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D J Webb

Publications and source records attributed to D J Webb.

At least 199 records · Page 11Linked to original sources

Alpha 2-macroglobulin conformation determines binding affinity for activin A and plasma clearance of activin A/alpha 2-macroglobulin complex.

Activin A is a member of the transforming growth factor-beta family of growth factors and a potent regulator of cellular activity. A number of binding proteins for activin A have been identified, including alpha 2-macroglobulin (alpha 2M). Alpha 2M has several conformational states that are known to have different growth factor-binding properties. The effect of alpha 2M conformation on activin A binding has not been characterized. The aims of this study were to determine 1) whether activin A binds preferentially to the native (alpha 2M-N) or "activated" (alpha 2M*) conformation of alpha 2M, 2) the affinity of different alpha 2M conformations for activin A, and 3) the fate of activin A complexed with alpha 2M-N or alpha 2M* in vivo. [125I]Activin A associated with alpha 2M in plasma and follicular fluid and with purified alpha 2Ms. In this qualitative assay, more activin A was associated with alpha 2M* than with alpha 2M-N. The affinity of the activin A-alpha 2M interaction was determined. The Kd values for activin A-alpha 2M* and activin A-alpha 2M-N were 190 +/- 30 and 510 +/- 60 nM, respectively. The plasma clearance profiles and tissue distribution of uncomplexed activin A and purified alpha 2M*-activin A complex were determined. Radiolabeled activin A cleared in a biphasic manner, with rapid clearance over the initial 10 min and substantially slower clearance over the subsequent 20 min. During the slow phase of clearance, activin A formed a complex with circulating alpha 2M-N. In contrast, radiolabeled activin A-alpha 2M* complexes were rapidly cleared from plasma with a half-life of approximately 5 min and were specifically targeted to alpha 2M receptors in vivo. These studies reveal that alpha 2M can maintain activin A in the circulation or rapidly target the hormone for plasma clearance depending on the conformational state of the carrier protein in vivo.

Activins↗

Carbenoxolone increases hepatic insulin sensitivity in man: a novel role for 11-oxosteroid reductase in enhancing glucocorticoid receptor activation.

In the kidney, conversion of cortisol to cortisone by the enzyme 11 beta-hydroxysteroid dehydrogenase protects mineralocorticoid receptors from cortisol. In the liver, a different isoform of the enzyme favors 11 beta-reductase conversion of cortisone to cortisol. We have tested the hypothesis that hepatic 11 beta-reductase enhances glucocorticoid receptor activation in the liver by inhibiting the enzyme with carbenoxolone and observing effects on insulin sensitivity. Seven healthy males took part in a double blind randomized cross-over study in which oral carbenoxolone (100 mg every 8 h) or placebo was administered for 7 days. Euglycemic hyperinsulinemic clamp studies were then performed, including measurement of forearm glucose uptake. Carbenoxolone increased whole body insulin sensitivity (M values for dextrose infusion rates, 41.1 +/- 2.4 mumol/kg.min for placebo vs. 44.6 +/- 2.3 for carbenoxolone; P < 0.03), but had no effect on forearm insulin sensitivity. We infer that carbenoxolone, by inhibiting hepatic 11 beta-reductase and reducing intrahepatic cortisol concentration, increases hepatic insulin sensitivity and decreases glucose production. Thus, plasma cortisone provides an inactive pool that can be converted to active glucocorticoids at sites where 11 beta-reductase is expressed, abnormal hepatic 11 beta-reductase activity might be important in syndromes of insulin resistance, and manipulation of hepatic 11 beta-reductase may be useful in treating insulin resistance.

11-beta-Hydroxysteroid Dehydrogenases↗

Endogenous endothelin generation maintains vascular tone in humans.

