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静脉注射 [11C]raclopride 后获得的血浆曲线的药代动力学分析为放射性配体的快速代谢提供了可能的解释。

Pharmacokinetic analysis of plasma curves obtained after i.v. injection of the PET radioligand [11C] raclopride provides a likely explanation for rapid radioligand metabolism.

机构信息

Nuclear Medicine Unit, Ospedale Misericordia e Dolce, USL4 Prato, Italy.

出版信息

J Cell Physiol. 2012 Apr;227(4):1663-9. doi: 10.1002/jcp.22890.

Abstract

Positron emission tomography (PET) is an imaging technique that provides direct measurements of receptor binding in neurons. The present study was performed to find reasons for the common observation of rapid metabolism of receptor radioligands during time of a brain PET scan. To this aim, the 1-h phase during which imaging-data are acquired was evaluated by using a pharmacokinetic approach. The values of half-lives, volumes of distribution, and dilution calculated for a set of metabolite corrected plasma curves of D2-receptor radioligand [(11)C]raclopride (PETc) during 50 min after radioligand injection in tracer dose were compared with the reference values obtained from a set of plasma curves (REFc) during 30 h after i.v. infusion of unlabelled raclopride in pharmacological doses. We found that the half-life of PETc correspond to the distribution half-life of REFc. Accordingly, the distribution volume during the terminal phase of PETc (13.6 ± 10.8 L) was significantly lower than that during the terminal phase (82.2 ± 30.5 L) and at steady state (59.4 ± 20 L) for REFc, and the dilution of raclopride in body for PETc at 50 min was 38 L, whereas it was 1015 L for REFc at 30 h. The [(11)C]raclopride in plasma at 50 min was higher (10% of dose) than the value for unlabelled raclopride at 30 h (4%). We concluded that the kinetic behavior of the radiolabelled drug [(11)C]raclopride during the 1 h time of a PET corresponds to the distribution phase. The high percentage of [(11)C]raclopride in plasma during this phase is a likely reason for the observed rapid radioligand metabolism.

摘要

正电子发射断层扫描(PET)是一种提供神经元受体结合直接测量的成像技术。本研究旨在寻找在脑 PET 扫描期间观察到受体放射性配体快速代谢的常见原因。为此,使用药代动力学方法评估了在获得成像数据的 1 小时期间。在放射性配体注射后 50 分钟内,通过对一组校正代谢产物的血浆曲线(PETc)计算得到的 D2 受体放射性配体[(11)C]raclopride(PETc)的半衰期、分布容积和稀释值,与通过静脉内输注未标记的 raclopride 在药理学剂量下获得的一组血浆曲线(REFc)的参考值进行比较。我们发现,PETc 的半衰期对应于 REFc 的分布半衰期。相应地,PETc 末端相(13.6±10.8 L)的分布容积显著低于 REFc 末端相(82.2±30.5 L)和稳态相(59.4±20 L),PETc 在 50 分钟时的拉氯普啶在体内的稀释度为 38 L,而 REFc 在 30 小时时为 1015 L。在 50 分钟时,血浆中的[(11)C]raclopride (10%的剂量)高于 30 小时时未标记的 raclopride 的值(4%)。我们得出结论,在 PET 的 1 小时时间内,放射性标记药物[(11)C]raclopride 的动力学行为与分布相相对应。在这个阶段,[(11)C]raclopride 在血浆中的高百分比是观察到的快速放射性配体代谢的一个可能原因。

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