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首页> 外文期刊>Nuclear Medicine and Biology >Reinvestigation of the synthesis and evaluation of (N-methyl-(11)C)vorozole, a radiotracer targeting cytochrome P450 aromatase.
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Reinvestigation of the synthesis and evaluation of (N-methyl-(11)C)vorozole, a radiotracer targeting cytochrome P450 aromatase.

机译:重新研究和合成(N-甲基-(11)C)vorozole,一种靶向细胞色素P450芳香化酶的放射性示踪剂。

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摘要

INTRODUCTION: We reinvestigated the synthesis of [N-methyl-(11)C]vorozole, a radiotracer for aromatase, and discovered the presence of an N-methyl isomer which was not removed in the original purification method. Herein we report the preparation and positron emission tomography (PET) studies of pure [N-methyl-(11)C]vorozole. METHODS: Norvorozole was alkylated with [(11)C]methyl iodide as previously described and also with unlabeled methyl iodide. A high-performance liquid chromatography (HPLC) method was developed to separate the regioisomers. Nuclear magnetic resonance (NMR) spectroscopy ((13)C and 2D-nuclear Overhauser effect spectroscopy NMR) was used to identify and assign structures to the N-methylated products. Pure [N-methyl-(11)C]vorozole and the contaminating isomer were compared by PET imaging in the baboon. RESULTS: Methylation of norvorozole resulted in a mixture of isomers (1:1:1 ratio) based on new HPLC analysis using a pentafluorophenylpropyl bonded silica column, in which vorozole coeluted one of its isomers under the original HPLC conditions. Baseline separation of the three labeled isomers was achieved. The N-3 isomer was the contaminant of vorozole, thus correcting the original assignment of isomers. PET studies of pure [N-methyl-(11)C]vorozole with and without the contaminating N-3 isomer revealed that only [N-methyl-(11)C]vorozole binds to aromatase. [N-methyl-(11)C]Vorozole accumulated in all brain regions with highest accumulation in the aromatase-rich amygdala and preoptic area. Accumulation was blocked with vorozole and letrozole consistent with reports of some level of aromatase in many brain regions. CONCLUSIONS: The discovery of a contaminating labeled isomer and the development of a method for isolating pure [N-methyl-(11)C]vorozole combine to provide a new scientific tool for PET studies of the biology of aromatase and for drug research and development.
机译:引言:我们重新研究了芳香酶的放射性示踪剂[N-甲基-(11)C] vorozole的合成,发现存在一种N-甲基异构体,该异构体在原始纯化方法中并未去除。在这里,我们报告制备和纯[N-甲基-(11)C] vorozole的正电子发射断层扫描(PET)研究。方法:如前所述,用[(11)C]甲基碘和未标记的甲基碘烷基化诺和唑。开发了一种高效液相色谱(HPLC)方法以分离区域异构体。核磁共振(NMR)光谱((13)C和2D核Overhauser效应光谱NMR)用于识别和分配N-甲基化产物的结构。在狒狒中通过PET成像比较了纯的[N-甲基-(11)C]伏洛唑和污染的异构体。结果:基于五氟苯基丙基键合硅胶柱的新HPLC分析,去甲酚的甲基化反应产生了异构体混合物(比例为1:1:1),在原始HPLC条件下,伏洛唑共洗脱了其中一种异构体。实现了三种标记异构体的基线分离。 N-3异构体是vorozole的污染物,因此纠正了异构体的原始分配。有或没有污染性N-3异构体的纯[N-甲基-(11)C]伏唑的PET研究表明,只有[N-甲基-(11)C]伏唑与芳香酶结合。 [N-甲基-(11)C] Voozole聚集在所有大脑区域,在富含芳香化酶的杏仁核和视前区聚集最多。伏洛唑和来曲唑阻止了积累,这与许多大脑区域的某种芳香化酶水平的报道一致。结论:污染标记异构体的发现和分离纯[N-甲基-(11)C] vorozole的方法的发展相结合,为PET芳香化酶生物学研究和药物研发提供了新的科学工具。 。

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