Endothelin-1 is a potent endothelium-derived vasoconstrictor and pressor peptide with uniquely sustained activity. We have examined the contribution of endogenously-generated endothelin-1 to the maintenance of basal vascular tone in healthy subjects. In these studies, on separate occasions, a combined inhibitor of endothelin converting enzyme (ECE) and neutral endopeptidase (NEP), phosphoramidon, a selective inhibitor of NEP, thiorphan, and a selective ETA receptor antagonist, BQ-123, were given via the brachial artery. Big endothelin-1, the precursor to endothelin-1, caused a slow onset dose-dependent forearm vasoconstriction, the magnitude of which was consistent with about 10% conversion to mature endothelin-1 in the forearm. Vasoconstriction to big endothelin-1 was abolished by co-infusion of phosphoramidon, whereas vasoconstriction to endothelin-1 was unaffected. Phosphoramidon caused progressive vasodilatation when infused alone, with blood flow increasing by 37% at 90 min (P = 0.02), whereas thiorphan caused vasoconstriction, consistent with NEP inhibition exerting its major effect on degradation of constrictor peptides, such as angiotensin and endothelin-1. Vasoconstriction to endothelin-1 was completely abolished by coinfusion of BQ-123, and BQ-123 alone produced progressive forearm vasodilatation, with blood flow increasing by 64% after 60 min (P = 0.001). These results demonstrate that endogenous production of endothelin-1 acts to sustain vascular tone in humans and indicate that ECE inhibitors and endothelium receptor antagonists may have therapeutic potential as vasodilators.

Adult↗

Endothelium-dependent modulation of venoconstriction to sarafotoxin S6c in human veins in vivo.

We investigated the vascular effects mediated by ETA and ETB receptors in human dorsal hand veins in vivo, using sarafotoxin S6c (SFTX6c) as a selective agonist of ETB receptors and endothelin-1 (ET-1) as a nonselective agonist of ETA and ETB receptors. The cyclo-oxygenase inhibitor aspirin and the nitric oxide synthase inhibitor L-NMMA were used to examine the modulating role of endothelial vasodilators on the response to SFTX6c. Drugs were all infused into the hand veins, at locally but not systemically active doses, via a 23 SWG butterfly cannula, with the exception of aspirin, which was administered orally. Hand vein size was measured by the Aellig technique. The study was performed in six healthy male subjects. Data (mean +/- SEM) were examined by ANOVA. Results are expressed as percent change from baseline at 60 min. ET-1 (5 pmol/min for 60 min) caused venoconstriction of 68 +/- 6% (p = 0.0001). SFTX6c at the same dose caused venoconstriction of 19 +/- 4% (p = 0.003). The response to SFTX6c was significantly less than to ET-1 (p = 0.002). Constriction to SFTX6c tended to increase when this agent was co-administered with aspirin (25 +/- 7%) or L-NMMA (24 +/- 10%) and was significantly potentiated when these agents were co-administered (45 +/- 4%; p = 0.01 vs. SFTX6c alone). We have demonstrated that the selective ETB agonist SFTX6c produces venoconstriction in human hand veins in vivo and that this venoconstriction is modulated by the generation of endothelium-derived vasodilators. In this vascular bed, venoconstriction rather than venodilatation appears to be the predominant effect of stimulation of ETB receptors with SFTX6c.

Adult↗

Physiologic role of endothelin in maintenance of vascular tone in humans.

The physiologic significance of endothelin-1 (ET-1) generation in human resistance vessels is unknown. We therefore investigated whether endothelin-converting enzyme (ECE) activity could be demonstrated in human vessels, and the effects of inhibition of the generation or actions of ET-1 on vascular tone in healthy men. Brachial artery infusion of local doses of big ET-1 caused a slow-onset, dose-dependent forearm vasoconstriction that was abolished by co-infusion of the ECE inhibitor phosphoramidon. Phosphoramidon did not affect responses to ET-1. Phosphoramidon caused slow-onset vasodilatation when infused alone, with blood flow increasing by 37% (p = 0.03). Vasoconstriction to ET-1 was completely abolished by co-infusion of the ETA receptor antagonist BQ-123 (p = 0.006), with forearm blood flow tending to increase. Infusion of BQ-123 alone resulted in progressive vasodilatation, with blood flow increasing by 64% (p = 0.007). These results suggest that endogenous generation of ET-1 contributes to the maintenance of vascular tone in states of normal and elevated blood pressure. ECE inhibitors and ETA receptor antagonists may have potential as vasodilators in the treatment of diseases associated with vasoconstriction, such as hypertension and chronic heart failure.

