The atherogenic potential of endothelin.
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Biomedical subjects
Publications and source records attributed to A Lerman.
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BACKGROUND: Although recent investigations report the elevation of plasma endothelin (ET) in congestive heart failure (CHF), it remains unclear if this elevation is that of the biologically active peptide ET-1 or of its precursor big-ET. Furthermore, it is unclear if such elevation is associated with increased myocardial ET and if the molecular form from cardiac tissue is altered ET. Last, it remains to be established whether circulating ET is increased at the earliest stage of CHF in patients with asymptomatic left ventricular dysfunction and correlates with the magnitude of ventricular dysfunction. METHODS AND RESULTS: The present study was designed to investigate concentrations and molecular forms of ET in plasma and cardiac tissue in healthy subjects and CHF patients with New York Heart Association (NYHA) class I through IV using cardiac radionuclide angiogram, cardiac myocardial biopsy, radioimmunoassay, gel permeation chromatography (GPC), and immunohistochemical staining (IHCS). Plasma ET was increased only in patients with moderate (NYHA class III) or severe (NYHA class IV) CHF compared with healthy subjects and individuals with asymptomatic (NYHA class I) or mild (NYHA class II) CHF. The elevation of circulating ET in CHF showed a negative correlation with left ventricular ejection fraction and cardiac index and a positive correlation with functional class and left ventricular end-diastolic volume index. GPC demonstrated that immunoreactive plasma ET was ET-1 in healthy subjects and both mature ET-1 and its precursor big-ET in severe CHF patients, with big-ET the predominant molecular form. Cardiac tissue concentrations and IHCS revealed ET presence in healthy atrial and ventricular tissue, which were not different in severe CHF. GPC revealed that the molecular form of cardiac ET was ET-1 in both healthy and CHF hearts. CONCLUSIONS: The present study establishes for the first time that the elevation of plasma ET in severe human CHF represents principally elevation of big-ET. Second, ET is present in healthy and failing myocardia, and its activity by both immunohistochemistry and radioimmunoassay is not changed in CHF. Furthermore, the elevated plasma ET is characteristic of severe CHF and not asymptomatic or mild CHF. In addition, the degree of plasma elevation of ET correlates with the magnitude of alterations in cardiac hemodynamics and functional class. The present study confirms and extends previous investigations of ET in human CHF and establishes the evolution of circulating and local cardiac ET in the spectrum of human CHF.
Early identification of patients with symptomless left-ventricular dysfunction and early pharmacologic intervention may have an impact on the outlook of patients with heart failure. Atrial natriuretic peptide (ANP) is a cardiac hormone that is released as a C-terminal (C-ANP) and an N-terminal peptide (N-ANP). Since N-ANP has reduced clearance rates compared with C-ANP, N-ANP circulates at higher concentrations. Based on the known increased concentration of C-ANP in symptomatic congestive heart failure, our study was designed to evaluate prospectively N-ANP profile and left-ventricular function in subjects with symptomless and symptomatic heart failure, and the role of plasma N-ANP as a marker for early identification of patients with heart failure. 180 patients who were referred for rest and exercise radionuclide angiography for evaluation of left-ventricular function were studied. Blood was taken for measurement of C-ANP and N-ANP before angiography. Patients were grouped according to New York Heart Association (NYHA) heart failure classification and left-ventricular function. Mean (SD) plasma N-ANP concentration in patients with symptomless left-ventricular dysfunction (NYHA class I, n = 70) was 243 (256) pmol/L (range 27-922 pmol/L), and was higher (p < 0.001) than in 25 control subjects (28 pmol/L). A plasma N-ANP concentration above 54 pmol/L (mean +/- 1.96SD of the control group) had a sensitivity of 90% and a specificity of 92% for detection of patients with symptomless left-ventricular dysfunction. We have shown that plasma N-ANP concentrations are significantly increased in patients with symptomless left-ventricular dysfunction and that this peptide can serve as a marker for diagnosis of such patients.
