Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0018799 (heart disease)
34,133 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The family of the atrial natriuretic peptides, proANP fragments and the active alphaANP, is strongly related to heart disease. The aim was to study in CHF subjects the relation of mdANP and NtANP with brain natriuretic peptide (BNP) and with other traditional medical parameters. Sixteen CHF patients (aged 51.9+/-13.7 years) and 16 healthy subjects age matched (50.8+/-5.9 years) were selected. Both NtANP and mdANP were higher in CHF patients than in healthy subjects (1436+/-288 vs. 288+/-22 pmol/l p<0.001 and 2305+/-383 vs. 423+/-65 pmol/l p<0.0001, respectively). BNP in CHF patients was 28.0+/-9 pmol/l (reference values 1.7+/-1.8 pmol/l). Both NtANP and mdANP demonstrated positive correlation with BNP, p<0.0001 and with left atrial end-systolic volume, p<0.05. BNP correlated with left ventricular mass, p<0.03. In conclusion, plasma NtANP and mdANP analyses are useful laboratory markers in CHF patient investigation and follow up. In particular, they could be employed as non-invasive parameters to follow up worsening of systolic dysfunction until heart transplantation is required.
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PMID:Plasma atrial natriuretic peptide (ANP) fragments proANP (1-30) and proANP (31-67) measurements in chronic heart failure: a useful index for heart transplantation? 1148 54

To elucidate the effect of adrenomedullin (AM) on fluid homeostasis under cardiopulmonary bypass (CPB), we investigated the serial changes in plasma AM and other parameters related to fluid homeostasis in 13 children (average age, 28.2 months) with congenital heart disease during cardiac surgery under CPB. Arterial blood and urine samples were collected just after initiation of anesthesia, just before commencement of CPB, 10 min before the end of CPB, 60 min after CPB, and 24 h after operation. Plasma AM levels increased significantly 10 min before the end of CPB and decreased 24 h after operation. Urine volume increased transiently during CPB, which paralleled changes in AM. Simple regression analysis showed that plasma AM level correlated significantly with urinary vasopressin, urine volume, urinary sodium excretion, and plasma osmolarity. Stepwise regression analysis indicated that urine volume was the most significant determinant of plasma AM levels. Percent rise in AM during CPB relative to control period correlated with that of plasma brain natriuretic peptide (r = 0.57, P < 0.01). Our results suggest that AM plays an important role in fluid homeostasis under CPB in cooperation with other hormones involved in fluid homeostasis.
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PMID:Significance of adrenomedullin under cardiopulmonary bypass in children during surgery for congenital heart disease. 1151 67

Since the original discovery of atrial natriuretic peptide (ANP) nearly 20 years ago and the subsequent realisation of the existence of a family of natriuretic peptides, there has been considerable progress in the elucidation of the physiological and pathophysiological significance of these peptides. This review has examined two potentially important practical aspects arising from natriuretic peptide research - the significance of measurement of plasma levels of ANP and of brain natriuretic peptide BNP for cardiovascular disease and the therapeutic potential of targeting the natriuretic peptide system. Several situations where the measurement of plasma ANP and BNP may be of benefit in the overall assessment and prognosis of cardiac disease have been discussed. The measurement of plasma levels of these peptides appears to have limited value as a specific diagnostic tool and is unlikely to replace well-established procedures to assess cardiac function. Nevertheless, given the strong negative predictive value, the value of the measurement of plasma natriuretic peptides particularly BNPs, in people with suspected heart disease, rests on the evidence that a normal value indicates a low risk of cardiac impairment. Moreover, a consistently elevated plasma level of BNP after myocardial infarction is associated with a distinctly poor prognosis. In turn, this may help to select those with high plasma levels for subsequent detailed investigation of cardiac dysfunction. This may be an important option, especially where the facilities for the more invasive cardiological procedures are not available. Intriguingly, recent research also suggests the possibility that plasma levels of natriuretic peptides may have an important role in guiding more effective therapy for heart failure. The potent cardiovascular and renal effects of ANP and BNP provide an important therapeutic potential for hypertension and for conditions associated with volume overload. A number of approaches which have been used to enhance endogenous activity of these peptides have been highlighted. The use of the native peptides ANP and BNP may well be valuable in some circumstances, such as in critically ill individuals with congestive heart failure or renal failure. However, the limitations of the use of peptides, especially for long-term treatment, are obvious. In view of this, considerable effort has been devoted to the development of orally active agents to enhance endogenous natriuretic peptides by inhibition of breakdown by neutral endopeptidase. This research has led to the development of vasopeptidase inhibitors - dual inhibitors of both endopeptidase and angiotensin-converting enzyme - to enhance endogenous natriuretic peptide function on a background of reduced angiotensin II activity. The broad spectrum of action and the potentially important target-organ protection of these inhibitors offer potential benefits which may well go beyond existing treatment of hypertension and of conditions associated with overt volume overload.
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PMID:Practical implications of current natriuretic peptide research. 1196 16