Adult↗

The effect of cooling on the contractile response to endothelin-1 in small arteries from humans.

The pathogenesis of the prolonged cold-induced vasospasm of Raynaud's disease (RD) is unknown. Cooling has been shown to decrease the sensitivity of cutaneous rabbit ear arteries to endothelin-1 (ET-1), perhaps by increasing the availability of nitric oxide (NO). If the endothelium in RD lacks this NO-mediated inhibitory function during cooling, increased production and enhanced constriction to ET-1 could cause vasospasm. This study examined the effect of cooling on the contractile response to ET-1 in human microvessels. Small arteries were dissected from biopsy specimens of human fat and were cannulated in a small vessel arteriograph. Cumulative concentration-response curves to ET-1 (10(-12) to 3 x 10(-7) M) were obtained in vessels at 37 degrees C (n = 8) and 24 degrees C (n = 7). Cooling to 24 degrees C resulted in an eightfold decrease in sensitivity to ET-1 (EC50 6.6 +/- 2.5 x 10(-10) M at 37 degrees C vs. 5.5 +/- 2.5 x 10(-9) M at 24 degrees C; p < 0.05, unpaired t test). The Emax was not significantly different at 37 degrees C and 24 degrees C (114 +/- 9 at 37 degrees C vs. 138 +/- 14 at 24 degrees C; p = 0.18). These results suggest that cooling decreases the sensitivity of human microvessels to ET-1. Further investigation is needed to establish the mechanism of this effect, including studies in vessels obtained from patients with RD.

Aged↗

Measurement of C-terminal fragment of big endothelin-1: a novel method for assessing the generation of endothelin-1 in humans.

We developed a procedure for individual measurement of big endothelin-1 (big ET-1) and the two products of big ET-1 conversion (ET-1 and C-terminal fragment (CTF) of big ET-1 (big ET-1(22-38)), using selective solid-phase extraction and specific radioimmunoassays. These techniques were used to measure the levels of these peptides in extracts of human plasma after brachial artery infusions of big ET-1. Infusion of big ET-1 (50 pmol/min, n = 6) caused a decrease in forearm blood flow from 3.03 to 1.55 ml/dl/min after 60 min (p < 0.05). In agreement, the levels of plasma immunoreactive (IR) big ET-1, ET, and CTF were significantly increased from basal levels in the infused arm (from undetectable to 386 pM, 2.2-7.5 pM, and 0.17-37 pM, respectively; p < 0.05). In the presence of the metalloprotease inhibitor phosphoramidon (30 nmol/min), the increase in IR-ET and the associated vasoconstriction were abolished. However, IR-CTF was still detected, suggesting that either some conversion by phosphoramidon-insensitive endothelin-converting enzyme (ECE) was occurring and/or that CTF was being preserved from further proteolysis by phosphoramidon. These data confirm that exogenous big ET-1 is locally converted to ET-1 and CTF in the human forearm, at least in part by a phosphoramidon-sensitive ECE. Furthermore, because measurable levels of newly synthesized ET-1 are probably rapidly reduced as a result of receptor binding, the assay of IR-CTF may be a more sensitive measure of the overexpression of ET-1 in disease.

Adult↗

Forearm vasoconstriction to endothelin-1 is mediated by ETA and ETB receptors in vivo in humans.

The role of endothelin (ET)-B (ETB) receptors in mediating vasoconstriction in humans is unclear. As yet, in vitro data have been contradictory, and there have been no in vivo studies in resistance vessels. We investigated the function of ETB receptors in vivo in human forearm resistance vessels using ET-1 as a nonselective agonist at ETA and ETB receptors and ET-3 and sarafotoxin S6c as ETB receptor agonists. Brachial artery infusion of ET-1 and ET-3 caused slow-onset, dose-dependent forearm vasoconstriction. Although ET-3 caused significantly less forearm vasoconstriction than ET-1 at low doses, vasoconstriction to the two isopeptides was similar at the highest dose (60 pmol/min). ET-3 caused initial transient forearm vasodilatation at this dose, whereas ET-1 showed only a nonsignificant trend toward causing early vasodilatation. Intra-arterial sarafotoxin S6c caused a progressive reduction in forearm blood flow, although less than that to ET-1. Therefore, ETB receptor agonists contract human resistance vessels in vivo. The effects of ET-3 and sarafotoxin S6c, compared with ET-1, suggest that both ETA and ETB receptors mediate vasoconstriction. Antagonists at both ETA and ETB receptors, or inhibitors of the generation of ET-1, may be necessary to completely prevent vasoconstriction to endogenously generated ET-1.

