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Biomedical subjects

A F van den Heuvel

Publications and source records attributed to A F van den Heuvel.

9 recordsLinked to original sources

Reduction of exercise-induced myocardial ischemia during add-on treatment with the angiotensin-converting enzyme inhibitor enalapril in patients with normal left ventricular function and optimal beta blockade.

OBJECTIVES: We sought to study the effect of angiotensin-converting enzyme inhibition on exercise-induced myocardial ischemia. BACKGROUND: Although angiotensin-converting enzyme inhibitors have been shown to reduce ischemic events after myocardial infarction, few data are available regarding their direct anti-ischemic effects in patients with coronary artery disease. METHODS: We studied 43 patients (average age 63 +/- 8 years) with exercise-induced myocardial ischemia (> or =0.1 mV ST depression, despite optimal beta blockade) and normal left ventricular function (ejection fraction >0.50). In a double-blind, placebo-controlled parallel design, patients were treated with angiotensin-converting enzyme inhibitor (enalapril 10 mg twice daily) or placebo. Assessments were made after three weeks (short-term) and 12 weeks (long-term). RESULTS: At baseline, the groups were well matched for all clinical characteristics. After three weeks, there was a slight but not significant increase in time to 0.1 mV ST depression in both groups (p = NS); rate pressure product (RPP = heart rate x systolic blood pressure) was also unaffected. After 12 weeks, however, time to 0.1 mV ST depression further increased in the enalapril group (5.6 +/- 1.9 min) but was unchanged in the placebo group (4.4 +/- 1.3 min; p < 0.05 between groups). In contrast, RPP was not affected. Concentrations of both atrial and brain natriuretic peptides at peak exercise tended to be lower by enalapril, if compared to placebo (p = NS). CONCLUSIONS: Angiotensin-converting enzyme inhibition may reduce exercise-induced myocardial ischemia in patients with normal left ventricular function. Further studies are needed to elucidate the mechanisms involved.

Adolescent↗

Impairment of myocardial blood flow reserve in patients with asymptomatic left ventricular dysfunction: effects of ACE-inhibition with perindopril.

Myocardial blood flow (MBF) reserve is impaired in patients with symptomatic chronic heart failure. Whether this is already present in asymptomatic left ventricular (LV) dysfunction, and whether it is affected by angiotensin converting enzyme (ACE) inhibition, is unknown. We examined MBF in 20 patients with asymptomatic LV dysfunction and compared them to healthy volunteers. MBF (reserve) was assessed with positron emission tomography (PET) and N-13 ammonia at rest, during dipyridamole stress test (DST) and during cold pressor test (CPT). Further, in the LV-dysfunction group, we studied the effects of 3 months treatment with ACE inhibition with a second PET study. Patients were randomized double-blind to perindopril 4 mg daily or placebo. MBF at rest was similar in controls and patients. DST-induced MBF reserve, however, was decreased in patients vs. controls (1.71+/-0.2 vs. 2.62+/-0.5, respectively p < 0.05). Also CPT-induced MBF was lower in patients (1.14+/-0.06 vs. 1.23+/-0.03, p < 0.05). After 3 months double-blind treatment, CPT-induced MBF decreased in the placebo group (from 1.12+/-0.02 to 0.93+/-0.06), but was preserved in the perindopril group (from 1.16+/-0.08 to 1.14+/-0.08 shifts from baseline: -0.19+/-0.05 vs. -0.02+/-0.07 respectively p = 0.07). This was compatible with a trend to a smaller increase in coronary vascular resistance during CPT (1.23+/-0.08 vs. 1.03+/-0.06, placebo vs. perindopril, p = 0.06). In patients with asymptomatic LV dysfunction, MBF, both after vasodilation and after CPT, is already impaired. ACE inhibition with perindopril during this short-term treatment had no significant effects.

Adult↗

Regional myocardial blood flow reserve impairment and metabolic changes suggesting myocardial ischemia in patients with idiopathic dilated cardiomyopathy.