BACKGROUND: Atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and C-type natriuretic peptide (CNP) are a family of structurally related peptides that participate in the integrated control of renal and cardiovascular function. Previous studies suggest a functional role for these hormonal peptides in cardiorenal regulation in congestive heart failure (CHF). METHODS AND RESULTS: The present studies were performed in normal subjects (n = 6) and in patients with mild (New York Heart Association [NYHA] class I to II, n = 20) and severe (NYHA class III to IV, n = 20) CHF by use of radioimmunoassay and immunohistochemical staining (IHCS). Plasma ANP was significantly increased in both mild and severe CHF compared with normal subjects. In contrast, plasma BNP was only moderately increased in the severe CHF group, and plasma CNP concentration was unchanged in CHF compared with normal subjects. Atrial tissue concentrations of the natriuretic peptides did not parallel circulating concentrations. ANP predominated in normal atrial tissue, but BNP predominated in CHF. In ventricular tissue, IHCS staining was present for all three peptides in normal ventricular myocardium and was markedly enhanced in CHF. CONCLUSIONS: These studies support a differential regulation of ANP, BNP, and CNP circulating concentrations and tissue activity in human CHF.
BACKGROUND: Hypercholesterolemia is characterized by a coronary vasoconstrictive response to the endothelium-dependent vasodilator acetylcholine. This abnormality may be due to reduced synthesis of endothelium-derived relaxing factor and/or enhanced synthesis and release of an endothelium-derived contracting factor. Endothelin is an endothelium-derived vasoconstrictor and mitogenic peptide that is present in normal plasma, and its circulating concentrations are elevated in disease states that are characterized by abnormal endothelium-dependent relaxation to acetylcholine. The current studies were designed to test the hypotheses that experimental hypercholesterolemia results in elevation of plasma and tissue endothelin immunoreactivity and that the abnormal acetylcholine-evoked coronary vasoconstriction in the hypercholesterolemic animals is associated with further elevation of plasma endothelin. METHODS AND RESULTS: Plasma concentrations and molecular forms of endothelin immunoreactivity were determined following 2% cholesterol diet for 4 months in pigs and during intracoronary acetylcholine administration. Second, we assessed the presence of endothelin in the coronary vascular wall by using immunohistochemistry. Hypercholesterolemia elevated plasma endothelin concentration and enhanced coronary artery tissue endothelin immunoreactivity. The endothelium-dependent vasodilator acetylcholine further increases plasma endothelin in hypercholesterolemia in association with coronary vasoconstriction. The predominant molecular form of endothelin in hypercholesterolemia is the biological active endothelin-1. CONCLUSIONS: This study suggests a role for endothelin as an early participant and a marker for the endothelial dysfunction in hypercholesterolemia as well as a participant in the atherogenic process.
Pain ratings during the cold pressor test were significantly lower in female inpatients with borderline personality disorder who report that they do not experience pain during self-injury (BPD-NP group, n = 11), compared with similar patients who report that they do experience pain during self-injury (BPD-P group, n = 11), and normal female subjects (n = 6). Pain ratings were not significantly different in the BPD-P and normal control groups. Self-report ratings of depression, anger, anxiety, and confusion were significantly lower, and ratings of vigor significantly higher following the cold pressor test in the BPD-NP group, but not in the BPD-P group. Only anxiety was significantly lower in the normal control group following the cold pressor test. The implications and limitations of these preliminary findings are discussed.
OBJECTIVES AND BACKGROUND: Endothelin is an endothelium-derived vasoconstrictor peptide that increases systemic and renal vascular resistance at pathophysiologic concentrations. Recent studies have demonstrated its presence in the circulation and its elevation in animals with congestive heart failure, suggesting that endothelin may contribute to the vasoconstrictive state of heart failure. The current study was designed with two objectives: 1) to demonstrate the elevation of circulating endothelin in patients with heart failure, and 2) to determine the short- and long-term response of endothelin levels after heart transplantation. METHODS: Plasma endothelin concentrations were measured in two patient groups. Group 1 included 24 patients with end-stage heart failure who were studied during evaluation for potential heart transplantation. Group 2 included 12 patients from Group 1 who had had heart transplantation. Plasma endothelin concentrations were measured before and on days 1, 3 and 7 after heart transplantation. Eight of these patients also had levels measured 3 to 12 months later. RESULTS: Plasma endothelin concentrations were significantly elevated in patients with heart failure compared with those in an age-matched control group (11.7 +/- 1.1 vs. 6.8 +/- 0.3 pg/ml). In response to heart transplantation, plasma endothelin concentrations increased further and were sustained during a long-term follow-up. These later changes were associated with a significant increase in arterial pressure and serum creatinine. CONCLUSIONS: This study demonstrates that endothelin concentrations are increased in patients with heart failure and increase further after heart transplantation. It suggests a possible role for endothelin in the cardiovascular and renal adaptive responses to human heart transplantation.