Adult↗

Transforming growth factor beta isoform 2-specific high affinity binding to native alpha 2-macroglobulin. Chimeras identify a sequence that determines affinity for native but not activated alpha 2-macroglobulin.

Transforming growth factor beta 2 (TGF-beta 2) is less potent than TGF-beta 1 in some endothelial cell proliferation assays due to the greater tendency of TGF-beta 2 to bind alpha 2-macroglobulin (alpha 2M). Substitution of TGF-beta 1 residues 40-47 into the TGF-beta 2 sequence yields a chimeric molecule that, like TGF-beta 1, expresses activity that is not substantially affected by serum alpha 2M (Burmester, J. K., Qian, S. W., Roberts, A. B., Huang, A., Amatayakul-Chantler, S., Suardet, L., Odartchenko, N., Madri, J. A., and Sporn, M. B. (1993) Proc. Natl. Acad. Sci. U.S.A. 90, 8628-8632). In this investigation, we studied the binding of TGF-beta chimeras, which contain TGF-beta 1 residues 40-47, to both major conformations of human alpha 2M under apparent equilibrium conditions. Native alpha 2M, the primary form of this protein in serum, bound TGF-beta 2/beta 1 (40-82) and TGF-beta 2/beta 1 (40-47) with low affinity. The apparent KD values for the two chimeras and native alpha 2M were 310 and 330 nM, respectively. These values were much higher than the KD determined for TGF-beta 2 and native alpha 2M (11 nM) and equivalent to the KD determined for TGF-beta 1 and native alpha 2M. By contrast, both TGF-beta chimeras bound alpha 2M-methylamine, an altered conformation of alpha 2M, with high affinity (16 and 19 nM), which is characteristic of TGF-beta 2 and not TGF-beta 1. Fetal bovine heart endothelial cell DNA synthesis was inhibited to a similar degree by TGF-beta 1, TGF-beta 2, TGF-beta 2/beta 1 (40-82), and TGF-beta 2/beta 1 (40-47) in the presence of dilute (0.2%) fetal bovine serum. When 0.07 microM alpha 2M-methylamine was added, the activities of TGF-beta 2, TGF-beta 2/beta 1 (40-82), and TGF-beta 2/beta 1 (40-47) were significantly counteracted while the activity of TGF-beta 1 was unchanged, as would be predicted by the equilibrium binding analyses. These studies indicate that the TGF-beta structural elements, which mediate binding to native alpha 2M and conformationally transformed alpha 2M, are not equivalent. Residues 40-47 are critical in determining affinity for native alpha 2M but are less important in determining affinity for alpha 2M-methylamine.

Animals↗

Contribution of endogenous generation of endothelin-1 to basal vascular tone.

Endothelin-1 is an endothelium-derived vasoconstrictor peptide, possibly involved in the pathophysiology of cardiovascular disease. We examined the contribution of endogenously generated endothelin-1 to maintenance of peripheral vascular tone in healthy subjects by local intraarterial administration of an inhibitor of endothelin converting enzyme, phosphoramidon, and of a selective endothelin receptor A antagonist, BQ-123. Brachial artery infusion of local doses of proendothelin-1, the precursor to endothelin-1, caused a slow-onset dose-dependent forearm vasoconstriction which was abolished by co-infusion of phosphoramidon. Phosphoramidon did not affect responses to endothelin-1. Phosphoramidon caused slow-onset vasodilatation when infused alone, with blood flow increasing by 37% at 90 min (p = 0.03). Vasoconstriction to endothelin-1 was abolished by co-infusion of BQ-123 (p = 0.006), with forearm blood flow tending to increase. Infusion of BQ-123 alone caused progressive vasodilatation, with blood flow increasing by 64% after 60 min (p = 0.007). These results show that endogenous production of endothelin-1 contributes to the maintenance of vascular tone. Endothelin converting enzyme inhibitors and receptor antagonists may have therapeutic potential as vasodilators.