OBJECTIVES: We performed positron emission tomography (PET) to evaluate myocardial ischemia in patients with idiopathic dilated cardiomyopathy (IDC). BACKGROUND: Patients with IDC have anatomically normal coronary arteries, and it has been assumed that myocardial ischemia does not occur. METHODS: We studied 22 patients with IDC and 22 control subjects using PET with nitrogen-13 ammonia to measure myocardial blood flow (MBF) at rest and during dipyridamole-induced hyperemia. To investigate glucose metabolism, fluorine-18 deoxyglucose (18FDG) was used. For imaging of oxygen consumption, carbon-11 acetate clearance rate constants (k(mono)) were assessed at rest and during submaximal dobutamine infusion (20 microg/kg body weight per min). RESULTS: Global MBF reserve (dipyridamole-induced) was impaired in patients with IDC versus control subjects (1.7 +/- 0.21 vs. 2.7 +/- 0.10, p < 0.05). In patients with IDC, MBF reserve correlated with left ventricular (LV) systolic wall stress (r = -0.61, p = 0.01). Furthermore, in 16 of 22 patients with IDC (derived by dipyridamole perfusion) mismatch (decreased flow/increased 18FDG uptake) was observed in 17 +/- 8% of the myocardium. The extent of mismatch correlated with LV systolic wall stress (r = 0.64, p = 0.02). The MBF reserve was lower in the mismatch regions than in the normal regions (1.58 +/- 0.13 vs. 1.90 +/- 0.18, p < 0.05). During dobutamine infusion k(mono) was higher in the mismatch regions than in the normal regions (0.104 +/- 0.017 vs. 0.087 +/- 0.016 min(-1), p < 0.05). In the mismatch regions 18FDG uptake correlated negatively with rest k(mono) (r = -0.65, p < 0.05), suggesting a switch from aerobic to anaerobic metabolism. CONCLUSIONS: Patients with IDC have a decreased MBF reserve. In addition, low MBF reserve was paralleled by high LV systolic wall stress. These global observations were associated with substantial myocardial mismatch areas showing the lowest MBF reserves. In geographically identical regions an abnormal oxygen consumption pattern was seen together with a switch from aerobic to anaerobic metabolism. These data support the notion that regional myocardial ischemia plays a role in IDC.

Adult↗

Differential anti-ischaemic effects of muscarinic receptor blockade in patients with obstructive coronary artery disease; impaired vs normal left ventricular function.

AIMS: In patients with coronary artery disease acetylcholine (a muscarinic agonist) causes vasoconstriction. The effect of atropine (a muscarinic antagonist) on coronary vasotone in patients with normal or impaired left ventricular function is unknown. METHODS AND RESULTS: Twenty-four patients who required atropine infusion (to supplement heart rate response) during atrial pacing (pacing was conducted to assess ischaemia as part of an experimental protocol) were studied; 17 patients had normal and seven impaired left ventricular function (ejection fraction < or =0.40). Two control groups were selected from a large database (from patients in whom atrial pacing was carried out but to whom atropine was not administered) to match the normal (n=20) and dysfunction (n=10) groups. In the normal left ventricular function group atropine increased rate pressure product by 12 +/- 4%, as compared to those without atropine (P < 0.05). Left ventricular end diastolic pressure increased less in the atropine group (+40 +/- 8% vs +78 +/- 6%;P < 0.05). Arterial norepinephrine increased similarly in both groups, but coronary flow (as assessed by using a thermodiluting method in the coronary sinus) increased 23 +/ -4% more in the atropine group (P < 0.05). Further, there were lower levels of myocardial lactate production and ST-segment depression in the atropine group [lactate extraction +13 +/- 6% (atropine) vs -19 +/- 4% (controls), ST-segment depression 1. 3 +/- 0.6 (atropine) vs 1.8 +/- 0.2 mm (control), both P < 0.05 between groups]. In contrast, in the dysfunction group the overall effect of atropine was less pronounced. CONCLUSION: In patients with normal left ventricular function atropine improves coronary flow and reduces myocardial lactate production and ST-segment depression during atrial pacing, suggesting a reduction in myocardial ischaemia.

Atropine↗

Neurohumoral response to carmoxirole, a selective dopamine (D2) receptor agonist, in patients with chronic moderate heart failure.

