Ericsson H, Tholander B, Regårdh C G
Department of Pharmacokinetics and Drug Metabolism, Astra Hässle Research Laboratories, S-431 83 Mölndal, Sweden.
Eur J Pharm Sci. 1999 Apr;8(1):29-37. doi: 10.1016/s0928-0987(98)00058-x.
The objectives of this study were to investigate the protein binding and the in vitro hydrolysis rate of clevidipine and its enantiomers in the rat, dog and man in different biological matrices including blood and plasma from volunteers with deficient pseudocholinesterase activity. The in vitro half-life in blood was 0.6 min (rat), 15.7 min (dog) and 5.8 min in man with normal pseudocholinesterase activity, while the half-life was approximately 9 min in blood from pseudocholinesterase deficient volunteers. The half-life in pseudocholinesterase deficient volunteers was prolonged, although the hydrolysis rates in blood and red blood cells (RBC) were much higher than in plasma, suggesting that esterases located in the RBC are most important in the blood metabolism of clevidipine. A decrease in temperature increased the half-life of clevidipine in blood, whereas dilution of the blood did not affect the in vitro half-life of clevidipine. The albumin concentration affected the hydrolysis rate of clevidipine in RBC suspended with saline. The protein binding of clevidipine and its enantiomers was >99.5% in plasma from all species studied. There was a difference between the free fractions of S- and R-clevidipine in man, 0.43 and 0.32%, respectively, and this stereoselective binding might be the reason for the 10% difference between the in vitro hydrolysis rates of the enantiomers in human blood.
本研究的目的是在大鼠、犬和人体中,于不同生物基质(包括来自假性胆碱酯酶活性缺乏志愿者的血液和血浆)中,研究克利夫地平及其对映体的蛋白结合情况和体外水解速率。在具有正常假性胆碱酯酶活性的人体中,其在血液中的体外半衰期为5.8分钟,在大鼠中为0.6分钟,在犬中为15.7分钟,而在假性胆碱酯酶缺乏志愿者的血液中,半衰期约为9分钟。尽管血液和红细胞(RBC)中的水解速率远高于血浆,但假性胆碱酯酶缺乏志愿者体内的半衰期延长,这表明红细胞中的酯酶在克利夫地平的血液代谢中最为重要。温度降低会增加克利夫地平在血液中的半衰期,而血液稀释并不影响其体外半衰期。白蛋白浓度会影响用盐水悬浮的红细胞中克利夫地平的水解速率。在所有研究物种的血浆中,克利夫地平及其对映体的蛋白结合率均>99.5%。人体中S-和R-克利夫地平的游离分数存在差异,分别为0.43%和0.32%,这种立体选择性结合可能是对映体在人体血液中体外水解速率相差10%的原因。