Key result
Acute metabolic acidosis potentiated the acetylcholine-induced decrease in arterial blood pressure compared to control (-28.0 vs -4.5 mmHg) and increased plasma NOx.
Why the study?
Does acute or chronic metabolic acidosis affect hemodynamic parameters and endothelial function in vivo?
Does acute or chronic metabolic acidosis affect hemodynamic parameters and endothelial function in vivo?
Absolute Event Rate: -28% vs -4.5%
Acute, but not chronic, metabolic acidosis potentiates acetylcholine-induced vasodilation and increases nitric oxide production, highlighting the differential effects of pH imbalance duration on vascular tone.
Acute acidosis effects on vascular tone in rats are hypothesis-generating; leaves open translation to human endothelial function or hemodynamics.
Metabolic acidosis has profound effects on vascular tone. This study investigated the in vivo effects of acute metabolic acidosis (AMA) and chronic metabolic acidosis (CMA) on hemodynamic parameters and endothelial function. CMA was induced by ad libitum intake of 1% NH4Cl for 7 days, and AMA was induced by a 3-h infusion of 6 M NH4Cl (1 mL/kg, diluted 1:10). Phenylephrine (Phe) and acetylcholine (Ach) dose-response curves were performed by venous infusion with simultaneous venous and arterial blood pressure monitoring. Plasma nitrite/nitrate (NOx) was measured by chemiluminescence. The CMA group had a blood pH of 7.15±0.03, which was associated with reduced bicarbonate (13.8±0.98 mmol/L) and no change in the partial pressure of arterial carbon dioxide (PaCO2). The AMA group had a pH of 7.20±0.01, which was associated with decreases in bicarbonate (10.8±0.54 mmol/L) and PaCO2 (47.8±2.54 to 23.2±0.74 mmHg) and accompanied by hyperventilation. Phe or ACh infusion did not affect arterial or venous blood pressure in the CMA group. However, the ACh infusion decreased the arterial blood pressure (ΔBP: -28.0±2.35 mm Hg [AMA] to -4.5±2.89 mmHg [control]) in the AMA group. Plasma NOx was normal after CMA but increased after AMA (25.3±0.88 to 31.3±0.54 μM). These results indicate that AMA, but not CMA, potentiated the Ach-induced decrease in blood pressure and led to an increase in plasma NOx, reinforcing the effect of pH imbalance on vascular tone and blood pressure control.
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Celotto et al. (2016) studied Metabolic acidosis. Acute metabolic acidosis (AMA) vs. Control and Chronic metabolic acidosis (CMA) was evaluated on Acetylcholine-induced change in arterial blood pressure. Acute metabolic acidosis potentiated the acetylcholine-induced decrease in arterial blood pressure compared to control (-28.0 vs -4.5 mmHg) and increased plasma NOx.
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