Key result
Increasing serum triglycerides strongly increases blood viscosity and MVR while decreasing hyperemic MBF.
Why the study?
The mechanism underlying abnormal coronary blood flow reserve during hyperlipidemia was unclear, specifically whether it is due to increased blood viscosity or abnormal coronary vasomotion.
Does hyperlipidemia-induced increased blood viscosity attenuate hyperemic coronary blood flow in animal models?
Does hyperlipidemia-induced increased blood viscosity attenuate hyperemic coronary blood flow in animal models?
Effect estimate: r=0.82 for viscosity; r=0.84 for MVR; r=-0.64 for MBF
Abnormal coronary blood flow reserve during hyperlipidemia is driven by increased blood viscosity rather than abnormal vascular function.
Elevated triglycerides may impair hyperemic myocardial blood flow; leaves open whether triglyceride lowering improves coronary perfusion.
BACKGROUND: During maximal hyperemia, capillaries provide the greatest resistance to flow. A major determinant of capillary resistance is viscosity. We, therefore, hypothesized that abnormal coronary blood flow (CBF) reserve observed during hyperlipidemia is secondary to increased blood viscosity and not abnormal coronary vasomotion. METHODS AND RESULTS: Maximal hyperemia was induced in 9 dogs using adenosine. Serum triglyceride levels were increased by incremental doses of Intralipid. A good correlation was noted between serum triglyceride levels and blood viscosity (r=0.82). Neither total coronary blood volume nor myocardial blood volume changed with increasing serum triglyceride levels, indicating lack of vasomotion. Myocardial vascular resistance (MVR) increased with increasing triglyceride levels (r=0.84), while hyperemic myocardial blood flow (MBF) decreased (r=-0.64). The decrease in hyperemic MBF was associated with a decrease in blood velocity (r=-0.56). These findings were confirmed with direct intravital microscopic observations in the mice cremaster muscle. CONCLUSIONS: Increasing lipid levels in a fully dilated normal coronary bed causes no change in large or small vessel dimensions. Instead, the increase in blood viscosity causes capillary resistance to rise, which attenuates hyperemic CBF. Therefore, the abnormal CBF reserve associated with hyperlipidemia is due to increase blood viscosity and not abnormal vascular function.
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Rim et al. (2001) studied Hyperlipidemia (n=9). Incremental doses of Intralipid vs. Baseline was evaluated on Correlation between serum triglyceride levels and blood viscosity, myocardial vascular resistance, and hyperemic myocardial blood flow (r=0.82 for viscosity; r=0.84 for MVR; r=-0.64 for MBF). Increasing serum triglyceride levels increased blood viscosity (r=0.82) and myocardial vascular resistance (r=0.84), and decreased hyperemic myocardial blood flow (r=-0.64).
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