Adult↗

Classification of alpha 2-macroglobulin-cytokine interactions based on affinity of noncovalent association in solution under apparent equilibrium conditions.

alpha 2-Macroglobulin (alpha 2M) binds numerous cytokines; however, since binding affinities have not been determined, it is difficult to compare various alpha 2M-cytokine interactions or predict whether alpha 2M-cytokine complexes will form in the presence of other cytokine-binding macromolecules. In this investigation, we used a novel method to demonstrate that transforming growth factor-beta 1 (TGF-beta 1), TGF-beta 2, nerve growth factor-beta (NGF-beta), platelet derived growth factor-BB (PDGF-BB), tumor necrosis factor-alpha (TNF-alpha), and basic fibroblast growth factor (bFGF) reversibly associate with alpha 2M-methylamine to form noncovalent complexes. Apparent equilibrium was achieved in less than 15 min. Noncovalent alpha 2M-cytokine complexes were converted into covalent complexes; however, this occurred slowly. Therefore, a rapid equilibrium assumption was applied and equilibrium dissociation constants were determined using a single binding site model. KD values for the binding of cytokines to alpha 2M-methylamine varied by 2 orders of magnitude. The rank order of affinity was TGF-beta 2 (13 +/- 2 nM) > TGF-beta 1, NGF-beta > PDGF-BB > or = bFGF > TNF-alpha. Native alpha 2M bound TGF-beta 1, TGF-beta 2, NGF-beta, PDGF-BB, and TNF-alpha. Interferon-gamma did not bind to native alpha 2M or alpha 2M-methylamine. Each cytokine bound native alpha 2M with lower affinity than alpha 2M-methylamine except for TGF-beta 2 which bound both forms with equal affinity. In non-equilibrium systems, alpha 2M-methylamine appeared to bind more TGF-beta 2 due to the more rapid dissociation of TGF-beta 2-native alpha 2M complex. The classification of alpha 2M-cytokine complexes according to binding affinity should predict which complexes are most likely to form in cell culture and under various conditions in vivo.

Cross-Linking Reagents↗

Plasma endothelin following cardiac arrest: differences between survivors and non-survivors.

Cardiac arrest is associated with major metabolic disturbances, including severe hypoxia and large increases in circulating catecholamines, both of which are known to stimulate generation of the potent endothelium-derived vasoconstrictor peptide endothelin-1. We have, therefore, examined plasma immunoreactive endothelin concentrations following cardiac arrest. Blood was sampled at 10-min intervals from a central venous catheter inserted at onset of resuscitation in 38 patients (13 female; mean age, 67 years) presenting with cardiac arrest to the Accident and Emergency Department at the Royal Infirmary of Edinburgh. Plasma immunoreactive endothelin concentrations (mean +/- S.D.) in patients following cardiac arrest (5.4 +/- 2.3 pg/ml) were no different from those in healthy subjects (5.1 +/- 1.2 pg/ml). There was no significant difference between endothelin concentrations at presentation in survivors and non-survivors of cardiac arrest. However, non-survivors had a significant fall in endothelin concentrations with time from onset of resuscitation from 5.4 +/- 2.2 pg/ml to 3.5 +/- 1.8 pg/ml (P = 0.002), while survivors had a non-significant increase in concentrations. On multiple regression analysis there was a significant association between higher plasma endothelin concentration and survival (r = 0.37; P = 0.009). The failure of plasma endothelin to increase after cardiac arrest is unexpected. Although the fall in plasma endothelin with time in non-survivors may reflect the adverse physiological milieu that occurs during cardiac arrest, it is also possible that low endothelin concentrations contribute to the poor prognosis in this condition.

Aged↗

Ultrasound findings in renal parenchymal disease: comparison with histological appearances.

