首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Evaluation of 18FMC225 as a PET radiotracer for measuring P-glycoprotein function at the blood–brain barrier in rats: Kinetics metabolism and selectivity
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Evaluation of 18FMC225 as a PET radiotracer for measuring P-glycoprotein function at the blood–brain barrier in rats: Kinetics metabolism and selectivity

机译:18F MC225作为PET示踪剂在大鼠血脑屏障中测量P-糖蛋白功能的评估:动力学新陈代谢和选择性

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摘要

P-glycoprotein is a protective efflux transporter at the blood–brain barrier showing altered function in many neurological disorders. The purpose of this study was to validate [18F]MC225 as a radiotracer for measuring P-glycoprotein function with positron emission tomography. Three groups of Sprague-Dawley rats were used to assess tracer uptake at baseline (group 1), after inhibition of P-glycoprotein (group 2), and after inhibition of both P-glycoprotein and breast cancer resistance protein (Bcrp, group 3). A two-tissue compartment model with a metabolite-corrected plasma input function provided the best fit to the positron emission tomography data, but parameter estimates were more reliable in a one-tissue compartment model, which was selected as the preferred model. Regional distribution volumes (VT) in the control group ranged from 6 to 11, which is higher than for other radiotracers. [18F]MC225 showed transporter selectivity, since inhibition of P-glycoprotein caused a two to fourfold increase in the cerebral VT values, but additional inhibition of Bcrp did not cause any further increase. Metabolic stability of [18F]MC225 was moderate (at 1 h post-injection 15% of plasma radioactivity and 76% of brain radioactivity represented intact parent). Thus, [18F]MC225 may be a useful radiotracer to measure especially increases of P-glycoprotein function at the blood–brain barrier.
机译:P-糖蛋白是血脑屏障的一种保护性外排转运蛋白,在许多神经系统疾病中表现出功能改变。这项研究的目的是验证[ 18 F] MC225作为放射性示踪剂,用正电子发射断层扫描技术测量P-糖蛋白功能。使用三组Sprague-Dawley大鼠在抑制P-糖蛋白后(第2组)以及同时抑制P-糖蛋白和乳腺癌耐药蛋白(Bcrp,第3组)评估基线的示踪剂摄取(第1组)。 。具有代谢物校正血浆输入功能的两组织隔室模型最适合正电子发射断层扫描数据,但在单组织隔室模型中参数估计更为可靠,该模型被选为首选模型。对照组的区域分布量(VT)在6到11之间,比其他放射性示踪剂的高。 [ 18 F] MC225具有转运蛋白选择性,因为对P-糖蛋白的抑制导致脑VT值增加2至4倍,但对Bcrp的进一步抑制并未引起任何进一步的增加。 [ 18 F] MC225的代谢稳定性中等(注射后1 h,血浆放射性的15%和脑放射性的76%代表完整的亲本)。因此,[ 18 F] MC225可能是一种有用的放射性示踪剂,可用于特别测量血脑屏障中P-糖蛋白功能的增加。

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