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[11C]DPFC: a promising PET tracer for imaging fatty acid amide hydrolase in brain

https://repo.qst.go.jp/records/72341
https://repo.qst.go.jp/records/72341
301dd0cc-538c-4546-b0fe-8679a61e9be7
Item type 会議発表用資料 / Presentation(1)
公開日 2017-05-25
タイトル
タイトル [11C]DPFC: a promising PET tracer for imaging fatty acid amide hydrolase in brain
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_c94f
資源タイプ conference object
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Shimoda, Yoko

× Shimoda, Yoko

WEKO 712518

Shimoda, Yoko

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Hatori, Akiko

× Hatori, Akiko

WEKO 712519

Hatori, Akiko

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Zhang, Yiding

× Zhang, Yiding

WEKO 712520

Zhang, Yiding

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Ogawa, Masanao

× Ogawa, Masanao

WEKO 712521

Ogawa, Masanao

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Nengaki, Nobuki

× Nengaki, Nobuki

WEKO 712522

Nengaki, Nobuki

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Fujinaga, Masayuki

× Fujinaga, Masayuki

WEKO 712523

Fujinaga, Masayuki

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Kumata, Katsushi

× Kumata, Katsushi

WEKO 712524

Kumata, Katsushi

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Xie, Lin

× Xie, Lin

WEKO 712525

Xie, Lin

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Zhang, Ming-Rong

× Zhang, Ming-Rong

WEKO 712526

Zhang, Ming-Rong

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下田 陽子

× 下田 陽子

WEKO 712527

en 下田 陽子

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羽鳥 晶子

× 羽鳥 晶子

WEKO 712528

en 羽鳥 晶子

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張 一鼎

× 張 一鼎

WEKO 712529

en 張 一鼎

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小川 政直

× 小川 政直

WEKO 712530

en 小川 政直

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念垣 信樹

× 念垣 信樹

WEKO 712531

en 念垣 信樹

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藤永 雅之

× 藤永 雅之

WEKO 712532

en 藤永 雅之

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熊田 勝志

× 熊田 勝志

WEKO 712533

en 熊田 勝志

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謝 琳

× 謝 琳

WEKO 712534

en 謝 琳

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張 明栄

× 張 明栄

WEKO 712535

en 張 明栄

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抄録
内容記述タイプ Abstract
内容記述 Objectives: Fatty acid amide hydrolase (FAAH) is an intracellular serine hydrolase that catalyzes the deactivating hydrolysis of several endogenous lipid amides, such as anandamide, an endogenous ligand that activates cannabinoid receptors, and oleamide, an endogenous sleep-inducing agent. It has been reported that FAAH-selective inhibitors exert pharmacological effects on pain, anxiety, addiction, and on some psychiatric disorders. PET imaging of FAAH would simplify the study of its function and may aid in evaluating the treating efficiency of FAAH inhibitors for the related brain diseases. In the present study, we developed N-(3,4-dimethylisoxazol-5-yl)piperazine-4-[4-(4-fluorophenyl)thiazol-2-yl]-1-[11C]carboxamide ([11C]DPFC) as a new radiotracer for PET imaging of FAAH in brain. Here, we describe 1) chemical synthesis and in vitro binding affinity of DPFC for FAAH, 2) radiosynthesis of [11C]DPFC and 3) biodistribution, PET and irreversible binding assay.
Methods: We labeled DPFC by reacting two different amines: 5-amino-3,4-dimethylisoazole and 4-(4-fluorophenyl)-2-(piperazin-1-yl)thiazole, with [11C]COCl2, and performed competitive activity-based protein profiling to examine the in vitro binding potency for FAAH. The distribution of radioactivity in mice was measured at different time points after injection of [11C]DPFC. PET scans were performed on rat brains.
Results: [11C]COCl2 was synthesized from cyclotron-produced [11C]CO2 via [11C]CH4 and then via [11C]CCl4 using a home-made automated production system. Starting with 18.5–26.6 GBq of [11C]CO2, 0.4–1.1 GBq of [11C]DPFC was obtained at the end of synthesis (n = 9). The average total synthesis time from the end of bombardment was 36 min. The in vitro binding affinity (IC50) of DPFC for FAAH was measured to be 3.3 ± 1.0 nM. The biodistribution study in mice showed high uptakes of radioactivity in FAAH-rich organs, such as the lung, liver, and kidney. PET summation images of rat brains showed high uptakes (> 2 SUV) in the cerebellar nuclei and frontal cortex. This pattern was consistent with the known regional distribution pattern of FAAH in the rodent brain. Pretreatment with the FAAH-selective inhibitor URB597 significantly reduced the whole brain uptake. At 30 min after the radiotracer injection, more than 95% of the total radioactivity was found to be irreversible in the brain homogenate of rats.
Conclusion: In this study, we have developed [11C]DPFC as a novel radiotracer for PET imaging of FAAH in brain. PET study showed relatively high radioactivity uptake and specific binding to FAAH in the rat brains. [11C]DPFC is thus a promising radiotracer for visualizing FAAH in the brain.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 22nd International symposium on radiopharmaceutical science (ISRS)
発表年月日
日付 2017-05-18
日付タイプ Issued
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