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Atrial natriuretic peptide release at rest and with exercise after cardiac transplantation with bicaval anastomoses.

Bicaval anastomoses in orthotopic cardiac transplantation offer the advantage of preserving the right atrial geometry. To elucidate the impact of this anastomotic technique on atrial natriuretic peptide plasma levels at rest and with exercise, nine patients were submitted to a symptom-limited supine exercise test. Atrial natriuretic peptide plasma levels in samples obtained from the right atrium were elevated at rest (274.4 +/- 60.4 pg/ml), at peak exercise (438.1 +/- 71.7 pg/ml), and thereafter (328.1 +/- 71.2 pg/ml) with respect to normal reference values of 21 +/- 1 pg/ml at rest and 92 +/- 14 at peak exercise. Renin, angiotensin, and aldosterone plasma levels were almost normal and did not indicate any pathologic processes in volume homeoostasis. Right-sided hemodynamic parameters were not correlated with atrial natriuretic peptide secretion. An adverse relationship between cold ischemic time of the donor organ and atrial natriuretic peptide release was found (r = 0.88, p < 0.0008), indicating that endocrine cardiocytes are sensitive to prolonged ischemia. Atrial natriuretic peptide release may thus be independent of the surgical approach, and other unique characteristics of the transplanted heart, such as denervation, are more likely to be responsible for elevated atrial natriuretic peptide plasma concentrations after orthotopic heart transplantation.

Adult↗

Haemodynamic and hormonal responses to cardiac pacing in humans: influence of different stimulation sequences and rates.

1. To examine the effects of rate and pressure on release of vasoactive hormones, 10 healthy subjects were examined. 2. A standardized pacing protocol was used to achieve different haemodynamic responses at two predetermined heart rates. Haemodynamic variables, and plasma concentrations of atrial natriuretic peptide, arginine vasopressin, adrenaline and noradrenaline were measured. 3. Right atrioventricular pacing at a rate of 150 impulses/min resulted in disparate responses in right atrial pressure (slight decrease) and pulmonary capillary wedge pressure (increase). Change in arterial plasma concentration of atrial natriuretic peptide correlated to change in pulmonary capillary wedge pressure, and change in arterial plasma concentration of noradrenaline correlated to change in total systemic vascular resistance, whereas concentrations of adrenaline and arginine vasopressin did not alter significantly during the stimulation periods. A significant influence of rate in addition to the pressure related influence on plasma concentration of atrial natriuretic peptide was found. In contrast, an increase in rate in the absence of an increase in atrial pressures did not raise the plasma concentration of atrial natriuretic peptide. There was no significant relationship between change in atrial natriuretic peptide and noradrenaline. 4. These data support the concept of a rate dependence of atrial natriuretic peptide release in man. Increased atrial pressure and thus presumed atrial stretch seems to be a prerequisite for increased plasma concentration of atrial natriuretic peptide. In addition, these results highlight the importance of monitoring both left and right atrial pressure in clinical investigations assessing modulation of atrial natriuretic peptide release.

Adrenergic alpha-Agonists↗

Chronic infusions of brain natriuretic peptide in conscious sheep: bioactivity at low physiological levels.

1. The circulating cardiac hormones atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) have similar bioactivity, as judged by comparative short-term studies. However, no study has reported the effects of longer-term administration of BNP. Accordingly, we have compared the haemodynamic, hormonal and renal actions of chronic (4-day) administration of BNP and ANP (0.5 pmol. min-1.kg-1) in a vehicle-controlled study in normal conscious sheep. 2.BNP infusions raised plasma BNP levels within the physiological range (4 pmol/l increment, P<0.001) and increased cyclic GMP levels (P=0.01). BNP infusions induced significant falls in right atrial pressure (P=0.048), stroke volume (P=0.014) and cardiac output (P=0. 003) associated with a rise in haematocrit (P=0.001). There were no significant renal effects or changes in renin-aldosterone. By comparison, equimolar infusion of ANP induced a smaller increment in plasma ANP levels (2 pmol/l, P=0.03) with qualitatively similar but statistically non-significant changes in plasma cyclic GMP and haemodynamic indices.3.In conclusion, chronic low-dose infusions of BNP elevate plasma cyclic GMP levels and induce significant haemodynamic actions. This study provides evidence that subtle variations in circulating BNP levels, well within the physiological range, may be important in long-term cardiovascular control.

Analysis of Variance↗

Hyposecretion of atrial natriuretic peptide due to associated right atrial infarction in a patient with acute right ventricular infarction?

