首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >11C-DPA-713 has much greater specific binding to translocator protein 18 kDa (TSPO) in human brain than 11C-(R)-PK11195
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11C-DPA-713 has much greater specific binding to translocator protein 18 kDa (TSPO) in human brain than 11C-(R)-PK11195

机译:11C-DPA-713与11C-(R)-PK11195在人脑中对转运蛋白18 kDa(TSPO)的特异性结合更大

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摘要

Positron emission tomography (PET) radioligands for translocator protein 18 kDa (TSPO) are widely used to measure neuroinflammation, but controversy exists whether second-generation radioligands are superior to the prototypical agent 11C-(R)-PK11195 in human imaging. This study sought to quantitatively measure the “signal to background” ratio (assessed as binding potential (BPND)) of 11C-(R)-PK11195 compared to one of the most promising second-generation radioligands, 11C-DPA-713. Healthy subjects had dynamic PET scans and arterial blood measurements of radioligand after injection of either 11C-(R)-PK11195 (16 subjects) or 11C-DPA-713 (22 subjects). To measure the amount of specific binding, a subset of these subjects was scanned after administration of the TSPO blocking drug XBD173 (30–90 mg PO). 11C-DPA-713 showed a significant sensitivity to genotype in brain, whereas 11C-(R)-PK11195 did not. Lassen occupancy plot analysis revealed that the specific binding of 11C-DPA-713 was much greater than that of 11C-(R)-PK11195. The BPND in high-affinity binders was about 10-fold higher for 11C-DPA-713 (7.3) than for 11C-(R)-PK11195 (0.75). Although the high specific binding of 11C-DPA-713 suggests it is an ideal ligand to measure TSPO, we also found that its distribution volume increased over time, consistent with the accumulation of radiometabolites in brain.
机译:用于定位蛋白18 kDa(TSPO)的正电子发射断层扫描(PET)放射性配体被广泛用于测量神经炎症,但是第二代放射性配体是否优于原型药物 11 C-(R)-存在争议PK11195在人类成像中。这项研究试图定量测量 11 C-(R)-PK11195与最有希望的第二代放射性配体之一的“信号与背景”比(评估为结合势(BPND)), 11 C-DPA-713。健康受试者在注射 11 C-(R)-PK11195(16名受试者)或 11 C-DPA-713(之后,进行动态PET扫描和放射性配体动脉血测量)( 22个主题)。为了测量特异性结合的量,在给予TSPO封闭药物XBD173(30-90 mg PO)后,对这些受试者的一部分进行了扫描。 11 C-DPA-713对大脑的基因型表现出显着的敏感性,而 11 C-(R)-PK11195没有。拉森占用图分析表明, 11 C-DPA-713的特异性结合远大于 11 C-(R)-PK11195的特异性结合。高亲和力粘合剂中的BPND对于 11 C-DPA-713(7.3)大约是 11 C-(R)-PK11195(0.75)的十倍。尽管 11 C-DPA-713的高特异性结合表明它是测量TSPO的理想配体,但我们还发现其分布量随时间增加,与放射性代谢产物在脑中的积累一致。

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