Key result
Crystalloid-induced myocardial edema increases LV stiffness and decreases LV volume in pigs.
Why the study?
Does crystalloid-induced myocardial edema alter left ventricular compliance and stiffness in rat and pig models?
Does crystalloid-induced myocardial edema alter left ventricular compliance and stiffness in rat and pig models?
p-value: p=<0.05
Myocardial edema increases LV stiffness and decreases LV volume in both species, but larger hearts (pigs) show more significant compliance changes than smaller hearts (rats) for a given degree of edema.
Edema may impair LV compliance during crystalloid cardioplegia; leaves open its contribution to human diastolic dysfunction after cardiac surgery.
BACKGROUND: This study compared the adverse effects of crystalloid-induced myocardial edema on left ventricular (LV) compliance in small and large hearts. METHODS: Plegisol (289 mOsm/L) was perfused into the coronary arteries of pigs (n = 8) and 1:1 dilute Plegisol (145 mOsm/L) into the coronary arteries of rats (n = 6). Pressure-volume relations, heart weight, and water content were then determined. The pressure-volume relations were compared using an LV volume at a pressure of 10 mm Hg. RESULTS: Edema in rats was associated with significant (p < 0.05) increases in heart weight (1.1 +/- 0.0 g versus 1.4 +/- 0.1 g [average +/- standard error of the mean]) and water content (76.8% +/- 0.4% versus 81.3% +/- 0.8%), but an increase in LV stiffness (7.91 +/- 0.52 versus 9.27 +/- 1.42) and a decrease in the LV volume at 10 mm Hg (0.25 +/- 0.02 mL versus 0.14 +/- 0.05 mL) were not statistically significant. Edema in pigs was associated with statistically significant (p < 0.05) increases in LV stiffness beta (0.050 +/- 0.004 versus 0.072 +/- 0.008), heart weight (207 +/- 8 g versus 274 +/- 9 g), and water content (79.8% +/- 0.6% versus 85.3% +/- 0.6%) and a significant decrease in the LV volume at 10 mm Hg (88.4 +/- 5.8 mL versus 60.4 +/- 6.8 mL). CONCLUSIONS: Myocardial edema is associated with an increase in water content and LV stiffness and a decrease in the LV volume at 10 mm Hg in both species. In rats, however, the water content is smaller in the control state and a more hypotonic perfusate is needed to induce a given degree of edema.
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Amirhamzeh et al. (1997) studied Myocardial edema (n=14). Crystalloid-induced myocardial edema (Plegisol) vs. Control state was evaluated on Left ventricular compliance (LV stiffness and LV volume at 10 mm Hg) (p=<0.05). Crystalloid-induced myocardial edema significantly increased LV stiffness and decreased LV volume at 10 mm Hg in pigs (p<0.05), with similar but non-significant trends in rats.
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