Neurohormonal activation and elevated ventricular filling pressures are prominent features in heart failure. Carmoxirole is a DA2 receptor agonist with limited central activity that modulates sympathetic activation and subsequently reduces pre-load and afterload in animals. The effect of carmoxirole on neurohormones and hemodynamics in humans was evaluated in 12 normotensive patients with NYHA class III-IV heart failure on stable ACE 1 and diuretic therapy. Carmoxirole (0.25-1.00 mg) was administered on 2 consecutive days, and hemodynamic and neurohormonal measurements were carried out. Values given are maximal percent changes from prestudy baseline (significance level P < 0.05). The lower dose on day 1 (0.25-0.50 mg) reduced circulating norepinephrine, vasopressin, and ANP by 40%, 19%, and 25%, respectively. In addition, on day 2, at a dose level of 0.75-1.00 mg, plasma renin activity decreased by 30%. Mean arterial pressure and systemic vascular resistance were reduced by 10% and 18%, and pulmonary wedge and right atrial pressure by 38% and 39%, respectively. Cardiac index improved by 20%. Despite a concomitant 12% reduction in heart rate, both stroke volume and stroke work index increased by 32% and 31%, respectively. Mean pulmonary artery pressure decreased by 21%, whereas pulmonary resistance was not affected. Thus, carmoxirole modulates sympathetic activation, accompanied by changes in vasopressin and ANP, and the renin-angiotensin system at higher dosages. These effects lead to a reduction in systemic resistance and heart rate, and an improvement in cardiac pump function and left and right ventricular filling pressures. It is concluded that carmoxirole induces beneficial effects on hemodynamic and neurohumoral parameters in heart failure.

Aged↗

Ischemia and left ventricular dysfunction: a reciprocal relation?

There is convincing evidence that (prolonged) episodes of myocardial ischemia lead to impairment of left ventricular (LV) function and ultimately to chronic congestive heart failure (CHF), but whether the opposite is also true has not been well established. We studied this issue in two groups of CHF patients with positron emission tomography (PET) by using [13N]ammonia (13NH3) as a tracer. In the first protocol we compared 12 patients with idiopathic dilated cardiomyopathy (who have normal coronary arteries) with 12 healthy controls. In the second protocol we studied a group of 24 patients with documented coronary artery disease (CAD). In this protocol, we compared patients with normal LV function to those with LV dysfunction and CHF. In patients with cardiomyopathy, myocardial blood flow at rest was normal but flow reserve (after dipyridamole infusion) was significantly impaired (1.7 +/- 0.08) compared with normal subjects (2.7 +/- 0.04; p <0.05). Furthermore, by examining [18F]fluorodeoxyglucose (18FDG) uptake, a perfusion-metabolism mismatch was observed in 24 +/- 6% of the myocardium in patients with cardiomyopathy as opposed to 0% of normals (p <0.05). In patients with CAD, myocardial blood flow reserve (measured in non-stenotic arteries to non-infarcted area) was impaired in CHF patients (1.7 +/- 0.06) compared to those with normal LV function (2.3 +/- 0.05; p <0.05). In both groups of CHF patients, the impairment of blood flow reserve showed a significant correlation with the severity of CHF. In conclusion, myocardial blood flow reserve is impaired in patients with CHF in proportion to the degree of CHF. Metabolic studies with 18FDG further show that, in patients with idiopathic dilated cardiomyopathy and CHF, flow-metabolism mismatch is present in a substantial part of the myocardium, suggesting a pathogenetic role for ischemia.

Adult↗

Long-term anti-ischemic effects of angiotensin-converting enzyme inhibition in patients after myocardial infarction. The Captopril and Thrombolysis Study (CATS) Investigators.

