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Biomedical subjects

D L Brutsaert

Publications and source records attributed to D L Brutsaert.

At least 19 recordsLinked to original sources

Inadequate response to treatment in coronary heart disease : adverse effects of type D personality and younger age on 5-year prognosis and quality of life.

BACKGROUND: Improvement in treatment of patients with coronary heart disease (CHD) has caused longer survival but also an increase in the number of patients at risk for subsequent cardiac events and impaired quality of life (QOL). We hypothesized that chronic emotional distress confers an increased risk of poor outcome despite appropriate treatment. METHODS AND RESULTS: This prospective study examined the 5-year prognosis of 319 patients with CHD. Baseline assessment included symptoms of depression/anxiety and distressed personality type (type D-ie, high negative affectivity and social inhibition). The main end points were cardiac death or nonfatal myocardial infarction and impaired QOL. There were 22 cardiac events (16 nonfatal); they were related to left ventricular ejection fraction (LVEF) </=50%, poor exercise tolerance, age </=55 years, symptoms of depression, and type D personality. Multivariate analysis yielded LVEF </=50% (OR, 3.9; P=0.009), type D personality (OR, 8.9; P=0.0001), and age </=55 years (OR, 2.6; P=0.05) as independent predictors of cardiac events. Convergence of these risk factors predicted the absence of the expected therapeutic response that was observed in 10% of the patients. When 2 or 3 risk factors occurred together, the rate of poor outcome was 4-fold higher (P=0. 0001). Estimates of medical costs increased progressively with an increasing number of risk factors. Smoking, symptoms of depression, and type D personality were independent predictors of impaired QOL. CONCLUSIONS: Decreased LVEF, type D personality, and younger age increase the risk of cardiac events; convergence of these factors predicts nonresponse to treatment. Emotionally stressed and younger patients with CHD represent high-risk groups deserving of special study.

Adult↗

Improvement of endocardial and vascular endothelial function on myocardial performance by captopril treatment in postinfarct rat hearts.

Background-Endocardial (EE) and myocardial capillary vascular endothelial (myocap VE) cells have been shown to modulate the contractile characteristics of myocardium in a calcium-dependent manner. We evaluated the endothelial-myocardial interaction in the rat postinfarction myocardial infarction (MI) model and the effects of captopril. Methods and Results-Wistar rats were divided into 4 groups treated for 4 weeks: (1) control; (2) infarcted controls (left anterior coronary artery ligation); (3) infarcted+captopril 2 g/L in drinking water; and (4) infarct+captopril+triton intracoronary injection. Coronary VE function was evaluated by infusion of serotonin in Langendorff preparations (n=31), and the myocardial contractile characteristics were investigated by use of isolated papillary muscles (n=44). Cardiac mRNA for endothelial constitutive nitric oxide synthase (ecNOS) was measured, and its cellular location was evaluated by immunohistochemistry. Serotonin-induced increase in coronary flow was decreased in infarct controls compared with controls (4.6% versus 53.4%, P<0.01) but not in the 2 infarct+captopril groups. Intracoronary triton injection decreased serotonin-induced coronary flow in the infarct+captopril+triton group. All MI groups had decreased total tension in isolated papillary muscles. EE removal by triton immersion decreased total tension in all groups except for infarct controls (3.3 versus 3.2 g/mm(2)). Cardiac ecNOS mRNA decreased in the control infarct group but remained normal in the infarct+captopril group. Conclusions-Chronic postinfarction endothelium-induced coronary vasodilatation is impaired, and both EE and myocap VE dysfunction contribute to myocardial depression. Captopril use prevents these abnormalities and the reduction of cardiac ecNOS mRNA.

Angiotensin-Converting Enzyme Inhibitors↗

Nonuniformity of endothelial constitutive nitric oxide synthase distribution in cardiac endothelium.

