, ANOVA) and t-PA release (P < 0.05, ANOVA) that was unaffected by acute recent smoke inhalation, intra-arterial vitamin C, or oral vitamin C administration (p = ns). Likewise there were no effects on sodium nitroprusside-induced vasodilatation (p = ns). Neither acute local intra-arterial nor prolonged oral vitamin C supplementation reverses smoking-related endothelial dysfunction and impaired endogenous t-PA release. We conclude that the adverse vascular actions of smoking are not principally mediated through oxidative stress.

Adult↗

Non-invasive measurement of cardiac output in patients with chronic heart failure.

OBJECTIVES: The measurement of cardiac output by thoracic bioimpedance has been previously assessed in several studies. However, there continues to be disagreement as to whether this technique is sufficiently accurate for use in clinical practice or research. The current study aimed to compare thoracic bioimpedance (COTB) with thermodilution (COTD) in patients with stable chronic heart failure. METHODS AND RESULTS: A total of 282 paired measurements of cardiac output from 11 patients were analysed. There was good correlation between COTB and COTD (r=0.76, P<0.0001). However, Bland-Altman analysis revealed an average difference between values of 0.3 (2.2) l/min (P=0.02), suggesting a small average bias but marked variability in results. There was no significant correlation when results were expressed as percentage change from baseline and a significant average difference between values of 10.1 (30.1)%. There was no difference in between-day repeatability between thermodilution and thoracic bioimpedance [-0.2 (1.2) versus 0.1 (1.0) l/min, P=0.7]. CONCLUSIONS: This study demonstrates a correlation between the techniques but shows a poor level of agreement. The method of COTB underestimated cardiac output compared with COTD, and this difference appeared greater with higher cardiac outputs. Agreement was worse when results were expressed as change from baseline. The present study does not support the use of thoracic bioimpedance in its current form as an alternative to thermodilution in stable patients with chronic heart failure.

Aged↗

Endothelin A receptor antagonism and angiotensin-converting enzyme inhibition are synergistic via an endothelin B receptor-mediated and nitric oxide-dependent mechanism.

Animal studies suggest that endothelin A (ETA) receptor antagonism and angiotensin-converting enzyme (ACE) inhibition may be synergistic. This interaction and the role of ETB receptors and endothelial mediators were investigated in terms of systemic and renal effects in humans in two studies. In one study, six subjects received placebo, the ETA receptor antagonist BQ-123 alone, and BQ-123 in combination with the ETB receptor antagonist BQ-788 after pretreatment with the ACE inhibitor enalapril (E) or placebo. In the other, six subjects who were pretreated with E received placebo, BQ-123, and BQ-123 with concomitant inhibition of nitric oxide (NO) synthase or cyclo-oxygenase (COX). Both were randomized, double-blind, crossover studies. Mean arterial pressure was reduced by BQ-123, an effect that was doubled during ACE inhibition (mean area under curve +/- SEM; BQ-123, -2.3 +/- 1.8%; BQ-123+E, -5.1 +/- 1.1%; P < 0.05 versus placebo). BQ-123 increased effective renal blood flow (BQ-123, -0.1 +/- 2.4%; BQ-123+E, 10.9 +/- 4.2%; P < 0.01 versus BQ-123), reduced effective renal vascular resistance (BQ-123, -1.2 +/- 3.1%; BQ-123+E, -12.8 +/- 3.0%; P < 0.01 versus placebo and versus BQ-123), and increased urinary sodium excretion markedly (BQ-123, 2.6 +/- 12.8%; BQ-123+E, 25.2 +/- 12.6%; P < 0.05 versus BQ-123, P < 0.01 versus placebo and versus E) only during ACE inhibition. These effects were abolished by both ETB receptor blockade and NO synthase inhibition, whereas COX inhibition had no effect. In conclusion, the combination of ETA receptor antagonism and ACE inhibition is synergistic via an ETB receptor-mediated, NO-dependent, COX-independent mechanism. The reduction of BP and renal vascular resistance and associated substantial natriuresis make this a potentially attractive therapeutic combination in renal disease.

Adult↗

Endothelin-1[1-31] is not elevated in men with chronic heart failure.

Endothelin-1[1-31] is a recently discovered member of the endothelin family with vasoactive properties in several animal models and in man in vivo. It is generated from big endothelin-1 by human mast cell chymase and may be a novel intermediary peptide in the production of endothelin-1[1-21]. Given that both big endothelin-1[1-38] and chymase activity are increased in chronic heart failure, the aim of this study was to determine whether plasma endothelin-1[1-31] concentrations are elevated in patients with chronic heart failure. Plasma endothelin-1[1-31] concentrations were measured by enzyme-linked immunosorbent assay in nine patients with chronic heart failure, and nine age- and sex-matched control subjects. Consistent with previous studies, plasma concentrations of big endothelin-1[1-38] were elevated in patients compared with controls (17.1 +/- 4.4 pg/mL vs 8.9 +/- 3.4 pg/mL, P = 0.002), although there were no differences in plasma endothelin-1[1-21] (3.3 +/- 0.4 pg/mL vs 3.4 +/- 0.7 pg/mL, P = 0.7) or endothelin-1[1-31] (both 1.1 +/- 0.1 pg/mL, P = 0.2) concentrations. We have demonstrated that patients with chronic heart failure have normal plasma endothelin-1[1-31] concentrations. This suggests that, in contrast to big endothelin-1[1-38], plasma endothelin-1[1-31] is unlikely to be a useful prognostic marker in patients with chronic heart failure.

