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使用稳定同位素标记的假外消旋体研究犬体内普萘洛尔代谢物的立体化学组成。

Stereochemical composition of propranolol metabolites in the dog using stable isotope-labeled pseudoracemates.

作者信息

Walle T, Wilson M J, Walle U K, Bai S A

出版信息

Drug Metab Dispos. 1983 Nov-Dec;11(6):544-9.

PMID:6140137
Abstract

Previous studies have demonstrated a larger oral bioavailability of (+)- as compared to (-)-propranolol in the dog. The objective of the present study was to examine how this difference is reflected in the metabolism in the drug. The stereochemical composition of propranolol and its metabolites was, therefore, determined in the urine of four dogs after single 160-mg oral doses of stable isotope-labeled pseudoracemates of propranolol. All major metabolites, accounting for 84% of the dose excreted in urine, were isolated by solvent extraction or HPLC, glucuronic acid conjugates after enzymatic hydrolysis, and analyzed by GC/MS after chemical derivatization. Of the three primary metabolic pathways, glucuronidation of the parent drug, about 16% of the dose recovered in urine, was highly selective for (-)-propranolol, (-)/(+)-enantiomer ratio 3.5. In contrast, all of the side-chain oxidation metabolites, about 30% of the dose, were mainly derived from (+)-propranolol, (-)/(+)-enantiomer ratio ranging from 0.35 to 0.74. Ring oxidation, involved in the metabolism of the remainder of the dose studied, about 38%, was, however, also found to be selective for (-)-propranolol, with the greatest selectivity observed in 4'-hydroxypropranolol, (-/(+)-enantiomer ratio 1.49. There was an excellent mass balance for the enantiomers of the metabolites studied, i.e. the total (-)/(+)-enantiomer ratio was close to unity. The higher oral bioavailability of (+)-propranolol in the dog, well reflected in the stereochemical composition of unchanged propranolol in urine, is suggested to be due to stereoselective presystemic hepatic removal of (-)-propranolol by glucuronidation and ring oxidation.

摘要

先前的研究表明,在犬体内,(+)-普萘洛尔的口服生物利用度比(-)-普萘洛尔更高。本研究的目的是考察这种差异在药物代谢中是如何体现的。因此,在四只犬单次口服160mg稳定同位素标记的普萘洛尔假外消旋体后,测定了其尿液中普萘洛尔及其代谢物的立体化学组成。所有主要代谢物占尿液中排泄剂量的84%,通过溶剂萃取或高效液相色谱法分离,经酶水解后得到葡萄糖醛酸缀合物,并在化学衍生化后通过气相色谱/质谱法进行分析。在三种主要代谢途径中,母体药物的葡萄糖醛酸化(尿液中回收剂量的约16%)对(-)-普萘洛尔具有高度选择性,(-)/(+)对映体比率为3.5。相比之下,所有侧链氧化代谢物(约占剂量的30%)主要来源于(+)-普萘洛尔,(-)/(+)对映体比率在0.35至0.74之间。然而,参与研究剂量其余部分代谢的环氧化(约占38%)也被发现对(-)-普萘洛尔具有选择性,在4'-羟基普萘洛尔中观察到最大选择性,(-)/(+)对映体比率为1.49。所研究代谢物对映体的质量平衡良好,即总(-)/(+)对映体比率接近1。犬体内(+)-普萘洛尔较高的口服生物利用度在尿液中未变化的普萘洛尔的立体化学组成中得到了很好的体现,这被认为是由于(-)-普萘洛尔在肝脏首过效应中通过葡萄糖醛酸化和环氧化被立体选择性清除所致。

相似文献

1
Stereochemical composition of propranolol metabolites in the dog using stable isotope-labeled pseudoracemates.使用稳定同位素标记的假外消旋体研究犬体内普萘洛尔代谢物的立体化学组成。
Drug Metab Dispos. 1983 Nov-Dec;11(6):544-9.
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Stereoselective increase in propranolol bioavailability during chronic dosing in the dog.犬长期给药期间普萘洛尔生物利用度的立体选择性增加。
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N-dealkylation of propranolol in rat, dog, and man. Chemical and stereochemical aspects.大鼠、犬和人体中普萘洛尔的N-脱烷基化。化学和立体化学方面。
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Stereochemistry of the in vivo disposition and metabolism of propranolol in dog and man using deuterium-labeled pseudoracemates.
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引用本文的文献

1
Use of human microsomes and deuterated substrates: an alternative approach for the identification of novel metabolites of ketamine by mass spectrometry.人微粒体和氘代底物的应用:一种通过质谱鉴定氯胺酮新代谢物的替代方法。
Drug Metab Dispos. 2009 Aug;37(8):1769-78. doi: 10.1124/dmd.108.026328. Epub 2009 May 15.
2
Stereoselective ring oxidation of propranolol in man.普萘洛尔在人体中的立体选择性环氧化
Br J Clin Pharmacol. 1984 Nov;18(5):741-8. doi: 10.1111/j.1365-2125.1984.tb02537.x.
3
Stereochemistry, a basis for sophisticated nonsense in pharmacokinetics and clinical pharmacology.
立体化学,药代动力学和临床药理学中复杂无稽之谈的一个基础。
Eur J Clin Pharmacol. 1984;26(6):663-8. doi: 10.1007/BF00541922.
4
Influence of food on the intravenous and oral dose kinetics of propranolol in the dog.食物对犬体内普萘洛尔静脉注射和口服剂量动力学的影响。
J Pharmacokinet Biopharm. 1985 Jun;13(3):229-41. doi: 10.1007/BF01065654.
5
Stereoselectivity in clinical pharmacokinetics and drug development.临床药代动力学和药物研发中的立体选择性
Eur J Drug Metab Pharmacokinet. 1990 Apr-Jun;15(2):109-25. doi: 10.1007/BF03190194.