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Biomedical subjects

A Cioppa

Publications and source records attributed to A Cioppa.

6 recordsLinked to original sources

Angina-induced protection against myocardial infarction in adult and elderly patients: a loss of preconditioning mechanism in the aging heart?

OBJECTIVES: The present study examined whether angina 48 h before myocardial infarction provides protection in adult and elderly patients. BACKGROUND: The mortality rate for coronary artery disease is greater in elderly than in young patients. In experimental studies, ischemic preconditioning affords an endogenous form of protection against ischemia-reperfusion injury in adult but not in senescent hearts. Angina before myocardial infarction, a clinical equivalent of experimental ischemic preconditioning, has a protective effect in adult patients. It is not known whether angina before myocardial infarction is also protective in aged patients. METHODS: We retrospectively verified whether antecedent angina within 48 h of myocardial infarction exerts a beneficial effect on in-hospital outcomes in adult (< 65 years old, n = 293) and elderly (> or = 65 years old, n = 210) patients. RESULTS: In-hospital death was more frequent in adult patients without than in those with previous angina (10% vs. 2.6%, p < 0.01), as were congestive heart failure or shock (10.7% vs. 3.3%, p < 0.02) and the combined end points (in-hospital death and congestive heart failure or shock) (20.7% vs. 5.9%, p < 0.0003). In contrast, the presence or absence of previous angina before acute myocardial infarction in elderly patients seems not to influence the incidence of in-hospital death (14.4% vs. 15.2%, p = 0.97), congestive heart failure or shock (11.0% vs. 11.9%, p = 0.99) and the combined end points (25.4% vs. 27.1%, p = 0.89). Logistic regression analysis models for in-hospital end points show that previous angina is a positive predictor in adult but not in elderly patients. CONCLUSIONS: The presence of angina before acute myocardial infarction seems to confer protection against in-hospital outcomes in adults; this effect seemed to be less obvious in elderly patients. This study suggests that the protection afforded by angina in adult patients may involve the occurrence of ischemic preconditioning, which seems to be lost in senescent patients.

Adult

Preconditioning does not prevent postischemic dysfunction in aging heart.

OBJECTIVES: This study was performed to investigate the effect of single or multiple brief periods of ischemia and the administration of exogenous norepinephrine before a more prolonged ischemic period and after reperfusion in adult and senescent isolated and perfused rat hearts. BACKGROUND: The mortality rate for coronary artery disease is greater in the elderly. Ischemic preconditioning has been proposed as an endogenous form of protection against ischemia-reperfusion injury. However, the role of preconditioning in aging heart is unknown. METHODS: We compared the protective effect of preconditioning transient ischemic and norepinephrine stimuli against 20 min of global normothermic ischemia and 40 min of reperfusion in isolated perfused hearts of adult (6 months old) and senescent (24 months old) rats. Norepinephrine release in coronary effluent was determined by high performance liquid chromatography. RESULTS: Final recovery of percent developed pressure was improved after single preconditioning transient ischemic and norepinephrine stimuli in adult hearts (87.7 +/- 9% and 82.3 +/- 8.7%) versus unconditioned control hearts (50.6 +/- 4.8%, p < 0.01 [mean +/-SD]). The effect of preconditioning on developed pressure recovery was not present in senescent hearts after transient ischemic stimulus (39.8 +/- 4.9% vs. 41.6 +/- 5.8%, p = NS) but was present after norepinephrine stimulus (74.3 +/- 10.5, p < 0.01). Norepinephrine release significantly increased after preconditioning transient ischemic stimulus in adult but not in senescent hearts (p < 0.01 vs. adult). Transient ischemic- and norepinephrine-induced preconditioning was blocked by alpha-adrenergic receptor antagonists in both adult and senescent hearts. Multiple transient ischemic stimuli were able to reduce postischemic dysfunction in adult but not in senescent hearts. CONCLUSIONS: Preconditioning transient ischemic stimulus significantly reduces postischemic dysfunction in adult but not in senescent hearts, whereas exogenous norepinephrine is able to mimic preconditioning in both adult and senescent hearts. Ischemic preconditioning induces an increase in norepinephrine release in adult but not in senescent hearts. Preconditioning induced by transient ischemic stimulus and norepinephrine was abolished by alpha-adrenergic receptor blockade in both adult and senescent hearts. Thus, our data demonstrate that preconditioning is absent in aging heart and is probably related to the reduction of norepinephrine release and alpha-adrenergic receptor stimulation in response to ischemic preconditioning.

Aging

The role of aging on the control of contractile force by Na(+)-Ca2+ exchange in rat papillary muscle.

