首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Radiodefluorination of 3-Fluoro-5-(2-(2-18F(fluoromethyl)thiazol-4-yl)ethynyl)benzonitrile (18FSP203) a Radioligand for Imaging Brain Metabotropic Glutamate Subtype-5 Receptors with Positron Emission Tomography Occurs by Glutathionylation in Rat Brain
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Radiodefluorination of 3-Fluoro-5-(2-(2-18F(fluoromethyl)thiazol-4-yl)ethynyl)benzonitrile (18FSP203) a Radioligand for Imaging Brain Metabotropic Glutamate Subtype-5 Receptors with Positron Emission Tomography Occurs by Glutathionylation in Rat Brain

机译:3-氟5-(2-(2- 2- 18F(氟甲基)噻唑-4-基)乙炔基)苄腈(18F SP203)的放射性脱氟用于正电子发射成像脑代谢型谷氨酸亚型5型受体的放射性配体。断层扫描通过大鼠脑中的谷胱甘肽化发生

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摘要

Metabotropic glutamate subtype-5-receptors (mGluR5) are implicated in several neuropsychiatric disorders. Positron emission tomography (PET) with a suitable radioligand may enable monitoring of regional brain mGluR5 density before and during treatments. We have developed a new radioligand, 3-fluoro-5-(2-(2-[18F](fluoromethyl)thiazol-4-yl)ethynyl)benzonitrile ([18F]SP203), for imaging brain mGluR5 in monkey and human. In monkey, radioactivity was observed in bone, showing release of [18F]fluoride ion from [18F]SP203. This defluorination was not inhibited by disulfiram, a potent inhibitor of CYP2E1. PET confirmed bone uptake of radioactivity and therefore defluorination of [18F]SP203 in rats. To understand the biochemical basis for defluorination, we administered [18F]SP203 plus SP203 in rats for ex vivo analysis of metabolites. Radio-HPLC detected [18F]fluoride ion as a major radiometabolite in both brain extract and urine. Incubation of [18F]SP203 with brain homogenate also generated this radiometabolite, whereas no metabolism was detected in whole blood in vitro. LC-MS analysis of the brain extract detected m/z 548 and m/z 404 ions, assignable to the [M+H]+ of S-glutathione (SP203Glu) and N-acetyl-S-L-cysteine (SP203Nac) conjugates of SP203, respectively. In urine, only the [M+H]+ of SP203Nac was detected. MS-MS and MS3 analyses of each metabolite yielded product ions consistent with its proposed structure, including the former fluoromethyl group as the site of conjugation. Metabolite structures were confirmed by similar analyses of SP203Glu and SP203Nac, prepared by glutathione S-transferase reaction and chemical synthesis, respectively. Thus, glutathionylation at the 2-fluoromethyl group is responsible for the radiodefluorination of [18F]SP203 in rat. This study provides the first demonstration of glutathione-promoted radiodefluorination of a PET radioligand.
机译:代谢型谷氨酸5型亚型受体(mGluR5)与几种神经精神疾病有关。具有合适放射性配体的正电子发射断层扫描(PET)可以在治疗之前和治疗期间监测局部脑mGluR5密度。我们开发了一种新的放射性配体3-氟-5-(2-(2- [2-[ 18 F](氟甲基)噻唑-4-基)乙炔基)苄腈([ 18 F] SP203),用于在猴和人中对脑mGluR5进行成像。在猴子中,在骨骼中观察到放射性,表明从[ 18 F] SP203中释放了[ 18 F]氟离子。这种去氟没有被CYP2E1的强效抑制剂disulfiram抑制。 PET证实了骨骼对放射性的吸收,因此证实了大鼠[ 18 F] SP203的脱氟。为了了解脱氟的生化基础,我们在大鼠体内施用了[ 18 F] SP203 + SP203进行离体代谢产物分析。放射性高效液相色谱法检测到[ 18 F]氟离子是脑提取液和尿液中的主要放射性代谢物。 [ 18 F] SP203与脑匀浆的孵育也产生了这种放射性代谢物,而在体外全血中未检测到新陈代谢。对脑提取物的LC-MS分析检测到m / z 548和m / z 404离子,可分配给S-谷胱甘肽(SP203Glu)和N-乙酰-SL-的[M + H] + SP203的半胱氨酸(SP203Nac)缀合物。尿液中仅检测到SP203Nac的[M + H] + 。每种代谢物的MS-MS和MS 3 分析产生的产物离子与其拟议的结构一致,包括以前的氟甲基作为结合位点。分别通过谷胱甘肽S-转移酶反应和化学合成制备的SP203Glu和SP203Nac的相似分析证实了代谢物的结构。因此,在大鼠中,[ 18 F] SP203的放射性脱氟是由2-氟甲基上的谷胱甘肽酰化引起的。这项研究首次证明了谷胱甘肽促进PET放射性配体的放射性脱氟。

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