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首页> 外文期刊>Nuclear Medicine and Biology >Rapid solid-phase extraction method to quantify ((11)C)-verapamil, and its ((11)C)-metabolites, in human and macaque plasma.
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Rapid solid-phase extraction method to quantify ((11)C)-verapamil, and its ((11)C)-metabolites, in human and macaque plasma.

机译:快速固相萃取法定量人类和猕猴血浆中的((11)C)-维拉帕米及其((11)C)-代谢物。

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INTRODUCTION: P-glycoprotein (P-gp), an efflux transporter, is a significant barrier to drug entry into the brain and the fetus. The positron emission tomography (PET) ligand, [(11)C]-verapamil, has been used to measure in vivo P-gp activity at various tissue-blood barriers of humans and animals. Since verapamil is extensively metabolized in vivo, it is important to quantify the extent of verapamil metabolism in order to interpret such P-gp activity. Therefore, we developed a rapid solid-phase extraction (SPE) method to separate, and then quantify, verapamil and its radiolabeled metabolites in plasma. METHODS: Using high-performance liquid chromatography (HPLC), we established that the major identifiable circulating radioactive metabolite of [(11)C]-verapamil in plasma of humans and the nonhuman primate, Macaca nemestrina, was [(11)C]-D-617/717. Using sequential and differential pH elution on C(8) SPE cartridges, we developed a rapid method to separate [(11)C]-verapamil and [(11)C]-D-617/717. Recovery was measured by spiking the samples with the corresponding nonradioactive compounds and assaying these compounds by HPLC. RESULTS: Verapamil and D-617/717 recovery with the SPE method was >85%. When the method was applied to PET studies in humans and nonhuman primates, significant plasma concentration of D-617/717 and unknown polar metabolite(s) were observed. The SPE and the HPLC methods were not significantly different in the quantification of verapamil and D-617/717. CONCLUSIONS: The SPE method simultaneously processes multiple samples in less than 5 min. Given the short half-life of [(11)C], this method provides a valuable tool to rapidly determine the concentration of [(11)C]-verapamil and its [(11)C]-metabolites in human and nonhuman primate plasma.
机译:简介:P-糖蛋白(P-gp)是一种外排转运蛋白,是药物进入大脑和胎儿的重要障碍。正电子发射断层扫描(PET)配体[[(11)C]-维拉帕米]已用于测量在人和动物的各种组织-血液屏障上的体内P-gp活性。由于维拉帕米在体内广泛代谢,因此重要的是量化维拉帕米的代谢程度,以解释这种P-gp活性。因此,我们开发了一种快速固相萃取(SPE)方法来分离然后定量测定血浆中维拉帕米及其放射性标记的代谢物。方法:使用高效液相色谱(HPLC),我们确定了人和非人灵长类动物猕猴猕猴血浆中[(11)C]-维拉帕米的主要可识别循环放射性代谢产物为[(11)C]- D-617 / 717。在C(8)SPE柱上使用顺序和差分pH洗脱,我们开发了一种快速的方法来分离[(11)C]-维拉帕米和[(11)C] -D-617 / 717。通过用相应的非放射性化合物加标样品并通过HPLC测定这些化合物来测量回收率。结果:采用SPE方法的维拉帕米和D-617 / 717回收率> 85%。当该方法用于人类和非人类灵长类动物的PET研究时,观察到血浆中D-617 / 717和未知极性代谢产物的浓度很高。 SPE和HPLC方法在维拉帕米和D-617 / 717的定量上没有显着差异。结论:SPE方法可在不到5分钟的时间内同时处理多个样品。鉴于[(11)C]的半衰期短,该方法提供了一种有价值的工具,可快速测定人和非人灵长类动物血浆中[[11] C]-维拉帕米及其[(11)C]-代谢物的浓度。

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