首页> 外文期刊>ACS medicinal chemistry letters >In Vitro Ligand Binding Kinetics Explains the Pharmacokinetics of [F-18]FE-PE2I in Dopamine Transporter PET Imaging
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In Vitro Ligand Binding Kinetics Explains the Pharmacokinetics of [F-18]FE-PE2I in Dopamine Transporter PET Imaging

机译:体外配体结合动力学解释了在多巴胺转运仪PET成像中[F-18] Fe-PE2I的药代动力学

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摘要

Two of the most popular positron emission tomography (PET) tracers, [C-11]PE2I and [F-18]FE-PE2I, used to quantify dopamine transporters (DAT), display dissimilar kinetic behavior in in vivo assays. This difference can be explained by comparing values of kinetic rate constants, which characterize interaction of these tracers with DAT sites in vitro. At the same time, this kinetic analysis showed that the overall binding mechanism is similar for these two tracers and includes a fast step of complex formation followed by a slow isomerization step of this complex. Comparison with previous PE2I data revealed that isomerization of the DAT complex with PE2I occurs three times faster than in the case of FE-PE2I, which leads to the slower onset of peak specific binding of the former tracer in the DAT-rich regions. Therefore, ligands with slower isomerization on-rate, including [F-18]FE-PE2I, seem to be better tracers in vivo, and their properties can be predicted in vitro.
机译:用于量化多巴胺转运蛋白(DAT)的两种最流行的正电子发射断层扫描(PET)示踪剂(PET)示踪剂,[C-11] PE2I和[F-18] FE-PE2I,在体内测定中显示不同的动力学行为。 通过比较动力速率常数的值来解释这种差异,其特征在于在体外与DAT位点的这些示踪剂的相互作用。 同时,该动力学分析表明,整个结合机制对于这两个示踪剂类似,并且包括复杂形成的快速步骤,然后是该复合物的缓慢异构化步骤。 与先前的PE2I数据的比较显示,与PE2I的DAT复合物的异构化比Fe-PE2i的情况快三倍,这导致前示踪剂在富有的地区中的前示踪剂的峰特异性结合较慢。 因此,具有较慢的异构化率的配体,包括[F-18] Fe-PE2I似乎在体内是更好的示踪剂,它们的性质可以在体外预测。

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