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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >The distribution pattern of intravenous ((14)C) artesunate in rat tissues by quantitative whole-body autoradiography and tissue dissection techniques.
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The distribution pattern of intravenous ((14)C) artesunate in rat tissues by quantitative whole-body autoradiography and tissue dissection techniques.

机译:通过定量全身放射自显影和组织解剖技术,静脉((14)C)青蒿琥酯在大鼠组织中的分布方式。

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摘要

Quantitative whole-body autoradiography (QWBA) and liquid scintillation counting (LSC) have been conducted to determine the metabolic profiles and tissue distribution of [(14)C] labeled artesunate (AS) injection in rats. The QWBA technique showed more accurate results in the quantification of radioactivity in 40 organs and tissues, compared to 19 organs with the LSC technique. The benefit of QWBA was especially apparent on measurements of bile, bone marrow, and gland organs; however, the LSC method produced more relevant findings than QWBA. Particularly, the LSC method allowed access to the following distribution patterns that were unavailable via QWBA performance: such as pharmacokinetic evaluation of radiolabeled AS in blood and plasma, tissue/plasma partition coefficients, conversion pathway of AS to dihydroartemisinin (DHA, an active and major metabolite of AS), unchanged AS and DHA in plasma, mass balance assessment, urinary and faecal eliminations, drug pathway with conjugation, [(14)C] AS binding with RBC and plasma protein, and metabolites identification. Even though the each method has its own advantages, common profiles were obtained from the two processes as shown in the results of the biliary metabolism, long-lasting metabolites, tissue distribution profiles, and multiple concentration peaks, which indicate a [(14)C] AS enterohepatic circulation.
机译:已经进行了定量全身放射自显影(QWBA)和液体闪烁计数(LSC),以确定大鼠中[[(14)C]标记的青蒿琥酯(AS)注射液的代谢特征和组织分布。与LSC技术的19个器官相比,QWBA技术在40个器官和组织的放射性定量中显示出更准确的结果。 QWBA的好处在胆汁,骨髓和腺体器官的测量中尤为明显。然而,LSC方法比QWBA产生了更多相关的发现。特别是,LSC方法允许访问以下通过QWBA性能无法获得的分布模式:例如血液和血浆中放射性标记AS的药代动力学评估,组织/血浆分配系数,AS转化为双氢青蒿素(DHA,活性和主要代谢途径) AS代谢产物),血浆中AS和DHA不变,质量平衡评估,尿和粪便清除,药物结合途径,[(14)C] AS与RBC和血浆蛋白结合以及代谢产物鉴定。尽管每种方法都有其各自的优势,但从胆汁代谢,持久性代谢物,组织分布图和多个浓度峰的胆汁代谢结果可以看出,从这两个过程获得了相同的图谱,这些图表明[(14)C ] AS肠肝循环。

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