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大鼠体内对羟基苯基苯妥英对映体对苯妥英代谢的立体选择性抑制作用。

Stereoselective inhibition of diphenylhydantoin metabolism by p-hydroxyphenyl-phenylhydantoin enantiomers in rats.

作者信息

Huang J D, Hsieh C Y

机构信息

Department of Pharmacology, National Cheng Kung University, Medical College, Taiwan, Republic of China.

出版信息

Chirality. 1991;3(6):454-9. doi: 10.1002/chir.530030608.

DOI:10.1002/chir.530030608
PMID:1812955
Abstract

Different doses of rac-p-HPPH (0.4 and 4 mg/h) were given repeatedly to rats infused with [14C]phenytoin. The serum levels of 14C-labeled and unlabeled p-HPPH, and [14C]phenytoin were measured by an HPLC method and radiometric analysis. The clearance of phenytoin and p-HPPH was determined by rate of dosing divided by the steady-state concentration. The phenytoin clearance was significantly lower in the high dose p-HPPH injection group than in the low dose group (87 versus 262 ml/h), whereas p-HPPH clearance showed no difference. The formation clearance of [14C]p-HPPH was also significantly lower in rats injected with high dose of p-HPPH (35 versus 169 ml/h). The clearance of other elimination pathways was also lower in rats with high dose of p-HPPH (53 versus 89 ml/h). The serum protein binding of phenytoin was lower in rats injected with high dose of p-HPPH. The result indicated that injections of rac-p-HPPH mainly inhibited on the formation of p-HPPH itself. The formation of (R)-p-HPPH and (S)-p-HPPH in microsomal preparation was measured by a ligand-exchange chromatographic method. The formation of (S)-p-HPPH or (R)-p-HPPH was not only inhibited by the enantiomer itself, but also cross-inhibited by the other enantiomer. To the formation of either (S)-p-HPPH or (R)-p-HPPH, (S)-p-HPPH showed a higher inhibitory activity. The use of rac-p-HPPH to inhibit phenytoin metabolism in vivo involved several mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

将不同剂量的消旋对羟基苯卟啉(rac-p-HPPH,0.4和4毫克/小时)反复给予输注[14C]苯妥英的大鼠。采用高效液相色谱法和放射性分析测定血清中14C标记和未标记的对羟基苯卟啉以及[14C]苯妥英的水平。通过给药速率除以稳态浓度来确定苯妥英和对羟基苯卟啉的清除率。高剂量对羟基苯卟啉注射组的苯妥英清除率显著低于低剂量组(87对262毫升/小时),而对羟基苯卟啉清除率无差异。高剂量注射对羟基苯卟啉的大鼠中[14C]对羟基苯卟啉的生成清除率也显著降低(35对169毫升/小时)。高剂量对羟基苯卟啉的大鼠中其他消除途径的清除率也较低(53对89毫升/小时)。高剂量注射对羟基苯卟啉的大鼠中苯妥英的血清蛋白结合率较低。结果表明,消旋对羟基苯卟啉的注射主要抑制对羟基苯卟啉自身的生成。采用配体交换色谱法测定微粒体制剂中(R)-对羟基苯卟啉和(S)-对羟基苯卟啉的生成。(S)-对羟基苯卟啉或(R)-对羟基苯卟啉的生成不仅受到对映体自身的抑制,还受到另一种对映体的交叉抑制。对于(S)-对羟基苯卟啉或(R)-对羟基苯卟啉的生成,(S)-对羟基苯卟啉表现出更高的抑制活性。在体内使用消旋对羟基苯卟啉抑制苯妥英代谢涉及多种机制。(摘要截选至250字)

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