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Biomedical subjects

David M Kaye

Publications and source records attributed to David M Kaye.

45 records · Page 3Linked to original sources

The effect of successful heart transplant treatment of heart failure on central sleep apnea.

STUDY OBJECTIVE: Central sleep apnea (CSA) associated with Cheyne-Stokes respiration in patients with congestive heart failure (CHF) is thought to be an acquired pattern of respiratory control instability related, at least in part, to elevated sympathetic nervous system activity. The effect of restoring heart function to normal with heart transplantation in patients with CHF and CSA has only been reported within weeks of the transplant and with varying results. The purpose of the study was to evaluate the impact of successful heart transplant on sympathetic nervous system activity and CSA severity in patients with CHF. DESIGN: Controlled prospective trial. SETTING: University hospital. PATIENTS: Twenty-two patients with CHF (13 patients with CSA, and 9 patients with no sleep-disordered breathing [SDB]). INTERVENTIONS AND MEASUREMENTS: Polysomnography, left ventricular ejection fraction (LVEF), and overnight urinary norepinephrine excretion (UNE) were measured before and > 6 months after successful heart transplantation. RESULTS: In the CSA group, there was a fall in apnea-hypopnea index (AHI) [mean +/- SD, 28 +/- 15 to 7 +/- 6/h; p < 0.001] and UNE (48.1 +/- 30.9 to 6.1 +/- 4.8 nmol/mmol creatinine, p < 0.001) associated with normalization of LVEF (19.2 +/- 9.3% to 53.7 +/- 6.1%, p < 0.001) at 13.2 +/- 8.3 months following heart transplantation. Of the CSA group following transplantation, seven patients had no SDB (AHI < 5/h), three patients had persistent CSA (AHI, 12.3 +/- 0.9/h) and four patients acquired obstructive sleep apnea (OSA) [AHI, 11.2 +/- 7.4/h]. In comparison, none of the control group acquired CSA or OSA after transplantation. CONCLUSIONS: We conclude that CSA may persist despite normalization of heart function and sympathetic nerve activity.

Adult↗

Review of the current management of atrial fibrillation.

Atrial fibrillation (AF) is the most common sustained arrhythmia. Its prevalence is increasing and accordingly, so is its burden on healthcare systems throughout the world. The pathophysiology of AF is complex and poorly understood, which of itself presents a major challenge to the management of this important condition. AF is associated with increased morbidity and mortality, particularly in patients with underlying left ventricular dysfunction. Once AF occurs, it is often difficult to 'cure' and as such, the major focus of therapy is currently divided essentially between a rate control strategy and a need to revert to and maintain sinus rhythm. Both approaches seek to minimise the associated symptoms and complications. Over the past two decades, numerous pharmacological approaches to the management of AF have been employed, many of which have been shown to be relatively ineffective or confounded by major complications. Accordingly, recent research and interest has focused on non-pharmacological electrophysiological therapies to either cure AF or improve symptoms. This review summarises the current approaches to the management AF and provides some new insights into emerging therapies for this common clinical problem.

Anti-Arrhythmia Agents↗

Reduced myocardial and systemic L-arginine uptake in heart failure.

Altered nitric oxide (NO) bioavailability has been ascribed an important role in the pathophysiology of congestive heart failure (CHF). In the peripheral vasculature, we recently demonstrated a depression of L-arginine transport in association with pharmacological evidence of reduced endothelial function. In contrast, increased myocardial NO generation has been proposed to account for a component of the reduced myocardial contractility in CHF, although this remains controversial. We determined the whole body clearance rate and cardiac fractional extraction of L-arginine during a steady-state intravenous infusion of [3H]L-arginine (300 nCi/min) in 9 healthy control subjects and 7 patients with moderate to severe CHF. In patients with CHF, there was a 30% reduction in the transcardiac extraction of [3H]L-arginine compared with controls (P<0.05), which was accompanied by a trend toward reduced [3H]L-citrulline release (P=0.06). In conjunction, the systemic clearance rate of [3H]L-arginine was significantly lower in patients with CHF (778+/-148 versus 1278+/-144 mL/min, P<0.05). In association with these biochemical indices, we observed a 38% reduction (P<0.05) in the mRNA expression of the cationic amino acid transporter CAT-1 in ventricular myocardial samples from patients with CHF compared with healthy unused donor myocardium, whereas myocardial NOS enzymatic activity and NOS protein were unchanged. These data indicate the presence of a significant reduction in the myocardial uptake of L-arginine in patients with CHF. Furthermore, this abnormality seems to be part of a systemic downregulation of L-arginine transport.

Arginine↗

Norepinephrine turnover is increased in suprabulbar subcortical brain regions and is related to whole-body sympathetic activity in human heart failure.

