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Melina Sabán

Publications and source records attributed to Melina Sabán.

2 recordsLinked to original sources

Hypercholesterolemia attenuates postischemic ventricular dysfunction in the isolated rabbit heart.

The effects of the chronic administration of cholesterol on the stunned myocardium have not been studied. The objective was to determine the effect of a cholesterol enriched diet on postischemic ventricular dysfunction. In group 1 (G1, n = 7) isolated rabbit hearts underwent a follow up of ventricular function during 30 min in aerobic conditions. In group 2 (G2, n = 6) G1 was repeated but the animals were subjected to a 1% cholesterol enriched diet during 4 weeks (hypercholesterolemic animals). In group 3 (G3, n = 8) hearts underwent 15 min of global ischemia followed by 30 min of reperfusion. In Group 4 (G4, n = 11) G3 was repeated, but in hypercholesterolemic animals. Since cholesterol decreased the inotropism in basal situation, and this makes the comparison between groups difficult, we performed a Group 5 (G5, n = 7), in which G4 protocol was repeated but isoproterenol (8 microg/kg/min) was administered 10 min before ischemia, in order to match the preischemic inotropic state with respect to the normocholesterolemic ones. G1 and G2 maintained a stable inotropism during the 30 min of perfusion. The preischemic left ventricular developed pressure (LVDP) in G3 and G4 was 91.4 +/- 4.3 and 70.8 +/- 3.4 mmHg (p < 0.05), respectively, and after 30 min of reperfusion differences were not observed between G3 and G4. Nevertheless, when LVDP is expressed as a percentage, we detected an attenuation of postischemic systolic alterations in hypercholesterolemic animals (67.3 +/- 3.6 in G4 vs. 90.8 +/- 3.1% in G3, p < 0.05). When LVDP in G5 was increased until matching the one of G3, there were no differences after 30 min of reperfusion. Left ventricular end diastolic pressure increased 285 +/- 46%, 61 +/- 25% (p < 0.05 vs. G3 and G5) and 216 +/- 25% in G3, G4 and G5 at 30 min of reperfusion. There were no differences either in the values of tau or infarct size between groups. Thus, in hypercholesterolemic animals, a decrease of the preischemic inotropism exists and there is an attenuation of the stunned myocardium. When contractility of the normo and hypercholesterolemic animals is matched, the beneficial effect disappears.

Animals↗

[Effects of isometric exercise on the diastolic function in patients with severe aortic stenosis].

The objective of the study was to determine the effects of isometric exercise on the diastolic function in patients with aortic stenosis without coronary lesion (group 1, G1, n = 9) and with coronary lesion (group 2, G2, n = 11). Patients subjected to a cardiac catheterization performed isometric exercise until their heart rate increased in 32 +/- 9% compared to baseline. The left ventricular systolic pressure, the +dP/dtmax, and the end diastolic pressure (LVEDP) were measured, and the time constant of pressure decay (tau, tau) was calculated. The +dP/dtmax increased in G1 and G2 during exercise, from a value of 1989 +/- 190 and 2428 +/- 220 mmHg/sec up to 2286 +/- 214 y 2661 +/- 230 mmHg/sec, respectively, returning afterwards to its baseline value. The LVEDP increased during exercise in G1 and G2 from a value of 30.1 +/- 2.7 and 26.5 +/- 2.2 mmHg up to 38.4 +/- 1.7 and 36.1 +/- 4.0 mmHg, respectively (p < 0.05), returning to its baseline value only in G1. The tau (tau) increased during exercise in G1 and G2 from a value of 42.8 +/- 6.8 and 44.8 +/- 4.2 m/sec up to 55.3 +/- 9.2 and 60.4 +/- 5.9 msec respectively (p < 0.05), and remained elevated after exercise in both groups although it was statistically significant only in G2. The isometric exercise decreases the relaxation rate and increases the LVEDP in patients with aortic stenosis and left ventricular hypertrophy. After exercise, relaxation remained altered in the group of patients with coronary lesion. Alteration in the lusitropism and the increase of LVEDP after exercise suggest the presence of myocardial stunning.

Aortic Valve Stenosis↗