[11C]ZTP-1: An Effective Short-Lived Radioligand for PET of Rat and Monkey Brain Phosphodiesterase Type 4 Subtype B

Qunchao Zhao, Jeih-San Liow, Joo Eun Jee, Jose Montero Santamaria, Matilah Pamie-George, Cheryl Morse, Shawn Wu, Sami S. Zoghbi, Sung Won Kim, Robert B. Innis, Victor W. Pike, Sanjay Telu
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Abstract

Phosphodiesterase type 4 subtype B (PDE4B) selectively hydrolyzes cyclic adenosine monophosphate to enact numerous downstream signaling events. PDE4B is widely expressed in the brain and is implicated in several neuropsychiatric disorders. Moreover, PDE4B inhibition shows antiinflammatory and antidepressant-like effects in animal studies. [18F]PF-06445974 has been developed to image human brain PDE4B using PET, thereby providing a tool for pathophysiologic studies and drug development. However, a radioligand labeled with shorter-lived 11C would be an alternative for studies that require more than 1 administration into the same imaging subject on a single day. Methods: 8-Cyclopropyl-10-(3,5-difluoro-4-(methoxy)phenyl)-7,8-dihydropyrido[2′,3′:4,5]pyrrolo[1,2-a]pyrazin-9(6H)-1 (ZTP-1) was identified as possessing many favorable properties for development as a 11C-labeled PET radioligand, including high PDE4B inhibitory potency, moderate computed lipophilicity, and a methoxy group as a potential labeling site. Here, [11C]ZTP-1 was readily obtained by 11C methylation of a synthesized O-desmethyl precursor. PET imaging of rat and rhesus monkey brains was performed with [11C]ZTP-1 at baseline and after administration of PDE4B- and PDE4D-selective inhibitors. Radiometabolite profiles for [11C]ZTP-1 were also determined ex vivo in rat plasma and brains. Results: [11C]ZTP-1 was obtained in a high activity yield and with high molar activity. Rat and monkey PET imaging showed high whole-brain radioactivity uptake with subsequent gradual washout. Challenge experiments verified a high and PDE4B-selective PET signal in rat and monkey brains. Ex vivo rat brain uptake of [11C]ZTP-1 showed less than 1% radiometabolite contamination at 30 min. Total distribution volume measures in monkey brains quickly reached stability. Conclusion: [11C]ZTP-1 is a promising, shorter-lived alternative to [18F]PF-06445974 for quantifying brain PDE4B in rodents and nonhuman primates with PET and warrants further investigation in humans.

[11]ZTP-1:大鼠和猴脑磷酸二酯酶4亚型B的有效短寿命放射配体
磷酸二酯酶4亚型B (PDE4B)选择性地水解环磷酸腺苷,以实现许多下游信号事件。PDE4B在大脑中广泛表达,并与几种神经精神疾病有关。此外,PDE4B抑制在动物实验中显示出抗炎和抗抑郁样作用。[18F]PF-06445974已被开发用于利用PET对人脑PDE4B进行成像,从而为病理生理学研究和药物开发提供工具。然而,对于需要在一天内对同一成像对象进行多次给药的研究,使用寿命较短的11C标记的放射性配体将是一种替代方案。方法:8-环丙基-10-(3,5-二氟-4-(甲氧基)苯基)-7,8-二氢吡啶[2 ',3 ':4,5]pyrrolo[1,2-a]pyrazin-9(6H)-1 (zfp -1)被鉴定为具有许多有利的特性,可作为11c标记的PET放射配体,包括高PDE4B抑制效能,中等计算的亲脂性,以及一个甲氧基作为潜在的标记位点。在这里,通过合成的o -去甲基前体的11C甲基化很容易得到[11C]ZTP-1。用[11C]ZTP-1对大鼠和恒河猴的大脑进行PET成像,在基线和给药PDE4B-和pde4d选择性抑制剂后。[11C]ZTP-1的放射性代谢物谱也在大鼠血浆和大脑中进行了体外测定。结果:得到的[11C]ZTP-1具有较高的活性产率和摩尔活性。大鼠和猴子PET成像显示高全脑放射性摄取,随后逐渐消退。挑战实验证实了大鼠和猴子大脑中高选择性pde4b的PET信号。[11C]ZTP-1的离体大鼠脑摄取在30分钟时显示放射性代谢物污染小于1%。猴子脑中的总分布体积测量迅速达到稳定。结论:[11C]ZTP-1是替代[18F]PF-06445974的一种有前景的、寿命较短的PET定量啮齿动物和非人灵长类动物脑PDE4B的方法,值得在人类中进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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