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Caffeine renal clearance and urine caffeine concentrations during steady state dosing. Implications for monitoring caffeine intake during sports events.

机译:稳态给药期间的咖啡因肾清除率和尿中咖啡因浓度。在体育赛事中监测咖啡因摄入量的意义。

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摘要

1. Relationships between the plasma and urine concentrations and clearances of caffeine over successive dosage intervals at steady-state were investigated in six healthy volunteers administered caffeine, 150 mg 8 hourly for 6 days. 2. There was marked inter-individual variability in the urine (15.9-fold range) and steady-state plasma (8.1-fold range) concentrations of caffeine. 3. Urine caffeine concentrations were similar to those in plasma, with mean ratios (plasma:urine) ranging from 1.10 to 1.74. There was a good correlation (r = 0.93, P less than 0.01) between caffeine urine and plasma concentrations. 4. There was a good correlation between caffeine renal clearance and urine flow rate (r = 0.89, P less than 0.01). Caffeine renal clearance was not significantly different from the product of fu and urine flow rate, where fu is the fraction of caffeine unbound in plasma. Urine caffeine concentration and urine flow rate were not correlated (r = 0.14, P greater than 0.05). 5. The results indicate that caffeine is reabsorbed from the renal tubule to equilibrium with unbound caffeine in plasma. 6. A regulatory urine caffeine concentration limit of 12 mg 1(-1) may be exceeded by some individuals with coffee intake in the range 3 to 6 cups per day.
机译:1.在六名健康志愿者中,每6小时一次服用咖啡因150 mg,每小时8次,在稳态下,在连续剂量间隔内,血浆,尿液浓度和咖啡因清除率之间的关系进行了研究。 2.尿中咖啡因的浓度(15.9倍范围)和稳态血浆(8.1倍范围)之间存在明显的个体差异。 3.尿液中咖啡因的浓度与血浆中的相似,平均比率(血浆:尿液)在1.10至1.74之间。咖啡因尿液与血浆浓度之间存在良好的相关性(r = 0.93,P小于0.01)。 4.咖啡因肾清除率与尿流率之间具有良好的相关性(r = 0.89,P小于0.01)。咖啡因的肾清除率与fu和尿流率的乘积没有显着差异,其中fu是血浆中未结合的咖啡因的分数。尿咖啡因浓度与尿流率无相关性(r = 0.14,P大于0.05)。 5.结果表明,咖啡因从肾小管中重新吸收,与血浆中未结合的咖啡因平衡。 6.每天摄入咖啡量在3到6杯之间的某些人可能会超过12 mg 1(-1)的尿中咖啡因的法定限量。

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