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某些具有或不具有蛋白质结合特性的诱导剂对大鼠异恶唑基青霉素生物利用度影响的比较研究。

Comparative study of the effects of some inducers with or without protein binding properties on bioavailability of isoxazolylpenicillins in rats.

作者信息

Couvaris M, Galanopoulou P, Karageorgiou C, Theodosopoulos S, Varonos D

出版信息

Eur J Drug Metab Pharmacokinet. 1986 Jul-Sep;11(3):187-94. doi: 10.1007/BF03189846.

DOI:10.1007/BF03189846
PMID:3816874
Abstract

The effect of various inducers with or without protein binding properties on serum levels and half life of Oxacillin, Cloxacillin and Dicloxacillin was studied. A total of 102 male rats classified in 3 "categories" according to the administered penicillin with 6 groups of rats in each of them were used. Each group was pretreated for 15 days with the following inducers: phenobarbital, diphenylhydantoin, diazepam, chlorpromazine and phenylbutazone. The control groups received saline. The d-glucaric acid concentration in the urine prior to and after the administration of inducers and the liver weight were taken as enzyme induction indices. The results showed a decrease of serum levels and half life of three penicillins with a negative correlation between urine d-glucaric acid and serum penicillin levels. Phenobarbital, diphenylhydantoin and chlorpromazine affected the 3 penicillins in the following statistically significant order: oxacillin, dicloxacillin, cloxacillin. Diazepam affected: cloxacillin, dicloxacillin, oxacillin, and phenylbutazone: dicloxacillin, cloxacillin and oxacillin. However all drugs finally produced a uniform effect on all 3 penicillins in the following decreasing order: phenobarbital (r = -0.910), diphenylhydantoin (r = -0.864), phenylbutazone (r = -0.851), chlorpromazine (r = -0.842) and diazepam (r = -0.821). For all inducers, the effect was most significant for oxacillin (r = -0.869), second most significant for dicloxacillin (r = -0.811) and finally for cloxacillin (r = -0.778). The results suggested an interaction of isoxazolylpenicillins and the above drugs.

摘要

研究了各种具有或不具有蛋白质结合特性的诱导剂对苯唑西林、氯唑西林和双氯西林血清水平及半衰期的影响。总共使用了102只雄性大鼠,根据所给予的青霉素将其分为3个“类别”,每个类别中有6组大鼠。每组大鼠用以下诱导剂预处理15天:苯巴比妥、苯妥英钠、地西泮、氯丙嗪和保泰松。对照组给予生理盐水。将诱导剂给药前后尿液中的d - 葡萄糖醛酸浓度和肝脏重量作为酶诱导指标。结果显示三种青霉素的血清水平和半衰期降低,尿液d - 葡萄糖醛酸与血清青霉素水平呈负相关。苯巴比妥、苯妥英钠和氯丙嗪对三种青霉素的影响按以下统计学显著顺序排列:苯唑西林、双氯西林、氯唑西林。地西泮的影响顺序为:氯唑西林、双氯西林、苯唑西林,保泰松的影响顺序为:双氯西林、氯唑西林、苯唑西林。然而,所有药物最终对所有三种青霉素产生的统一影响按以下降序排列:苯巴比妥(r = -0.910)、苯妥英钠(r = -0.864)、保泰松(r = -0.851)、氯丙嗪(r = -0.842)和地西泮(r = -0.821)。对于所有诱导剂,对苯唑西林的影响最为显著(r = -0.869),其次是双氯西林(r = -0.811),最后是氯唑西林(r = -0.778)。结果表明异恶唑基青霉素与上述药物之间存在相互作用。

相似文献

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Comparative study of the effects of some inducers with or without protein binding properties on bioavailability of isoxazolylpenicillins in rats.某些具有或不具有蛋白质结合特性的诱导剂对大鼠异恶唑基青霉素生物利用度影响的比较研究。
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引用本文的文献

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Effect of enzyme induction on bioavailability of hetacillin in patients treated with anticonvulsants and chlorpromazine.
Eur J Drug Metab Pharmacokinet. 1990 Jan-Mar;15(1):15-8. doi: 10.1007/BF03190122.

本文引用的文献

1
Metabolism of d-glucuronolactone in mammalian systems. Identification of d-glucaric acid as a normal constituent of urine.d-葡糖醛酸内酯在哺乳动物系统中的代谢。鉴定d-葡萄糖二酸为尿液的正常成分。
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AN EFFECT OF PHENOBARBITONE ON GRISEOFULVIN METABOLISM IN THE RAT.苯巴比妥对大鼠灰黄霉素代谢的影响。
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Influence of liver enzyme induction caused by phenobarbital on the biotransformation of hetacillin in male rats.
苯巴比妥引起的肝酶诱导对雄性大鼠中海他西林生物转化的影响。
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Researches on the increase of liver weight produced by some drugs.关于某些药物导致肝脏重量增加的研究。
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Mechanisms responsible for the blood level differences of isoxazolyl penicillins: oxacillin, cloxacillin, and dicloxacillin.异恶唑基青霉素(苯唑西林、氯唑西林和双氯西林)血药浓度差异的相关机制。
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Flucloxacillin, a new isoxazolyl penicillin, compared with oxacillin, cloxacillin, and dicloxacillin.氟氯西林,一种新型异恶唑基青霉素,与苯唑西林、氯唑西林和双氯西林进行比较。
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Partition data of penicillins determined by means of reversed-phase thin-layer chromatography.通过反相薄层色谱法测定的青霉素的分配数据。
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Simplified, accurate method for antibiotic assay of clinical specimens.临床标本抗生素检测的简化、准确方法。
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Interaction between doxycycline and barbiturates.强力霉素与巴比妥类药物之间的相互作用。
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Interaction between doxycycline and some antiepileptic drugs.强力霉素与某些抗癫痫药物之间的相互作用。
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