A patient with acute right ventricular infarction who showed hyposecretion of atrial natriuretic peptide (ANP) in spite of abnormally high right atrial pressure and who died of a severe low cardiac output syndrome is reported. Right atrial infarction, which was proven at autopsy, may be responsible for this endocrine failure.

Atrial Function, Right↗

Divergent effects of ANP and BNP in acute heart failure: evidence for a putative BNP-selective receptor?

OBJECTIVE: Since the pathophysiology of natriuretic peptides in chronic heart failure (HF) is not uniform, we hypothesized that atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) may also have differential effects in acute HF. Our aim was to compare the haemodynamic actions of ANP with BNP, using a classical vasodilator as the control, in greyhound dogs with acute pacing-induced HF. DESIGN AND METHODS: The right ventricles of eight anaesthetized dogs were paced (193 +/- 4 bpm) until pulmonary capillary pressure (PCP) increased to approximately 15 mmHg. In each animal, according to a randomized within-animal design, haemodynamic responses to equimolar (10 pmol/kg per min) infusions of ANP and BNP were compared with those to sodium nitroprusside (SNP). RESULTS: Acute pacing alone increased PCP from 6.6 +/- 0.7 to 15.7 +/- 0.3 mmHg, right atrial pressure (RAP) from 1.9 +/- 0.5 to 4.0 +/- 0.6 mmHg, and systemic vascular resistance (SVR) from 1706 +/- 110 to 2179 +/- 106 dyne s/cm5, and reduced cardiac output (CO) from 4.1 +/- 0.4 to 2.5 +/- 0.2 l/min and arterial pressure from 86.1 +/- 2.4 to 74.5 +/- 2.1 mmHg (all P < 0.01). BNP and SNP improved haemodynamics similarly (CO +13 +/- 3% and +9 +/- 5%; PCP -12 +/- 2% and -12 +/- 2%; RAP -28 +/- 9% and -34 +/- 6%, SVR -15 +/- 3% and -11 +/- 3%, all P < 0.01, except CO with SNP, not significant), but effects of BNP on preload outlasted those of SNP. By contrast, ANP did not improve the haemodynamics. Haematocrit was significantly higher during BNP infusion than with ANP (P < 0.05) or with SNP (P < 0.001). CONCLUSIONS: The haemodynamic responses to exogenous BNP and ANP in acute heart failure were strikingly different. Whereas ANP actions were blunted, BNP response was preserved. Hypothetically, the presence of a putative BNP receptor may explain this finding.

Acute Disease↗

Supraventricular tachycardia, right atrial pressure, atrial natriuretic peptide and polyuria--a necessary sequence?

The release of atrial natriuretic peptide (ANP) may be stimulated by tachycardia and the evidence from human studies suggests that this is mediated by a rise in atrial pressure. However, animal experiments suggest that tachycardia can by itself increase ANP levels without increasing right atrial pressure (RAP). We report here the case of a healthy volunteer who had supraventricular tachycardia (SVT) whilst participating in a study evaluating the relationship between changes in RAP and changes in ANP. The ANP levels rose following the SVT but there was no rise in RAP, suggesting that heart rate can modulate ANP levels without changes in RAP as has been shown in animal experiments.

Adult↗

Measurement of funny current (I(f)) channel mRNA in human atrial tissue: correlation with left atrial filling pressure and atrial fibrillation.

INTRODUCTION: The funny current (I(f)) contributes to phase IV spontaneous depolarization in cardiac pacemaker tissue. Enhanced I(f) activity in myocardial tissue may lead to increased automaticity and therefore tachyarrhythmia. We measured the amount of I(f) activity in the messenger ribonucleic acid (mRNA) in human atrial tissue and correlated the mRNA amount to left atrial filling pressure and atrial fibrillation (AF). METHODS AND RESULTS: A total of 34 patients undergoing open heart surgery were included (15 men and 19 women, aged 55+/-10 years). Atrial tissue was obtained from the right atrial free wall, the right atrial appendage, the left atrial free wall, and the left atrial appendage, respectively. The mRNA amount of the I(f) channel was measured by reverse transcription polymerase chain reaction and was normalized to the mRNA levels of glyceraldehyde 3-phosphate dehydrogenase. We found that the I(f) channel mRNA was present at all the atrial sampling sites. A higher left atrial filling pressure, an indicator of congestive heart failure, was associated with a higher I(f) mRNA level (r2 = 0.446, P < 0.01 by linear regression). We also found that the mRNA amount was significantly higher in patients with AF than in patients without AF (1.68+/-0.49 vs 1.27+/-0.43; P < 0.05). Age, sex, right atrial filling pressure, left atrial dimension, and left ventricular ejection fraction had no significant effect on the mRNA level. CONCLUSION: The mRNA of the I(f) channel is present in the free-wall area and appendage area from both atria. Increased left atrial filling pressure and clinical AF are associated with increased I(f) mRNA level.