Endocardial endothelium and endothelium of coronary vessels produce NO. Histochemical methods have suggested that coronary arterial endothelial cells contain more endothelial constitutive NO synthase (ecNOS) than does coronary venous endothelium. We have further investigated the distribution of ecNOS in cardiac endothelium using immunofluorescence and en face confocal microscopy of rat heart. In endocardial endothelium, confocal microscopy revealed distinct ecNOS labeling of peripheral cell borders, cytoplasmic labeling, and labeling of the Golgi complexes. Labeling of the cell borders and of the Golgi complexes was confirmed by double staining for ecNOS and for platelet and endothelial cell adhesion molecule or Golgi 58k protein, respectively. Cytoplasmic labeling was strongest in coronary arterial endothelium. The size of the ecNOS-labeled Golgi complexes decreased from coronary arterial endothelial cells (8.63 +/- 0.39 microm2, mean +/- SE of 5 rats) to endocardial endothelium (7.07 +/- 0.61 microm2) and to coronary venous endothelium (3.65 +/- 0.20 microm2). In addition, pixel intensity of ecNOS labeling was higher in arterial endothelial cells than in venous endothelial cells. Endothelium of myocardial capillaries also contained small ecNOS-labeled Golgi complexes. No correlation was observed between endothelial cell surface area and Golgi complex size. Caveolin-1 labeling was strongest in capillaries and did not coincide completely with ecNOS labeling in endocardial and venous endothelium. These results suggest that endocardial and coronary arterial endothelium in the rat have a higher synthetic activity and might express more ecNOS than is expressed by cardiac venous and capillary endothelium. The observed heterogeneity in ecNOS distribution might be related to the specific mechanochemical environment and function of each endothelial compartment.

Animals↗

Personality, disease severity, and the risk of long-term cardiac events in patients with a decreased ejection fraction after myocardial infarction.

BACKGROUND: Patients with myocardial infarction (MI) with a decreased left ventricular ejection fraction (LVEF) have a poor prognosis, but the role of emotional stress in prognosis is not known. We hypothesized that emotional stress in these patients (1) is unrelated to the severity of cardiac disorder, (2) predicts cardiac events, and (3) is a function of basic personality traits. METHODS AND RESULTS: Eighty-seven patients with MI (age, 41 to 69 years) with an LVEF of < or =50% underwent psychological assessment at baseline. Patients and their families were contacted after 6 to 10 years (mean, 7.9 years); cardiac events were defined as cardiac death or nonfatal MI. Emotional distress was unrelated to the severity of cardiac disorder. At follow-up, 21 patients had experienced a cardiac event (13 fatal events). These events were related to LVEF of < or =30%, poor exercise tolerance, previous MI, anxiety, anger, and depression (all P< or =.02). Patients with a distressed personality (type D; ie, the tendency to suppress negative emotions) were more likely to experience an event over time compared with non-type D patients (P=.00005). Cox proportional hazards analysis yielded LVEF of < or =30% (relative risk, 3.0; 95% confidence interval, 1.2 to 7.7; P=.02) and type D (relative risk, 4.7; 95% confidence interval, 1.9 to 11.8; P=.001) as independent predictors. Anxiety, anger, and depression did not add to the predictive power of type D; these negative emotions were highly correlated and reflected the personality domain of negative affectivity. CONCLUSIONS: Personality influences the clinical course of patients with a decreased LVEF. Emotional distress in these patients is unrelated to disease severity but reflects individual differences in personality. Clinical trials should take a broad view of the target of intervention; assessment of LVEF and personality may identify patients at risk.

Adult↗

Reappraisal of the multicellular preparation for the in vitro physiopharmacological evaluation of myocardial performance.

In order to evaluate myocardial performance, single cardiomyocytes suffer from technical problems and from the fact that some basic functional properties vanish when one moves down the hierarchic scale from multicellularity to single cells. The isolated papillary muscle has at present proven to be superior to the isolated intact cardiomyocyte. A large number of major intra- and extracellular features required to describe myocardial performance can be derived from analyzing twitch contraction and relaxation in the multicellular isolated papillary muscle. In addition, the present paper illustrates the possibility to differentiate between effects of inotropic interventions on activating Ca2+ and Ca2+ sensitivity in multicellular preparations, from a grid analysis of isometric twitches in a coordinate system of peak rate of force development (+dF/dt; reflecting the time pattern of twitch contraction) versus time to half relaxation (tHR; reflecting the time pattern of twitch relaxation). The abundance of information about myocardial performance that can be derived from the easily accessible multicellular preparation reflects its physiological kinship with the intact ventricle.