Diastolic heart failure is defined clinically when signs and symptoms of heart failure are present in the presence of preserved left ventricular systolic function (ejection fraction >45%). The incidence and prevalence of primary diastolic heart failure increases with age and it may be as high as 50% in the elderly. Age, female gender, hypertension, coronary artery disease, diabetes, and increased body mass index are risk factors for diastolic heart failure. Hemodynamic consequences such as increased pulmonary venous pressure, post-capillary pulmonary hypertension, and secondary right heart failure as well as decreased cardiac output are similar to those of systolic left ventricular failure, although the nature of primary left ventricular dysfunction is different. Diagnosis of primary diastolic heart failure depends on the presence of preserved left ventricular ejection fraction. Assessment of diastolic dysfunction is preferable but not mandatory. It is to be noted that increased levels of B-type natriuretic peptide does not distinguish between diastolic and systolic heart failure. Echocardiographic studies are recommended to exclude hypertrophic cardiomyopathy, infiltrative heart disease, primary valvular heart disease, and constrictive pericarditis. Myocardial stress imaging is frequently required to exclude ischemic heart disease. The prognosis of diastolic heart failure is variable; it is related to age, severity of heart failure, and associated comorbid diseases such as coronary artery disease. The prognosis of severe diastolic heart failure is similar to that of systolic heart failure. However, cautious use of diuretics and/or nitrates may cause hypotension and low output state. Heart rate control is essential to improving ventricular filling. Pharmacologic agents such as angiotensin receptor blockers, angiotensin-converting enzyme inhibitors, and calcium channel blockers are used in selected patients to decrease left ventricular hypertrophy. To decrease myocardial fibrosis, aldosterone antagonists have a potential therapeutic role. However, prospective controlled studies will be required to establish their efficacy in primary diastolic heart failure.
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PMID:Primary diastolic heart failure. 1198 32

The aim of present study was to compare the predictive characteristics and cost-benefit of measuring the concentration of blood brain natriuretic peptide (BNP), compared with electrocardiography (ECG), chest radiography and echocardiography, as a diagnostic test for heart disease. The study group comprised 130 untreated patients who had symptoms suggestive of heart disease. According to the results of additional examinations and follow-up checks, 86 patients were diagnosed as having heart disease and 44 patients were judged free of heart disease. Positive findings in each test suggestive of heart disease were checked in accordance with criteria, and the number of positive and negative cases for each test was calculated. The predictive characteristics, such as specificity, sensitivity, accuracy, positive and negative predictive values, of each test and the cost-benefit value were calculated and analyzed statistically. The sensitivity, specificity and accuracy of blood BNP and echocardiography were significantly greater than those of ECG and chest radiography. Echocardiography had a significantly lower cost-benefit value compared with measuring blood BNP concentration. Thus, the blood BNP concentration had significantly higher predictive characteristics than ECG and chest radiography, and a cost-benefit value significantly greater than that of echocardiography.
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PMID:Clinical significance of blood brain natriuretic peptide level measurement in the detection of heart disease in untreated outpatients: comparison of electrocardiography, chest radiography and echocardiography. 1199 35

In order to study the relationships between sex hormones, aging, and circulating levels of cardiac natriuretic peptides and to define reference values for atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) assays, we measured the plasma levels of cardiac natriuretic peptides in a large group of healthy adults divided according to age and sex. We studied 216 healthy subjects of both sexes (109 men and 107 women) with age ranging from 20 to 77 years (mean 43.2+/-14.8 years). All subjects were non-obese and had normal arterial blood pressure; they were free from acute diseases, including asymptomatic heart disease. Highly sensitive and specific IRMA methods were used to measure plasma ANP and BNP. The mean ANP value in healthy adult subjects of both sexes was 17.8+/-10.9 pg/ml with no significant difference between men (16.7+/-10.0 pg/ml) and women (18.8+/-11.7 pg/ml). The mean BNP value in healthy adult subjects of both sexes was 9.9+/-9.0 pg/ml with a significant difference (p<0.0001) between men (7.7+/-7.1 pg/ml) and women (12.2+/-10.2 pg/ml). There was a weak linear relationship between age and either ANP (r=0.350, p<0.0001) or BNP (r=0.254, p=0.0002) values. When the circulating levels of cardiac natriuretic hormones, and age and sex were analyzed by multiple stepwise regression analysis, both age and sex significantly and independently contributed to the regression. Our study indicates independent positive effects of aging and female sex hormones on ANP and BNP levels in healthy adult subjects. These effects should be taken into account in the calculation of appropriate reference values for cardiac natriuretic hormones.
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PMID:The circulating levels of cardiac natriuretic hormones in healthy adults: effects of age and sex. 1205 78