Adolescent↗

Extraction of buried P waves from printed electrocardiograms.

BACKGROUND: Morphologic identification of ectopic P-waves from surface ECGs can be challenging, particularly when the P-wave is buried in the QRST wave complex. Because ECGs are often available on paper and not digitally, we developed a method of subtracting the T-wave from the buried P-wave complex on paper ECGs. METHODS: To validate our system, an atrial extrastimulus was introduced during and following the T-wave. The ECGs were scanned and then transformed from an image format to a digital format. A computer algorithm digitally subtracted a QRST with no buried P-wave from one with a buried P-wave, thus resulting in an extracted P-wave. The extracted P-waves were compared to the nonburied P-wave by determining correlation coefficients and by visual grading by two independent reviewers. RESULTS: Visual grading comparing the buried P-wave with the exposed paced P-wave was 94%. The median correlation coefficient was 85%. CONCLUSIONS: An ectopic atrial P-wave obscured by a coincident QRST wave complex can be accurately derived from printed ECG using this PC-based system. Addition of this technique to the existing methods may aid in the localization and ablation of ectopic atrial foci.

Algorithms↗

Fluid administration attenuates the haemodynamic effect of frusemide in running horses.

The effect of blood volume repletion after frusemide administration on the right atrial and pulmonary artery pressure responses of horses to exercise has not been reported. We examined right atrial and pulmonary artery pressure and plasma atrial natriuretic peptide concentration (ANP) responses to an incremental exercise test in 6 Standardbred mares. Horses were treated, in a 3 way cross over design, with isotonic saline, frusemide (1 mg/kg bwt, i.v.), and frusemide followed 3 h later by lactated Ringer's solution (12 ml/kg bwt, i.v.). Three and a half hours after saline or frusemide administration the horses completed a standard exercise test. Frusemide significantly affected the right atrial and pulmonary artery pressure and ANP responses to exercise. Fluid administration decreased plasma total protein concentrations at rest and during running and abolished the effects of frusemide on the haemodynamic and ANP responses to exercise. These results suggest that the haemodynamic effect of frusemide in running horses is mediated, in large part, by a reduction in plasma and blood volume.

Animals↗

Human atrial natriuretic factor and renin-aldosterone in paracetamol induced fulminant hepatic failure.

It has been postulated that deficiency of a putative natriuretic factor, or resistance to such a factor, may contribute to sodium retention in fulminant hepatic failure. Levels of plasma human atrial natriuretic factor (h-ANF), plasma renin activity, and aldosterone concentration were measured in 33 patients with fulminant hepatic failure due to paracetamol overdose, and 12 healthy control subjects. Levels of h-ANF were raised only in patients with evidence of severe renal impairment (serum creatinine greater than 300 mumol/l and urine output less than 100 ml/24 hours). h-ANF values were median 4.15, range 2-9 pmol/l and 10.1, 1-25 pmol/l for the control and severe renal impairment groups respectively (p less than 0.001). In the latter plasma renin activity was raised compared to that in control subjects (median 19.8, range 1.04-41.7 and 2.86, 1.87-5.9 pmol/l/h respectively, p less than 0.02). Plasma aldosterone concentration was also raised in patients (2176, 199-6894 pmol/l compared to 368, 133-578 pmol/l in control subjects, p less than 0.01). Haemodialysis induced changes in circulating h-ANF which correlated with volume and right atrial pressure changes (p less than 0.001 and p less than 0.05 respectively). In six patients with no or mild renal failure infusion of 900 ml 5% human albumin solution caused a significant increase in plasma h-ANF (p less than 0.05) without natriuresis or diuresis, a finding compatible with the hypothesis that there may be resistance to h-ANF in this group. The present findings indicate that there is no deficiency of h-ANF in fulminant hepatic failure and that known mechanisms of h-ANF release are not impaired.

Acetaminophen↗

Synergistic regulation of ANF in isolated rat hearts.