Ultrasound examination was carried out in 55 patients undergoing renal biopsy for suspected renal parenchymal disease. Analysis of sonographic and histological findings showed statistically significant positive correlations between renal size and the extent of glomerular hyper-cellularity and crescent formation and between cortical echogenicity and severity of glomerular sclerosis, crescent formation, interstitial inflammatory cell infiltration, tubular atrophy and interstitial fibrosis. Positive correlation was also observed between prominence of the medullary pyramids and glomerular sclerosis. The most marked sonographic abnormalities were seen in proliferative (including crescentic) glomerulonephritis, diabetic glomerulosclerosis and tubulo-interstitial nephritis. IgA, membranous and minimal change nephropathy were less likely to be associated with sonographic abnormalities. We conclude that certain sonographic appearances in renal parenchymal disease reflect the presence and severity of light microscopical abnormalities but, although ultrasound assessment provides a high positive predictive value for renal parenchymal disease, specific conditions cannot be distinguished.

Adult↗

Local L-NG-monomethyl-arginine attenuates the vasodilator action of bradykinin in the human forearm.

1. Studies in animals indicate that bradykinin relaxes blood vessels directly through an action on smooth muscle and indirectly through the release of endothelium-derived mediators. Its precise mechanism of action in the human arterial circulation is not yet known. 2. In this study the effects of a specific inhibitor of nitric oxide synthase, L-NG-monomethyl-arginine (L-NMMA) and noradrenaline on the vasodilator responses to bradykinin were examined in the forearm arterial bed of healthy volunteers. Noradrenaline was used as a control for vasoconstriction by L-NMMA; glyceryl trinitrate (GTN) as a control vasodilator acting independently of the NO synthase enzyme. 3. L-NMMA (4 mumol min-1; 5 min) alone reduced resting forearm blood flow by 44% (P < 0.01; n = 6) confirming that nitric oxide plays an important role in regulating vascular tone. 4. Bradykinin (10 and 100 pmol min-1; 3 min each dose) and GTN (2 and 5 nmol min-1; 3 min each dose) increased forearm blood flow in a dose-dependent manner (percentage changes 171 +/- 17% and 398 +/- 35%, and 176 +/- 21% and 268 +/- 42%, respectively; n = 6). 5. The response to bradykinin, but not that to GTN, was attenuated by L-NMMA compared with noradrenaline (P < 0.05; n = 6), suggesting that bradykinin-induced vasodilatation in the forearm is mediated, at least in part, by stimulating release of nitric oxide.

Adult↗

Raised plasma endothelin in unstable angina and non-Q wave myocardial infarction: relation to cardiovascular outcome.

BACKGROUND: Among patients with independent evidence of coronary disease and recent onset unstable angina or non-Q wave myocardial infarction the incidence of subsequent cardiovascular events is high. Markers predictive of adverse cardiac outcome in unstable angina and non-Q wave myocardial infarction need to be defined more accurately. Endothelin-1 is a potent endothelium derived vasoconstrictor peptide that may play a part in the pathophysiology of acute myocardial ischaemia. AIM AND STUDY DESIGN: In a study that specifically identified high risk patients a group of 16 consecutive patients with either unstable angina at rest or non-Q wave myocardial infarction were prospectively investigated to establish whether these conditions are associated with high plasma immunoreactive endothelin and whether endothelin concentration at presentation is related to cardiovascular events within the next 12 weeks. Controls consisted of a group of 40 healthy subjects. RESULTS: Patients had significantly higher mean (SD) plasma endothelin at presentation than did healthy controls (7.4 (1.1) v 5.0 (1.2) pg/ml, P < 0.0001). At nine weeks plasma endothelin was still significantly higher in those patients who had subsequent cardiovascular events, (n = 9, acute myocardial infarction or refractory angina with electrocardiographic changes and revascularisation procedures, 8.5 (2.6) pg/ml, P < 0.005 v controls) whereas its concentration returned to normal in those patients who had a favourable outcome (n = 7, 5.9 (0.7) pg/ml). Compared with those patients who had an uneventful course, patients with subsequent events had significantly higher plasma endothelin, both at presentation and at nine weeks (P < 0.05 on both occasions). IMPLICATIONS: Endothelin may contribute to the pathophysiology of acute coronary syndromes and may relate to subsequent cardiovascular outcome.

Adolescent↗