OBJECTIVES: This study was conducted to test the hypothesis that angiotensin-converting enzyme (ACE) inhibition reduces myocardial ischemia and related events after myocardial infarction (MI). BACKGROUND: The oxygen demand/supply ratio of the myocardium is influenced by angiotensin II as a result of its arterial vasoconstrictive and inotropic effects and through its interaction with the sympathetic nervous system. METHODS: We studied 244 patients who had been included in a double-blind, randomized, placebo-controlled, post-MI, ACE inhibition intervention study (Captopril and Thrombolysis Study [CATS]). All patients underwent exercise testing before and 3 and 12 months after hospital discharge. After 1-year double-blind treatment, all patients continued receiving single-blind placebo for 1 month. RESULTS: Total exercise time increased in both groups after 3 months (placebo: +86 +/- 13 s; captopril: +69 +/- 12 s, p = 0.8 between groups) and increased further after 1 year (placebo: +13 +/- 11 s; captopril: +33 +/- 13 s, p = 0.7 between groups). There were also no differences in mean ST segment depression. During the 12 months, significantly fewer ischemia-related events occurred in the captopril group (82 vs. 52, p = 0.015). This difference was found between 3 and 12 months but not during the first 3 months. After withdrawal from double-blind medication, nine ischemic events were reported in teh captopril group compared with one in the placebo group (p = 0.006 between groups). CONCLUSIONS: The present data show that captopril may reduce the incidence of ischemia-related events after MI, which becomes apparent after 3 months. However, no anti-ischemic effect was observed during exercise testing. After withdrawal from ACE inhibition, a high incidence of clinical events occurred, suggesting a rebound phenomenon.

Angiotensin-Converting Enzyme Inhibitors↗

Nifedipine gastrointestinal therapeutic system versus atenolol in stable angina pectoris. The Netherlands Working Group on Cardiovascular Research (WCN).

The gastrointestinal therapeutic system formulation of nifedipine enables a once-daily dosing resulting in predictable, relatively constant plasma concentrations. To evaluate the efficacy and safety of this formulation and to compare this with the beta-blocker atenolol, we conducted a double-blind, randomised, multi-centre study in 129 male patients with documented exercise induced angina pectoris. After 4 weeks' treatment, nifedipine (60 mg), improved time to onset of 0.1 mV ST-segment depression from 536 s by 72 +/- 117s, time to onset of pain from 619 s by 56 +/- 120 s, and total exercise time from 685 s by 40 +/- 88 s. Atenolol 100 mg, had a comparable effect, time to onset of 0.1 mV ST-segment depression improved from 496 s by 53 +/- 129 s, time to onset of pain from 572 s by 57 +/- 118 s, and total exercise time from 653 s by 33 +/- 99 s. Between group analysis revealed no statistically significant differences for these exercise parameters. Atenolol, but not nifedipine, significantly reduced heart rate and systolic blood pressure at rest and during exercise (P < 0.001 between groups), indicating different modes of action of the drugs. With regard to safety, both drugs were generally well tolerated. There were significantly (P = 0.01) more vasodilation related side effects with nifedipine. These data demonstrate that gastrointestinal therapeutic system formulation of nifedipine and atenolol as once-daily monotherapy are equally effective and safe, but with different effects on exercise parameters.

Administration, Oral↗

Comparison between felodipine and isosorbide mononitrate as adjunct to beta blockade in patients > 65 years of age with angina pectoris.

Coronary artery disease is an increasingly common medical problem in the elderly, and relatively few studies investigating drug therapy focus on this population. To assess the efficacy and safety of the calcium channel blocker, felodipine, and isosorbide mononitrate (ISMN), as adjunct to optimal beta-blocker therapy in elderly patients, a placebo-controlled, double-blind study was conducted in 46 patients, aged between 65 and 80 years, with documented stress-induced angina pectoris and myocardial ischemia. With use of a latin-square design, with 3 periods of 4 weeks each, exercise testing was performed after each period. Felodipine, 5 mg once daily, significantly improved both time to ischemic threshold and pain threshold (p = 0.02 and p = 0.003, respectively, vs placebo), and tended to increase total exercise time (p = 0.06 vs placebo). In contrast, ISMN, 20 mg twice daily, did not significantly affect these parameters. Comparison of the 2 active treatment arms showed that, overall, felodipine was more effective than ISMN, with a statistically significant difference for time to ischemic threshold (p = 0.02). With regard to safety, felodipine was also better tolerated than ISMN, which led to more patients discontinuing study medication with ISMN (p < 0.05 between ISMN and felodipine). It is concluded that in elderly patients who are treated with optimal beta blockade, felodipine, but not ISMN, leads to an additional significant reduction in ischemic parameters during exercise.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists↗