BACKGROUND: Although it is established that heightened sympathetic drive exists in congestive heart failure (CHF), the reflex processes by which this may occur and the sites in the central nervous system that may be responsible for mediating this process are not yet fully elucidated. METHODS AND RESULTS: Eight patients with moderate to severe CHF and 8 healthy control subjects underwent simultaneous arterial and bilateral internal jugular venous blood sampling and cerebral venous blood pool scanning for anatomical determination of the origin of internal jugular venous blood flow. We estimated sympathetic nervous activity by measuring total body norepinephrine (NE) spillover using radiotracer methodology and determined brain NE turnover by measuring the internal jugular overflow of NE and its lipophilic metabolites, 3-methoxy-4-hydroxyphenylglycol and 3,4-dihydroxyphenylglycol. Suprabulbar subcortical turnover of NE was significantly greater in CHF patients than in the healthy group (2.77 +/- 0.75 versus 0.66 +/- 0.40 nmol/min, P<0.05). There was a significant positive correlation between suprabulbar subcortical turnover of NE and total body NE spillover (r=0.62, P=0.01). CONCLUSIONS: This study, for the first time, demonstrates elevated suprabulbar subcortical noradrenergic activity in human CHF and identifies a positive correlation between this and the level of whole-body NE spillover. The findings suggest that the activation of noradrenergic neurons projecting rostrally from the brain stem mediates sympathetic nervous stimulation in CHF.

Blood Flow Velocity↗

An ovine model of tachycardia-induced degenerative dilated cardiomyopathy and heart failure with prolonged onset.

BACKGROUND: The aim of this study was to develop a model of long-term progressive heart failure (HF). METHODS AND RESULTS: A cardiac output flowprobe was implanted on the pulmonary artery of 9 adult sheep weighing 40 to 50 kg. Rapid ventricular pacing for 21 days at 160 to 190 bpm (rate A) resulted in moderate HF. Animals were then paced at 205 to 215 bpm (rate B) for 42 days (severe HF) and for 28 days at rate B (advanced HF). Data were collected at baseline and moderate, severe, and advanced HF during submaximal exercise testing and by transthoracic echocardiography in sinus rhythm. There were marked increases in left ventricular (LV) area, mitral valve regurgitation, and LV end-diastolic pressure and decreases in LV wall thickness, LV ejection fraction, positive and negative dP/dt(max), and positive (dP/dt(max))/P throughout the pacing protocol. CONCLUSIONS: This ovine HF model incorporates the progressive nature of human HF and allows examination of both structural changes and hemodynamic parameters of HF during and after exercise challenge.

Animals↗

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↗

Clinical treatment regimens for chronic heart failure: a review.

Chronic heart failure (CHF) is increasing in prevalence worldwide, particularly in the elderly. Accordingly, this epidemic is likely to translate into a major increase in healthcare costs. Systolic heart failure is the most common cause of CHF presentations. Although the causes vary, the most common single aetiological factor is ischaemic heart disease, which accounts for approximately 50% of heart failure presentations. Research into CHF pharmacotherapy has been copious, with the focus principally centred on systolic heart failure. The evidence base for pharmacotherapy in CHF is amongst the largest currently in clinical medicine. There have been multiple trials establishing the mortality and morbidity benefits of pharmacotherapy. Amongst these, large scale trials of angiotensin-converting enzyme inhibitors, beta-blockers and spironolactone have provided a sound basis for evidence-based treatment approaches to the CHF patient. Recently research interest has increased in biomedical engineering with studies being performed in biventricular pacing and mechanical hearts. Early data with biventricular pacing or cardiac resynchronisation therapy is encouraging. Diastolic heart failure alone accounts for at least 20 - 40% of CHF presentations and whilst it may occur in isolation, is most commonly seen in association with systolic heart failure. In this study, we present a broad overview of the current therapeutic modalities for the management of CHF, with particular emphasis on pharmacotherapy.

Adrenergic beta-Antagonists↗

Exercise training increases arterial compliance in patients with congestive heart failure.

Systemic arterial compliance (SAC) makes an important contribution to cardiac afterload, and thus is a significant determinant of left ventricular work. Previous studies have suggested that arterial compliance may be reduced in patients with congestive heart failure (CHF), and that SAC is increased after a 4-week exercise training programme in healthy, sedentary individuals. The present study aimed to investigate the effects of an 8-week exercise training programme on arterial mechanical properties, left ventricular performance and quality of life in CHF patients. A total of 21 patients with NYHA class II or III CHF (mean+/-S.D. age 55+/-13 years) were randomly allocated to either an 8-week exercise training group or a "usual lifestyle" control group. SAC, as determined non-invasively using applanation tonometry and Doppler aortic velocimetry, increased from 0.57+/-0.11 to 0.77+/-0.14 arbitrary compliance units (mean+/-S.E.M.; P=0.01) in the exercise group, while no change occurred in the control group. Left ventricular structure and function was assessed by echocardiography, and these parameters were unchanged over the 8-week study period. Exercise training significantly increased exercise capacity, measured by a 6-min walking test (474+/-27 to 547+/-34 m; P=0.008). Quality of life, as assessed using the Minnesota Living with Heart Failure Evaluation, demonstrated a decrease in heart failure symptoms from 46+/-7 to 24+/-5 units (P=0.01) following the exercise training programme. These data show that exercise training improves SAC in patients with CHF. The accompanying improvement in exercise capacity may be due, in part, to an improvement in arterial function.

Adolescent↗