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M Rovetto

Publications and source records attributed to M Rovetto.

4 recordsLinked to original sources

Palmitate uptake by cardiac myocytes and endothelial cells.

The mechanisms regulating the cellular uptake of long-chain fatty acids are poorly understood. Although there is evidence that hepatocytes facilitate the uptake of ligands from the protein-bound fraction, it is not known whether cardiac myocytes also facilitate the uptake process. The present studies were designed to address the role of albumin in the uptake of long-chain fatty acids by cardiac myocytes isolated from adult male rats. At low albumin concentrations (1 microM), the myocyte palmitate clearance rate did not exceed that predicted by the diffusion-reaction model. At high albumin concentrations (300 and 600 microM), the clearance ratio test was used to determine whether myocytes facilitate the uptake of palmitate. As with the low albumin concentrations, the diffusion-reaction model accounted for the overall clearance rates. Because endothelial cells might be involved in enhancing fatty acid transport into myocytes, we also determined the effects of endothelial cells on palmitate uptake by cardiac myocytes. Based on cell number, the palmitate clearance rate by endothelial cells in the presence of albumin was only 7% of the cardiac myocyte clearance rate. Combining the endothelial cells with the myocytes did not result in any synergistic effect on the palmitate clearance rate.

Animals↗

Glucocorticoid protection of the myocardial cell membrane and the reduction of edema in experimental acute myocardial ischemia.

A possible protective effect of glucocorticoids on the ischemic myocardium was investigated in in situ dog hearts subjected to regional ischemia and in isolated rat hearts subjected to global ischemia. In the whole-animal preparation, the left anterior descending coronary artery (LAD) was occluded for 3 hours, or for 2 1/2 hours followed by 30 minutes of reperfusion. Dexamethasone phosphate was randomly administered (20 mg. per kilogram intravenously) after 15 minutes of ischemia. Its effects were studied on the following: (1) myocardial cell membrane integrity, using electron microscopic examination of tissue biopsies treated with colloidal lanthanum; (2) myocardial water content, measuring the wet/dry weight of myocardial tissue; (3) ischemic injury, by a count of fuchsinophilic cells at light microscopy. In isolated rat hearts, ischemia was produced by a 60 per cent reduction of coronary flow. Randomized hearts were perfused for 2 hours with dexamethasone, 15 mg. per milliliter in buffered salt solution. Study included determination of tissue water content and coronary vascular resistance. Lanthanum was confined to the extracellular spaces in normal dog myocardium, but it was found all intracellularly after 3 hours of ischemia or after reperfusion. This was associated with morphologic changes characteristic of irreversible cell injury. In the hearts treated with dexamethasone, lanthanum remained excluded from the cells, water content was less (p less than 0.005), and fuchsinophilia less severe (p less than 0.005). Likewise, water content was less (p less than 0.005) and the increase in coronary vascular resistance resulting from ischemia less severe (p less than 0.005) in the dexamethasone-treated isolated rat hearts. Thus dexamethasone administered in pharmacologic doses, early, appeared to stabilize the cell membrane, limit myocardial edema, and reduce the severity of injury, both during ischemia and upon reperfusion.

Acute Disease↗