Key result
Cardiopulmonary bypass in male patients sharply increased urinary excretion of renal injury markers and 11k-TXB2, with beta NAG correlating with serum creatinine (r=0.36, p<0.05).
Why the study?
Does cardiopulmonary bypass during coronary bypass surgery affect urinary excretion of thromboxane and markers for renal injury?
Observational (n=36)
Does cardiopulmonary bypass during coronary bypass surgery affect urinary excretion of thromboxane and markers for renal injury?
Effect estimate: r = 0.36
p-value: p=< 0.05
Acute renal injury observed during cardiopulmonary bypass does not appear to be related to exaggerated thromboxane biosynthesis, but monitoring urinary markers like beta NAG may help detect subclinical renal injury.
May support beta NAG monitoring for subclinical renal injury post-CPB in males; leaves open thromboxane's causal role.
Urinary excretion of selected markers for renal injury, as well as urinary excretion rates of the thromboxane metabolite, 11-keto-thromboxane B2 (11k-TXB2), was studied in 36 male patients undergoing coronary bypass surgery using cardiopulmonary bypass (CPB). In all patients, excretion of both tubular (N-acetyl-beta-D-glucosaminidase [beta NAG]; alpha 1-microglobulin [alpha 1-MG]) and glomerular markers (albumin [Alb]; transferrin [Trf]; immunoglobulin G [IgG]) sharply increased on Day 1 after CPB, and they remained elevated throughout the observation period of 5 days. Urinary excretion rates of 11k-TXB2 markedly increased on Day 1 after surgery, and they rapidly decreased thereafter. In 12 of the 36 patients, a temporary increase of serum creatinine levels (> 1.30 mg/dl) was noted following surgery. A positive correlation was found between serum creatinine levels and excretion of the tubular enzyme beta NAG (r = 0.36; p < 0.05), but not between creatinine levels and alpha 1-MG or the glomerular markers. Furthermore, no correlation between urinary excretion of 11k-TXB2 and any of the urinary markers for renal injury could be detected. Our data do not strengthen the hypothesis that acute renal injury observed during CPB is related to exaggerated thromboxane biosynthesis in these patients. Monitoring of urinary markers for incipient renal damage, particularly excretion of beta NAG, might be of additional diagnostic value for detection of otherwise subclinical renal injury in patients undergoing CPB.
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Jörres et al. (1994) conducted an observational in Coronary bypass surgery (n=36). Cardiopulmonary bypass (CPB) was evaluated on Urinary excretion of markers for renal injury and 11-keto-thromboxane B2 (r = 0.36, p=< 0.05). Cardiopulmonary bypass in male patients sharply increased urinary excretion of renal injury markers and 11k-TXB2, with beta NAG correlating with serum creatinine (r=0.36, p<0.05).
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