Congestive heart failure is characterized by decreased cardiac output and increased peripheral vascular resistance. Endothelin, a peptide found in plasma, is a potent vasoconstrictor. We hypothesized that plasma concentrations of endothelin are increased in humans with congestive heart failure. Plasma samples were obtained from 71 healthy control subjects and 56 patients with congestive heart failure. The mean plasma concentration of endothelin, measured by radioimmunoassay, was 7.1 +/- 0.1 pg/ml in the 71 normal control subjects but 12.6 +/- 0.6 pg/ml in the 56 patients with heart failure (P = 0.001). To evaluate the relationship between circulating endothelin and clinical stage of congestive heart failure, we categorized patients into two groups--those with mild heart failure (New York Heart Association class I or II) and those with severe heart failure (class III or IV). Circulating endothelin in the 24 patients with mild disease was 11.1 +/- 0.7 pg/ml, significantly higher than in normal subjects (P < 0.001). Endothelin in the 32 patients with severe heart failure was 13.8 +/- 0.9 pg/ml, a level significantly higher than that in the group with mild disease (P = 0.029). In the 56 patients with congestive heart failure, a negative correlation was found between plasma concentration of endothelin and left ventricular ejection fraction (r = -0.279; P = 0.037). These data demonstrate that the plasma concentration of endothelin is increased in humans with congestive heart failure and that the level correlates with the severity of disease. Endothelin may have a role in the increased vascular resistance in patients with chronic congestive heart failure.
Patients with hepatic cirrhosis develop widespread abnormalities in kidney function and vasoactive hormones. These change rapidly after liver transplantation during immunosuppression with cyclosporine. The role of changing eicosanoid excretion and endothelin levels in regulating renal function after transplantation in humans remains uncertain. We studied 32 patients with regard to renal hemodynamics, glomerular filtration, urinary prostacyclin (6-keto-PG-F1-alpha), thromboxane (TBX2), and endothelin before and during the first four weeks after orthotopic liver transplantation. Arterial pressure rose from 106 +/- 2/61 +/- 2 to 146 +/- 4/81 +/- 2 mmHg, (P less than .001), while renal blood flow fell (686 +/- 38 to 453 +/- 24 ml/min/1.73 m2, P less than .05), as did GFR. Pretransplant excretion of 6-keto and TBX2 was above that of normal subjects and fell progressively after transplant, as did plasma renin activity and aldosterone. The 6-keto levels fell below normal after two weeks. The ratio of TBX2/6-keto remained elevated compared with normal subjects throughout the month after transplant (1.54 +/- 0.38 vs. 0.54 +/- 0.07, P less than .01). Endothelin levels rose during the first week (7.4 +/- 1.4 vs. 12.4 +/- 2.7 pg/ml, P less than .05), but fell back to baseline thereafter. These results indicate that high levels of urinary eicosanoids in patients with liver disease fall rapidly after liver transplantation during CsA immunosuppression. Unlike results in many experimental models, these data suggest that renal vasoconstriction in humans may be associated primarily with suppression in renal prostacyclin excretion rather than stimulation of thromboxane.
BACKGROUND: The endothelium possesses the ability to modulate vascular tone by the release of vasodilators and vasoconstrictors, among them endothelium-derived relaxing factor (EDRF) and endothelin (ET). Abnormalities in EDRF generation have been demonstrated in various cardiovascular pathophysiological states. Moreover, a twofold increase in plasma ET concentration was reported in these disease states. Recent in vitro studies have suggested the interaction between these two endothelium-derived substances, suggesting that imbalance between the two may contribute to alternation in vascular tone characteristic of these disease states. Thus, the hypothesis of this study was that inhibition of endogenous EDRF will enhance the vasoconstrictor response to a twofold increase in plasma ET concentrations. METHODS AND RESULTS: Experiments were conducted in three groups of anesthetized dogs. In group 1, ET-1 was infused intravenously to double circulating ET concentrations. Group 2 received both ET and NG-monomethyl L-arginine (L-NMMA), a competitive inhibitor of EDRF generation, and group 3 received a continuous infusion of L-NMMA alone. Twofold increase in plasma ET concentrations was characterized by an increase in systemic and renal vasoconstriction. The inhibition of EDRF markedly enhanced the vasoconstriction to ET specifically involving the systemic, pulmonary, coronary, and renal arterial circulations. CONCLUSIONS: The present study demonstrates that inhibition of endogenous EDRF augments the vasoconstrictor property of ET and supports a functional role for the balance between endothelium-derived vasodilating and vasoconstricting factors in the regulation of vascular tone.
