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在离体灌注豚鼠肝脏中研究强心苷的代谢。

Metabolism of cardiac glycosides studied in the isolated perfused guinea-pig liver.

作者信息

Kolenda K D, Lüllmann H, Peters T

出版信息

Br J Pharmacol. 1971 Apr;41(4):661-73. doi: 10.1111/j.1476-5381.1971.tb07074.x.

Abstract
  1. Metabolic degradation of tritiated ouabain, digoxin, and digitoxin has been investigated quantitatively using the isolated perfused guinea-pig liver. The cardiac glycosides and their metabolites have been extracted from the plasma, liver, and bile by different solvents and identified as far as possible by radio-chromatographic analysis.2. The total metabolic activity in the experimental system was localized in the liver.3. The hydrophilic glycoside ouabain could not penetrate into the metabolically active compartment of the liver and was, therefore, not degraded. The more lipophilic compound digitoxin, however, was completely degraded due to its high affinity for the metabolically active sites. The unchanged digitoxin cannot enter the aqueous bile fluid in contrast to its more hydrophilic metabolites.4. The only detectable metabolic degradation of digoxin was a conjugation with glucuronic and/or sulphuric acid, but a cleavage of sugar molecules seemed not to occur.5. In the case of digitoxin the metabolic processes are more complicated: sugar cleavage, conjugation, and C-12 hydroxylation take place simultaneously. An immediate hydroxylation of digitoxin leading to digoxin was not observed. After administration of digitoxin conjugation products as well as digoxigenin-bis-and digoxigenin-mono-digitoxosides were present in each of the compartments investigated, but the digitoxosides of digitoxigenin were intermediates in concentrations too low to be determined indicating a very high rate of conjugation and/or C-12 hydroxylation as compared with the cleavage of the digitoxoses.6. A scheme for the metabolic pathways of the cardiac glycosides based on experimental results is presented. The metabolic behaviour of each of the three compounds involved is closely related to their physicochemical properties, especially the lipid solubility.
摘要
  1. 利用离体灌注豚鼠肝脏定量研究了氚标记哇巴因、地高辛和洋地黄毒苷的代谢降解情况。已通过不同溶剂从血浆、肝脏和胆汁中提取了强心苷及其代谢产物,并尽可能通过放射色谱分析进行了鉴定。

  2. 实验系统中的总代谢活性定位于肝脏。

  3. 亲水性糖苷哇巴因无法穿透肝脏的代谢活性区室,因此未被降解。然而,亲脂性更强的化合物洋地黄毒苷由于对代谢活性位点具有高亲和力而被完全降解。与亲水性更强的代谢产物不同,未变化的洋地黄毒苷无法进入水性胆汁液。

  4. 地高辛唯一可检测到的代谢降解是与葡萄糖醛酸和/或硫酸结合,但似乎未发生糖分子的裂解。

  5. 对于洋地黄毒苷,代谢过程更为复杂:糖裂解、结合和C-12羟基化同时发生。未观察到洋地黄毒苷直接羟基化生成地高辛。给予洋地黄毒苷后,在所研究的每个区室中均存在结合产物以及洋地黄毒苷元双糖苷和洋地黄毒苷元单糖苷,但洋地黄毒苷元的糖苷浓度过低无法测定,表明与洋地黄毒糖裂解相比,结合和/或C-12羟基化速率非常高。

  6. 根据实验结果给出了强心苷代谢途径的示意图。所涉及的三种化合物各自的代谢行为与其物理化学性质密切相关,尤其是脂溶性。

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A simple approach to follow the metabolic degradation of cardiac glycosides in vivo.
Klin Wochenschr. 1971 Oct 1;49(19):1062-5. doi: 10.1007/BF01732915.
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Metabolism of digoxigenin, digoxigeninmonodigitoxoside and digoxigeninbisdigitoxoside in rats.
Naunyn Schmiedebergs Arch Pharmacol. 1973;276(2):157-66. doi: 10.1007/BF00501188.

本文引用的文献

5
[CONJUGATION OF CARDENOLIDE GENINS WITH SULFURIC ACID OR GLUCURONIC ACID].
Naunyn Schmiedebergs Arch Exp Pathol Pharmakol. 1964 Jun 22;248:370-86.
6
[SPECIES DIFFERENCES IN THE BIOTRANSFORMATION OF DIGITOXIN].[洋地黄毒苷生物转化中的种属差异]
Naunyn Schmiedebergs Arch Exp Pathol Pharmakol. 1964 Apr 9;247:35-48. doi: 10.1007/BF00246340.
7
[DETOXIFICATION RATE AND ACCUMULATION OF DIGITOXIN IN DIFFERENT SPECIES].[不同物种中洋地黄毒苷的解毒率与蓄积情况]
Naunyn Schmiedebergs Arch Exp Pathol Pharmakol. 1964 Apr 9;247:19-34. doi: 10.1007/BF00246339.
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Assay of radioactive digoxin in liver tissue.肝脏组织中放射性地高辛的测定
Biochem Pharmacol. 1963 Jun;12:577-9. doi: 10.1016/0006-2952(63)90133-3.

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