The interaction between cardiac sympathetic stimulation of atrial natriuretic factors (ANF) release and left atrial stretch was examined in groups (n = 5 or 6) of isolated, perfused (10 ml/min), paced rat hearts. Left atrial stretch, produced by an increase in atrial pressure of 1.1 +/- 0.2 mmHg over 8 min, transiently (4 min) increased ANF release by 46 +/- 4% over baseline (220 pg/ml buffer; P < 0.05). Infusion of 1 microM norepinephrine (NE) over 28 min caused a sustained increase in ANF release of 76 +/- 10% (P < 0.05). Atrial stretch plus NE caused additive effects on ANF release during stretch but 2.4 times the additive effects after stretch (P < 0.05). To examine whether resting tension modulates the ANF response to sympathetic stimulation, the left atrium was stretched throughout the experiment by increasing the atrial pressure by 1-1.5 mmHg. Infusion of 1 microM NE over 28 min increased ANF release by 216 +/- 46% (P < 0.01) in the prestretched heart, compared with a calculated summed increase of 85% due to NE alone plus prestretch alone. Infusion of 0.5 microM veratridine, known to stimulate ANF via mechanical effects on the heart, increased ANF release by 88 +/- 3% (P < 0.01). Scorpion venom, known to dose dependently stimulate ANF secretion via activation of neuronal sodium channels, elicits a negligible increase in ANF release at the threshold concentration of 0.1 microM. The combined infusion of 0.5 microM veratridine plus 0.1 microM venom increased ANF release by 239 +/- 53% (n = 6, P < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

ATP-sensitive potassium channels regulate stimulated ANF secretion in isolated rat heart.

Perfused hearts (n = 127) were exposed to acute hypoxia (10% O2 for 12 or 20 min) or left atrial stretch (increase in atrial pressure) in the presence or absence of 100 mumol/l ATP-sensitive potassium channel blocker (tolbutamide) or openers (pinacidil and diazoxide). Hypoxia alone elicited a prolonged atrial natriuretic factor (ANF) release, peaking at 74% over baseline (P < 0.01); with tolbutamide, ANF secretion peaked at 132% over baseline (P < 0.01). Pinacidil and diazoxide abolished the ANF response to hypoxia (P < 0.01). Atrial stretch alone (1 mmHg) transiently (2 min) increased ANF by 56% (P < 0.05); with tolbutamide, ANF increased transiently by 124% and showed a prolonged increase of 52% (P < 0.05). With tolbutamide, graded stretch (0.5-2.3 mmHg) induced a bell-shaped transient (2-min) increase of ANF release [-3% at 0.5 mmHg, 124% (P < 0.05) at 1.0 mmHg, 80% (P < 0.05) at 1.48 mmHg, and 14% at 2.22 mmHg] and a saturating prolonged ANF response. Tolbutamide increased the ANF response nonsignificantly at lower doses (30 mumol/l) and had no effect at 1 mumol/l. Pinacidil abolished the stretch-induced ANF release. These results suggest that ATP-sensitive potassium channels are extremely potent modulators of stimulated ANF secretion.

Adenosine Triphosphate↗

Clearance receptors and endopeptidase: equal role in natriuretic peptide metabolism in heart failure.

The effects of separate and combined endopeptidase inhibition (by SCH-32615) and natriuretic peptide receptor C blockade [by C-ANP-(4-23)] on the clearance and bioactivity of atrial (ANP) and brain (BNP) natriuretic peptides was investigated in eight sheep with heart failure. SCH-32615 and C-ANP-(4-23) administered separately induced significant and proportionate dose-dependent rises in plasma ANP, BNP, and guanosine 3',5'-cyclic monophosphate (cGMP) levels. Associated with these changes were reductions in arterial pressure, left atrial pressure, and peripheral resistance and increases in cardiac output, urine volume, sodium excretion, and creatinine clearance. SCH-32615 induced greater diuresis and natriuresis than C-ANP-(4-23). Combined administration of SCH-32615 and C-ANP-(4-23) induced greater than additive rises in plasma ANP, BNP, and cGMP concentrations, with enhanced hemodynamic effects, diuresis, and natriuresis and reduced plasma aldosterone levels. In conclusion, we find that the enzymatic and receptor clearance pathways contribute equally to the metabolism of endogenous ANP and BNP in sheep with heart failure. Combined inhibition of both degradative pathways was associated with enhanced hormonal, hemodynamic, and renal effects and may have greater potential therapeutic value than either agent separately.

Aldosterone↗

Angiotensin and ANP secretion during chronically controlled increments in atrial pressure.