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This study was undertaken to investigate circulating endothelin (ET) and associated renal hemodynamics in the acute ischemic renal dysfunction associated with suprarenal aortic cross-clamping (ACC) in the presence and absence of prostaglandin inhibition in the anesthetized dog. Second, the modulating action of exogenous atrial natriuretic factor (ANF) was also investigated. In Group I (ACC; N = 6), ACC was performed in the absence of prostaglandin inhibition. No change in mean arterial pressure, GFR, RBF, renal vascular resistance, or ET was noted 2 h after reperfusion when compared with baseline values. In the presence of prostaglandin inhibition with indomethacin (10 mg/kg iv) (Group II, ACC + INDO; N = 10), an increase in plasma ET was first noted to be elevated above baseline ET in Group I as well as during and 2 h after ACC in association with a reduction in GFR, marked renal vasoconstriction, and a sustained increase in arterial pressure. To evaluate the role of the kidney in this increase in ET, another group (Group III, ACC + INDO + NEPH; N = 6) was investigated in the presence of prostaglandin inhibition, and bilateral renal artery clamping was performed 30 min before ACC and maintained throughout the protocol to simulate nephrectomy. In this group, plasma ET concentrations did not increase during ACC. Because ANF may antagonize the renal actions of ET in vivo and may suppress ET release in vitro, the action of ANF upon GFR and plasma ET was evaluated in Group IV (ACC + INDO + ANF; N = 6).(ABSTRACT TRUNCATED AT 250 WORDS)
The endothelium possesses the ability to modulate vascular tone by the release of vasodilator and vasoconstrictor substances, among them endothelium-derived relaxing factor (EDRF) and endothelin. Abnormalities in EDRF generation were demonstrated in various cardiovascular pathophysiological states, specifically atherosclerotic vascular disease, congestive heart failure, and essential and pulmonary hypertension. Moreover, increases in plasma endothelin concentration have been reported as well in these disease states. When these observations are taken together, these states may be characterized by an attenuated release of EDRF, whereas the release of endothelin is augmented. An imbalance between EDRF and endothelin may contribute to the alteration in vascular tone characteristic of cardiovascular disease. The following review summarizes the present knowledge of the role of EDRF and endothelin in such disease processes.
BACKGROUND: Atherosclerosis is characterized by endothelial injury and the proliferation of arterial smooth-muscle cells. The latter may be a result of the release of growth factors from the vessel wall; such growth factors may include an endothelium-derived vasoconstrictor for peptide with mitogenic properties. We tested the hypothesis that plasma endothelin concentrations are elevated in persons with symptomatic atherosclerosis, independently of age. METHODS: We measured plasma endothelin levels in 100 normal subjects and in 40 patients with atherosclerosis predominantly of the following types: aortic and peripheral vascular disease (14 patients), renovascular disease (9 patients) coronary artery disease (9 patients), and carotid disease (8 patients). We also performed immunohistochemical staining for endothelin in the walls of atherosclerotic vessels. RESULTS: In the normal subjects, the mean (+/- SD) plasma endothelin concentration was 1.4 +/- 0.2 pmol per liter, with no correlation between age and plasma endothelin concentration (r = 0.13, P = 0.2). In the patients with symptomatic atherosclerosis, the mean plasma endothelin concentration was 3.2 +/- 1.2 pmol per liter (P less than 0.001), and there was a significant correlation between plasma endothelin and the number of sites of disease involvement (r = 0.89, P less than 0.001). In the immunohistochemical studies, endothelin-1-like immunoreactivity was observed in vascular smooth muscle as well as in endothelial cells. CONCLUSIONS: Endothelin may be a marker for arterial vascular disease. Whether it participates in the atherogenic process or is merely released from damaged endothelial cells is unclear.