Animals↗

Cardiac endothelium and myocardial function.

Endocardial endothelium and vascular endothelium of myocardial capillaries share common features as modulators of cardiac performance, rhythmicity and growth. Growing evidence suggests differences between these two cardiac endothelial cell types with regard to developmental, morphological and functional properties. A major difference probably resides in the way and extent by which these endothelial cells perceive and transmit signals.

Animals↗

Pathogenesis of heart failure. Changing conceptual paradigms.

Experimental observations, made over the past two decades, have led to a profound shift in the conceptual paradigms about the syndrome of heart failure. As a consequence, heart failure is nowadays considered as a complex disease, not merely characterized by haemodynamic disturbances. Instead, it is now believed that the syndrome is governed and impelled by neurohumoral imbalances and by intracardiac paracrine processes. The latter processes are mediated by activated cardiac endothelial cells and by cytokines, creating a state of cardiac maladaption and leading to disease progression. The clinical benefit of several therapeutic interventions that could not be satisfactorily clarified by improvements in the haemodynamic status, may, therefore, be explained by an unexpected impact on cytokines and endothelial dysfunction. Further extension of these insights will form the basis for the future treatment of heart failure.

Animals↗

Myocardial contractile response to nitric oxide and cGMP.

BACKGROUND: Cardiac endothelium releases a number of factors that may modulate performance of underlying cardiac muscle. Nitric oxide (NO), which accounts for the biological activity of the vascular endothelium-derived relaxing factor and relaxes vascular smooth muscle by elevating intracellular cGMP, may be involved in this cardiac modulation. METHODS AND RESULTS: We examined the myocardial contractile effects of the NO-releasing nitrovasodilators sodium nitroprusside (SNP), 3-morpholino-sydnonimine (SIN-1), and S-nitroso-N-acetyl-penicillamine (SNAP); of a cGMP analogue, 8-bromo-cGMP; and of the cGMP-phosphodiesterase inhibitor zaprinast in isolated cat papillary muscle. Modulation of these effects by endocardial endothelium (EE) and by cholinergic and adrenergic stimulation was also investigated. Concentration-response curves with addition of NO-releasing nitrovasodilators (SNP, SIN-1, SNAP) and 8-bromo-cGMP resulted in a biphasic inotropic response. Although administration of low concentrations induced a positive inotropic effect, higher concentrations induced a negative inotropic effect. Both NO-induced positive and negative inotropic effects were attenuated by methylene blue, suggesting a role for cGMP. The response to high concentrations of 8-bromo-cGMP was shifted to the right in muscles with damaged EE, whereas cholinergic stimulation shifted the curve leftward. Zaprinast caused a monophasic concentration-dependent positive inotropic effect; damaging the EE shifted the terminal portion of the curve upward. Concomitant cholinergic or adrenergic stimulation modified the response to zaprinast into a negative inotropic response. CONCLUSIONS: NO and cGMP induced a concentration-dependent biphasic contractile response. The myocardial contractile effects of NO and cGMP were modulated by the status of EE and by concomitant cholinergic or adrenergic stimulation.

Animals↗

Personality as independent predictor of long-term mortality in patients with coronary heart disease.

BACKGROUND: Emotional distress has been related to mortality in patients with coronary heart disease (CHD), but little is known about the role of personality in long-term prognosis. We postulated that type-D personality (the tendency to suppress emotional distress) was a predictor of long-term mortality in CHD, independently of established biomedical risk factors. METHODS: We studied 268 men and 35 women with angiographically documented CHD, aged 31-79 years, who were taking part in an outpatient rehabilitation programme. All patients completed personality questionnaire at entry to the programme. We contacted them 6-10 years later (mean 7-9) to find out survival status. The main endpoint was death from all causes. FINDINGS: At follow-up, 38 patients had died; there were 24 cardiac deaths. The rate of death was higher for type-D patients than for those without type-D (23 [27%]/85 vs 15 [7%]/218; p < 0.00001). The association between type-D personality and mortality was still evident more than 5 years after the coronary event and was found in both men and women. Mortality was also associated with impaired left ventricular function, three-vessel disease, low exercise tolerance, and the lack of thrombolytic therapy after myocardial infarction. When we controlled for these biomedical predictors in multiple logistic regression analysis, the impact of type-D remained significant (odds ratio 4.1 [95% CI 1.9-8.8]; p = 0.0004). In this group of CHD patients, type-D was an independent predictor of both cardiac and non-cardiac mortality. Social alienation and depression were also related to mortality, but did not add to the predictive power of type-D. INTERPRETATION: We found that type-D personality was a significant predictor of long-term mortality in patients with established CHD, independently of biomedical risk factors. Personality traits should be taken into account in the association between emotional distress and mortality in CHD.