The primary objective of this study was to determine whether angiotensin II (ANG II) has direct effects on the atrium to chronically stimulate the secretion of atrial natriuretic peptide (ANP) by actions that are independent of its vasoconstrictor and fluid-retaining effects that increase ANP secretion indirectly by raising atrial pressure. In five dogs, right atrial pressure (RAP) was controlled at approximately 5.5 mmHg above control levels for 8 days by employing an externally adjustable occluder around the pulmonary artery and a servo-control system, and plasma levels of ANG II were fixed at either normal (days 1-3 and 7-8) or high (days 4-6) physiological concentrations by chronic infusion of captopril+ANG II. When plasma ANG II was maintained at normal levels during servo-control of RAP, plasma ANP concentration increased five- to sixfold and sodium balance was achieved at a reduced arterial pressure (-14 mmHg). In contrast, despite increased plasma levels of ANP, the high rate of ANG II infusion produced marked sodium retention during the initial 24 h; however, the antinatriuresis was not sustained because the servo-control system partially deflated the pulmonary artery occluder to prevent fluid-induced increments in RAP. Moreover, in the absence of a change in RAP, high plasma levels of ANG II did not influence plasma ANP concentration. These findings indicate that the plasma levels of ANP achieved in heart failure increase renal excretory capability and allow fluid balance to be achieved at a substantial fall in mean arterial pressure as long as there is minimal involvement of the renin-angiotensin system.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Atrial natriuretic peptide and sodium homeostasis in compensated heart failure.

The purpose of this study was to determine whether high plasma levels of atrial natriuretic peptide (ANP) in compensated heart failure are important in the maintenance of sodium balance. This was achieved by subjecting eight dogs to bilateral atrial appendectomy (APX) to blunt the ANP response to pacing-induced heart failure. Five intact dogs served as controls. In controls, 14 days of left ventricular pacing at 240 beats/min produced a sustained fall in cardiac output and mean arterial pressure of approximately 40 and 20%, respectively; compared with cardiac output, reductions in renal blood flow (up to approximately 25%) were less pronounced and even smaller decrements in GFR occurred (up to 9%). Despite these changes and a threefold elevation in plasma norepinephrine concentration, plasma renin activity (PRA) did not increase and sodium balance was achieved during the second week of pacing in association with a six- to eightfold rise in plasma levels of ANP. Similar responses occurred in four dogs in which APX was relatively ineffective in blunting the ANP response to pacing. In marked contrast, there were substantial increments in PRA and in plasma norepinephrine concentration, and marked sodium and water retention during the last week of pacing in four dogs with APX and severely deficient ANP. These results indicate that ANP plays a critical role in promoting sodium excretion in the early stages of cardiac dysfunction.

Adaptation, Physiological↗

Changes in atrial natriuretic peptide and plasma renin activity following changes in right atrial pressure in patients with chronic renal failure.

Since it was first discovered in the early 1980s, the role of atrial natriuretic peptide (ANP) in the control of fluid and electrolyte balance and blood pressure has been extensively studied in both health and disease. We report here a study of ANP and its relationship to corresponding changes in right atrial pressure (RAP) in patients with chronic renal failure (CRF) on haemodialysis compared to healthy controls. Although there was a positive correlation between RAP and ANP in both groups, the changes in ANP following changes in RAP between the two groups were not statistically significant. A unique observation was the response of RAP to changes in posture, with RAP falling significantly as expected in healthy controls in contrast to the exceptional absence of a significant fall in patients with CRF. Healthy controls demonstrated appropriate postural changes in plasma renin activity (PRA) despite marked suppression of PRA levels due to salt loading, in complete contrast to patients with CRF who, despite chronic fluid overload and elevated levels of ANP, continued to have grossly elevated PRA levels that failed to change significantly in response to changes in posture.

Atrial Function, Right↗

Effect of pacing on epinephrine-stimulated atrial natriuretic factor release.

Previous in vitro studies showed that epinephrine stimulation can induce atrial natriuretic factor (ANF) release only form the right atrium but not from the left. In addition, sinus node has been shown to play an important role in the release of ANF. In vitro studies were done in isolated left and right rat atria to determine if pacing can induce the left atria to release ANF during epinephrine stimulation. ANF concentrations in the perfusate were measured by a radioimmunoassay method. Epinephrine increased ANF release in the right atria (from 6.3 +/- 0.8 to 10.8 +/- 0.9 pg/min/mg), but not in the unpaced left atria (4.2 +/- 0.4 and 4.2 +/- 0.3 pg/min/mg). However, when the atria were paced, ANF release rose in both the left (from 6.2 +/- 0.5 to 11.5 +/- 1.4 pg/min/mg) and right (from 8.4 +/- 1.15 to 16.6 +/- 1.8 pg/min/mg) atria with epinephrine addition. These results suggest that atrial contraction and tension play an important role in epinephrine-stimulated ANF release.

Animals↗