A positive correlation has been previously documented between B-type natriuretic peptide (BNP) levels and left ventricular mass index (LVMI) in hypertensive patients. We evaluated 8 cycling athletes, 8 healthy age-matched controls; 17 hypertensive patients and 7 age-matched controls. LVMI was significantly higher in athletes and hypertensive patients than in their controls. Plasma levels of BNP in hypertensive patients were significantly higher than in athletes and their age-matched controls. No significant difference was found between athletes and their controls. Cycling athletes had significantly larger LVMI than hypertensive patients and controls, without elevated BNP levels. These results suggest that BNP levels are elevated in patients with increased LVM due to hypertension but not in physiologically increased LVM. Whether elevated BNP levels in athletes is a sign of structural heart disease merits further investigation.
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PMID:B-type natriuretic peptide is related to left ventricular mass in hypertensive patients but not in athletes. 1241 8

The brain natriuretic peptide (BNP) assay is a new, relatively inexpensive, and simple test that has the potential to be an early, cost-effective, and reliable marker for HIV-related cardiomyopathy. We report 1 case of HIV-related cardiomyopathy and 10 cases of of HIV infection with unknown heart disease in which we measured BNP levels and performed echocardiography. We found a significant inverse relationship between BNP and left ventricular function in these patients. Further basic and epidemiologic research on BNP measurement for the detection of HIV-related cardiomyopathy is needed to support these findings, which if confirmed, could have important clinical and public health implications.
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PMID:Brain natriuretic peptide and HIV-related cardiomyopathy. 1249 56

Plasma brain natriuretic peptide concentration ([BNP]) is high in humans with cardiac disease and is further increased with congestive heart failure (CHF). The hypotheses of this study were that dogs with moderate to severe mitral regurgitation due to myxomatous mitral valve disease (MVD) would have increased plasma [BNP] compared to normal dogs, that plasma [BNP] would be higher in dogs with CHP, and that plasma [BNP] would predict premature death from cardiovascular disease. The study population consisted of 34 dogs: 9 normal dogs and 25 dogs with MVD. Patients were divided into 4 groups: group 1-10 dogs with moderate to severe MVD and no radiographic evidence of CHF; group II--6 dogs with severe MVD and mild CHF; group III--7 dogs with severe MVD and moderate CHF; and group IV--2 dogs with severe MVD and severe CHF. Diagnostic tests included thoracic radiographs, an echocardiogram, a serum chemistry profile, and the measurement of plasma [BNP] by a canine-specific radioimmunoassay. There was a significant positive correlation between the plasma [BNP] and heart disease/failure groups (P = .0036). Plasma [BNP] increased with progressively increasing severity of MVD and CHE Group I dogs had higher plasma [BNP] than did control dogs (P < .0001), and plasma [BNP] was higher in dogs with CHF (groups II-IV versus group I; P = .012). Plasma [BNP] was also weakly positively correlated with left atrial size (r = 0.43, P = .04). For every 10-pg/mL increase in plasma [BNP], the mortality rate over 4 months' time increased approximately 44%.
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PMID:Brain natriuretic peptide concentration in dogs with heart disease and congestive heart failure. 1268 17

Brain natriuretic peptide (BNP) has been established as a new and reliable laboratory marker for chronic heart failure (CHF). BNP is a neurohormone secreted by the cardiac ventricles in response to volume expansion and pressure overload. It is released as N-terminal pro-brain natriuretic peptide and then Korrelaenzymatically cleaved into the NT fragment and the immunoreactive BNP. BNP promotes vasodilatation, natriuresis, diuresis, and inhibits the renin-angiotensin- aldosterone system. BNP values depend on sex, age, renal function, and the assay used. BNP exhibits a high sensitivity and specificity for the diagnosis of CHF. BNP determination improves the differential diagnosis of acute dyspnea. Normal BNP levels are found, if dyspnea is caused by pulmonary disease, pathologic BNP values are typical of a cardiac disorder. In CHF, BNP levels can be used as a reliable independent predictor of cardiac death or deterioration of cardiac functional status at follow-up. As a general screening test for CHF, BNP is of limited value due to a substantial number of false positive test results, which lead to further cardiac diagnostic testing. BNP is helpful for the assessment of the success of CHF therapy in acute cardiac decompensation and outpatients. An individually tailored CHF therapy with serial determination of BNP opens up new perspectives for a more objective and effective treatment of CHF patients.
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PMID:[Brain natriuretic Peptide. Diagnostic and prognostic value in chronic heart failure]. 1458 10


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