Aged↗

The effect of cerivastatin therapy on vascular responses to endothelin antagonists in humans.

Endothelin blocking drugs have vasodilator effects mediated at least in part via the nitric oxide system. Hypercholesterolaemia is associated with vascular dysfunction manifest as impaired nitric oxide-mediated vasodilatation and arterial stiffness. Treatment with HMG CoA reductase inhibitors (statins) has proven mortality benefits in a range of patient populations. Subjects (n = 5) received either placebo or 800 mug cerivastatin for an 8-week period in a double-blind, placebo-controlled, cross-over study. Cerivastatin reduced the total plasma cholesterol compared with baseline by 27% (5.4 +/- 0.4 mmol/L versus 7.3 +/- 0.4 mmol/L, P = 0.04). Selective endothelin-A receptor blockade caused an increase in forearm blood flow (FBF) (18.0 +/- 7.2%, P = 0.04). Compared with placebo, cerivastatin therapy caused a trend towards a further increase in FBF (18.0 +/- 7.2% versus 52.0 +/- 19.0%, P = 0.06). Selective endothelin-B receptor blockade reduced FBF (-11.0 +/- 3.9%, P = 0.02) with no difference between placebo and cerivastatin therapy (-11.0 +/- 3.9% versus -13.0 +/- 3.6%, P = 0.9). Combined endothelin-A/endothelin-B receptor blockade increased FBF (39.8 +/- 13.4%, P < 0.01) with no difference between placebo and cerivastatin therapy (39.8 +/- 13.4% versus 42.4 +/- 19.0%, P = 0.7). There was a trend towards a reduction in the augmentation index between cerivastatin and placebo (6.2 +/- 2.7 versus 9.1 +/- 2.4, n = 5, P = 0.4) compared with baseline (7.2 +/- 1.0). In conclusion, statin therapy may decrease large artery stiffness and increase the vasodilating effects of endothelin-A receptor blockade.

Cholesterol, LDL↗

Endothelins and their inhibition in the human skin microcirculation: ET[1-31], a new vasoconstrictor peptide.

AIMS: Endothelin-1 (ET-1([1-21])) is an extremely potent vasoconstrictor in the human skin microcirculation and is generated from larger precursor peptides. The aims of the present study were to assess the vasoactive effects of these precursors as well as endothelin blockade in the human skin microcirculation, in vivo. METHODS: Six healthy volunteers received intradermal injections of a range of doses of big ET-1([1-38]), ET-1([1-31]), ET-1([1-21]), BQ-123 (ET(A) receptor antagonist), BQ-788 (ET(B) receptor antagonist), phosphoramidon [endothelin converting enzyme (ECE) inhibitor] or saline control (0.9%). Skin blood flow (SBF) was measured using standard laser Doppler flowmetry. RESULTS: Big ET-1([1-38]), ET-1([1-31]) and ET-1([1-21]) reduced SBF when compared with saline control (P < 0.01 for all). Big ET-1([1-38]) and ET-1([1-31]) were less potent than ET-1([1-21]) as defined by skin vasoconstriction. Phosphoramidon, BQ-123 and BQ-788, given alone, all caused vasodilatation in the human skin microcirculation (P < 0.01 for all). CONCLUSIONS: In the human skin microcirculation, big ET-1([1-38]) and ET-1([1-31]) are less potent vasoconstrictors than ET-1([1-21]). The effects of big ET-1([1-38]) and phosphoramidon suggest the presence of endogenous ECE activity in the skin. In contrast to skeletal muscle resistance vessels, ET-1([1-21]) contributes to the maintenance of skin microvascular tone through both ET(A) and ET(B) receptor-mediated vasoconstriction.

Adult↗

The revision of the Declaration of Helsinki: past, present and future.

The World Medical Association's Declaration of Helsinki was first adopted in 1964. In its 40-year lifetime the Declaration has been revised five times and has risen to a position of prominence as a guiding statement of ethical principles for doctors involved in medical research. The most recent revision, however, has resulted in considerable controversy, particularly in the area of the ethical requirements surrounding placebo-controlled trials and the question of responsibilities to research participants at the end of a study. This review considers the past versions of the Declaration of Helsinki and asks the question: How exactly has the text of the Declaration changed throughout its lifetime? Regarding the present form of the Declaration of Helsinki we ask: What are the major changes in the most recent revision and what are the controversies surrounding them? Finally, building on the detailed review of the past and present versions of the Declaration of Helsinki, we give consideration to some of the possible future trajectories for the Declaration in the light of its history and standing in the world of the ethics of medical research.

Ethics, Medical↗