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Endothelin (ET) is a 21-amino-acid peptide of endothelial origin, is a potent systemic and renal vasoconstrictor associated with sodium retention and modulation of the renin-angiotensin-aldosterone system. The present study was designed to determine if plasma ET is elevated in humans with cirrhosis (n = 12), a state characterized by sodium retention and increased plasma renin activity (PRA) and plasma aldosterone (PA), and to determine the effect of orthotopic liver transplantation (OLT) upon plasma ET, PRA, and PA at 1, 3, and 7 days after transplantation. Plasma ET before OLT was 1.62 +/- 0.23 pg/ml, which was not different as compared with normal controls. Plasma ET significantly increased to 4.18 +/- 0.66, 3.87 +/- 0.58, and 4.07 +/- 0.61 pg/ml, respectively following OLT. PRA remained elevated throughout the postoperative course, in contrast to PA that decreased following OLT. Mean arterial pressure increased significantly from 82 +/- 4 pre-OLT to 98 +/- 4 and 103 +/- 2 mmHG on days 3 and 7 respectively.
BACKGROUND: Endothelin is an endothelium-derived peptide that produces sustained contraction of arterial and venous smooth muscle in vitro. Several studies have established endothelin as a systemic, renal, and coronary vasoconstrictor in vivo at pharmacological concentrations. Such concentrations of endothelin were antinatriuretic in association with activation of the renin-angiotensin-aldosterone system. Recent studies have demonstrated that endothelin is present in the plasma and that its plasma concentrations are increased in various pathological states associated with systemic and renal vasoconstriction. To date, it remains unclear if such increases in circulating endothelin are associated with biological activity. Thus, the objective of this study was to determine the biological action of endothelin on cardiorenal and endocrine function through administration of exogenous endothelin, which achieves plasma concentrations that have been reported in various pathophysiological conditions. METHODS AND RESULTS: Experiments were conducted in two groups of anesthetized dogs. In group 1, endothelin-1 was infused intravenously at 2.5 ng/kg/ml (n = 6), which produced a doubling of circulating concentrations. Group 2 (n = 8) received saline vehicle to serve as a time control. The current studies demonstrate that a twofold increase in plasma endothelin concentrations did not affect mean blood pressure or coronary blood flow. Heart rate and cardiac output decreased in association with increased renal and systemic vascular resistances and antinatriuresis. CONCLUSIONS: The present studies demonstrate that endothelin at pathophysiological plasma concentrations produced by exogenous endothelin has biological action. These studies support a functional role for endogenous endothelin as a potentially pathophysiological vasoconstrictor peptide hormone in the regulation of cardiovascular, renal, and endocrine function.
UNLABELLED: The effects of insulin on in vivo glucose use and potassium uptake in healthy humans are well documented. However, the interrelationship between these two processes is not fully defined. In order to characterize it, we have used the euglycemic clamp technique on six normal volunteers, two patients with acanthosis nigricans and insulin resistance (AN), and one patient with idiopathic nonazotemic hyperkalemia (HK). In the basal state, all patients had normal fasting blood sugar, the AN patients had fasting hyperinsulinemia (600% of controls), and the HK patient had an elevated plasma potassium level of 5.1 mmol/L (n = 4.2 +/- 0.2 mmol/L). During low dose (1 mU/kg.min), and high dose (10 mU/kg.min) insulin infusions, normals used glucose at a rate of 220 +/- 10 and 470 +/- 20 mg/M2.min, respectively. The HK patient had a normal glucose use at both infusion rates, but the AN patients had a 20% decrease of glucose use compared to normals at the two infusion rates. In normal patients, plasma potassium fell by 0.7 and 1.4 mmol/L at the end of the two infusion periods, respectively. AN patients had a similar fall in potassium, but the HK patient displayed no change in plasma potassium levels during a low dose insulin infusion, and only a 0.6 mmol/L drop during the high dose insulin infusion. These results indicate that: 1) patients with AN are resistant to insulin action on glucose use, 2) AN patients have a normal response to insulin on potassium uptake, 3) HK is a patient with normal response to insulin on glucose use, and 4) this patient is resistant to insulin action on potassium uptake. IN CONCLUSION: 1) we have demonstrated the independence of insulin action on glucose and potassium uptake in vivo, 2) we documented the existence of selective insulin resistance in the above patients, 3) we speculate, that in patients with a normal response to insulin on one parameter of its actions, and subnormal response on another parameter, a postreceptor defect rather than a receptor abnormality must exist.