Adult↗

Endocardial endothelial dysfunction and heart failure.

Like vascular endothelium, the EE plays a role in transendothelial transport, in coagulant and thrombotic processes, and in interactions with inflammatory cells. In addition, EE is involved in the modulation of cardiac performance of subjacent myocardium. EE dysfunction includes insufficient as well as excessive performance of any of its multiple functions. Dysfunction can progress from a disturbed modulation of myocardial performance and an imbalance in the release of growth factors to changes in EE cytoskeletal organization, with concomitant changes in transendothelial permeability, and in extreme cases, to loss of endothelial integrity and frank denudation. Structural and functional impairment of EE and of endocardial interstitial cells may be primary or secondary to the disease. Mechanical stress, various hormones and cytokines can initiate EE dysfunction. EE dysfunction may influence the development of cardiac failure in endo(myo)cardial fibrosis (Loeffler's endocarditis and carcinoid syndrome) and in dilated cardiomyopathy. Although Bouillaud, in 1836, was referring to endocarditis when stating: (quote: see text) his statement may presently find a much broader field of applicability in cardiology.

Animals↗

Role of the endocardial endothelium in the negative inotropic effects of thiopental.

BACKGROUND: Myocardial function is regulated by endocardial endothelium (EE). Several studies have demonstrated the involvement of vascular endothelium in regulating the vasoactive effects of anesthetic agents. Because vascular endothelium and EE form a contiguous layer, it was postulated that EE might also be involved in regulating the inotropic effects of anesthetics. The effects of thiopental on isolated feline papillary muscle with and without EE were examined. METHODS: The study was performed on isolated cat papillary muscles (n = 48). The effects of increasing doses of thiopental (1.5, 3, 6, 9, 12, and 24 micrograms/ml) on isometric and isotonic muscle contraction parameters were evaluated in three protocols under different experimental conditions. In the first protocol, the effects of thiopental were studied in the muscles with an intact EE (group A, n = 8) and muscles in which the EE was selectively damaged by a 1-s immersion in 0.5% Triton X-100 (group B, n = 8). In the second protocol, cumulative concentration responses for thiopental were obtained in muscles with (group C, n = 8) and without (group D, n = 8) EE, pretreated with 10(-3) M of the blocking NG-nitro-L-arginine methyl ester (L-NAME). In the third protocol, the same cumulative concentration responses were obtained for thiopental in muscles with (group E, n = 8) and without (group F, n = 8) EE after pretreatment with 5 x 10(-4) M L-arginine. RESULTS: In the presence of an intact EE, thiopental induced a dose-dependent decrease in myocardial function. With the EE removed, low doses of thiopental (1.5 to 6 micrograms/ml) no longer altered myocardial function. Pretreatment of the muscles with L-NAME inhibited the negative inotropic effects of low doses of thiopental and mimicked the response obtained after EE was removed. Pretreatment with L-arginine slightly accentuated the negative inotropic effects of low doses of thiopental. CONCLUSIONS: The negative inotropic actions of small doses of thiopental depend on the presence of an intact EE. Pretreatment of the muscles with L-NAME inhibited the negative inotropic effects of low doses of thiopental, suggesting possible involvement of the nitric oxide pathway.

Anesthetics, Intravenous↗

Mechanisms of endocardial endothelium modulation of myocardial performance.

The endocardial endothelium (EE) modulates the performance of the subjacent myocardium and plays an important role in regulation of cardiac function. This modulation has been confirmed in a number of different species and in both in vitro and in vivo conditions. The mechanisms of EE modulation of myocardial performance are still under investigation and the possibilities include the role of EE as a transendothelial physico-chemical barrier and/or the release of various chemical messengers by the EE.

Animals↗