Molecular Imaging Branch, National Institute of Mental Health, 10 Center Drive, Bethesda, MD 20892, USA.
EJNMMI Res. 2013 Jun 10;3(1):47. doi: 10.1186/2191-219X-3-47.
A recent study from our laboratory demonstrated that 11C-LY2428703, a new positron emission tomographic radioligand for metabotropic glutamate receptor 1 (mGluR1), has promising in vitro properties and excellent in vivo performance for imaging rat brain. The present study evaluated 11C-LY2428703 for imaging mGluR1 in monkey and human brains.
Rhesus monkeys were imaged at baseline and after administration of an mGluR1 blocking agent to calculate nonspecific binding, as well as after the administration of permeability glycoprotein (P-gp) and breast cancer resistance protein (BCRP) blockers to assess whether 11C-LY2428703 is a substrate for efflux transporters at the blood-brain barrier. Human imaging was performed at baseline in three healthy volunteers, and arterial input function was measured.
Overall brain uptake was low in monkeys, though slightly higher in the cerebellum, where mGluR1s are concentrated. However, the uptake was not clearly displaceable in the scans after mGluR1 blockade. Brain penetration of the ligand did not increase after P-gp and BCRP blockade. Brain uptake was similarly low in all human subjects (mean VT with a two-tissue compartment model, 0.093 ± 0.012 mL/cm3) and for all regions, including the cerebellum.
Despite promising in vitro and in vivo results in rodents, 11C-LY2428703 was unsuitable for imaging mGluR1s in monkey or human brain because of low brain uptake, which was likely caused by high binding to plasma proteins.
我们实验室的一项最新研究表明,新型正电子发射断层扫描代谢型谷氨酸受体 1(mGluR1)放射性配体 11C-LY2428703 具有良好的体外特性和优异的体内性能,可用于大鼠脑成像。本研究评估了 11C-LY2428703 用于猕猴和人脑 mGluR1 成像的性能。
在给予 mGluR1 阻断剂以计算非特异性结合之前,对恒河猴进行成像,以及在给予血脑屏障外排转运体 P-糖蛋白(P-gp)和乳腺癌耐药蛋白(BCRP)抑制剂后进行成像,以评估 11C-LY2428703 是否为外排转运体的底物。在 3 名健康志愿者中进行基线水平的人体成像,并测量动脉输入函数。
尽管在富含 mGluR1 的小脑处摄取略高,但在猴脑中整体脑摄取较低。然而,在 mGluR1 阻断后扫描中摄取并未明显置换。在 P-gp 和 BCRP 阻断后,配体的脑穿透性没有增加。在所有人类受试者(二室模型的平均 VT,0.093 ± 0.012 mL/cm3)和所有区域(包括小脑)中,脑摄取均较低。
尽管在啮齿动物中具有有前景的体外和体内结果,但 11C-LY2428703 不适合用于猕猴或人类大脑的 mGluR1 成像,因为脑摄取较低,这可能是由于与血浆蛋白的高结合所致。