BACKGROUND: Sarcolemmal Na(+)-Ca2+ exchange system is believed to be fundamental to the control of cardiac contractility. However, the relation between Na(+)-Ca2+ exchange and the control of contractile force has not been studied in senescent myocardium. METHODS: The role of Na(+)-Ca2+ exchange in the regulation of the cardiac muscle's contractile force was studied in adult and senescent papillary muscles by simultaneously measuring intracellular sodium activity (aNai), action potential, and contractile force while varying extracellular concentration of sodium and/or calcium. RESULTS: Reduction of [Na+]o decreased aNai from 8.0 +/- 1.8 to 4.1 +/- 0.8 in adult (-3.9 mM) and from 8.7 +/- 1.9 to 4.7 +/- 0.9 in senescent (-4.0 mM) papillary muscles, while developed tension (DT) increased by 80.2% in adult and by 135.6% in senescent papillary muscles (p < .01 vs adult). During low [Ca2+]o and high [Na+]o, aNai and DT modifications were similar both in adult and senescent papillary muscles. During high [Ca2+]o, aNai decreased to a similar extent in both adult and senescent papillary muscles, while DT increased by 37.8% in adult and by 67.8% in senescent (p < .05 vs adult). Simultaneous reduction of [Na+]o and [Ca2+]o decreased aNai from 8.1 +/- 1.2 to 6.8 +/- 1.1 mM in adult (-1.3 mM), and from 8.4 +/- 1.0 to 7.2 +/- 1.0 mM in senescent (-1.2 mM) papillary muscles while DT decreased by 22.1% in adult and by only 12.0% in senescent (p < .01 vs adult) papillary muscles. Simultaneous increase of [Na+]o and [Ca2+]o similarly increased aNai in both adult senescent papillary muscles, but decreased DT by 28.5% in adult and by 11.7% in senescent (p < .01 vs adult). After [Na+]o modifications, the equilibration time for the ratio of external and internal sodium ion activities was slowed in senescent papillary muscles (i.e., in low [Na+]o solution the equilibration time was 4.6 +/- 0.9 min in adult and 6.3 +/- 1.2 min in senescent papillary muscles, p < .001). CONCLUSIONS: Similar changes of aNai during transmembrane Na+ and Ca2+ gradients modifications associated to changes in contractile force seem to demonstrate that Na(+)-Ca2+ exchange is probably not modified by the aging process. However, the slow equilibration time for the ratio of Na+ activities might reflect an age-related reduction of the Na(+)-K+ pump activity.

Action Potentials

Reduced aerobic metabolic efficiency in postischemic myocardium dysfunction in rats: role of aging.

It has been suggested that aging may enhance the deleterious effects of myocardial ischemia-reperfusion. This study evaluates the relationship between oxygen consumption and functional impairment during reperfusion following myocardial ischemia in adult and senescent rat hearts. Global ischemia induced a marked impairment of contractile function which was significantly higher in senescent than in adult hearts. During reperfusion postischemic dysfunction was more evident in senescent hearts: at the 10th minute, the developed pressure recovered less (p < 0.05) and end-diastolic pressure increased more (p < 0.05) in senescent than in adult hearts. However, oxygen consumption per unit of work was significantly higher throughout 60 min of reperfusion when compared to controls with no significant difference between adult and senescent hearts. This study demonstrates that following ischemia and reperfusion depression of function and inappropriately high oxygen consumption were observed in both adult and senescent hearts. However, aging was associated with greater contractile impairment, which occurred in the absence of further deterioration of metabolic efficiency of contraction.

Adenosine Triphosphate

Safety of echo-dipyridamole test in elderly patients with coronary artery disease.

The authors prospectively studied the feasibility and safety of high-dose dipyridamole echocardiography in 166 patients (77 younger and 89 elderly patients) referred for clinical evaluation of coronary artery disease. Echocardiographic examinations were adequate for analysis of parameters considered in 135 of the 166 patients (81.3%; 73 elderly, 62 younger patients). The feasibility of dipyridamole echocardiography test was 80.5% in young and 82% in elderly patients (P = ns). The incidence of side effects during dipyridamole echocardiography was similar in the two groups, except for dyspnea, which was observed in 20.5% of older and 3.2% of younger patients (p < 0.05). These data demonstrate that the dipyridamole test combined with echocardiographic monitoring of regional myocardial contractility may be considered a valid noninvasive method of evaluating coronary artery disease in the elderly.

Adult

Role of aging on electrical, mechanical, and coronary modification induced by ouabain and epinine in isolated rat heart.

OBJECTIVE: The contractile response to digitalis and beta adrenoceptor agonists is lower in the senescent than in the adult myocardium, while the development of ventricular arrhythmias is increased. The aim of this study was to examine the effects of aging on cardiac response to digitalis and an adrenergic agonist used clinically. METHODS: The electrical and mechanical responses were tested in isolated and perfused hearts from 3-24 month old rats receiving 15 min infusion of digitalis drug (ouabain, 6 x 10(-5) M) alone, and after 5 min of beta adrenoceptor agonist drug (epinine, 1.5 x 10(-7) M). RESULTS: Ouabain action was associated with a rise in left ventricular end diastolic pressure (p < 0.01) which increased progressively with aging, and with an elevation of left ventricular developed pressure (p < 0.01) which decreased progressively with aging. Epinine induced a reduction of left ventricular end diastolic pressure (p < 0.01) and a rise in left ventricular developed pressure (p < 0.01) but both effects decreased progressively with aging. Ouabain reduced coronary flow and this decrease was more pronounced with aging (p < 0.01), while epinine caused an increase (p < 0.01) that diminished in older hearts. Ouabain given after epinine resulted in a greater increase in left ventricular end diastolic pressure than epinine (p < 0.01) but lower than that caused by ouabain alone (p < 0.01), a greater increase in left ventricular developed pressure than epinine and ouabain (p < 0.01), and a smaller reduction of coronary flow rate than ouabain alone (p < 0.01). All these effects, however, diminished progressively with aging. Arrhythmia scores were higher during ouabain than in control (p < 0.01) and in epinine treated hearts (p < 0.01); pretreatment with epinine did not modify arrhythmia score during ouabain administration. The number and severity of arrhythmias, however, increased with aging in all groups. CONCLUSIONS: Aging has a negative effect on both the positive inotropic and the arrhythmogenic effects of ouabain and epinine, although these phenomena are more pronounced during ouabain administration. However, when the two drugs are given simultaneously, epinine does not modify the arrhythmogenic effect of ouabain but reduces some of its deleterious haemodynamic effects.

Aging