化学
放射合成
苯基溴化镁
产量(工程)
硫酚
烷基化
溴化物
化学合成
放射化学
药物化学
核化学
试剂
有机化学
催化作用
冶金
材料科学
体外
体内
生物技术
生物
生物化学
作者
Lonneke Rotteveel,Alex J. Poot,Uta Funke,Aleksandra Pekošak,Ulrike Filp,Adriaan A. Lammertsma,Albert D. Windhorst
摘要
The multitude of biologically active compounds requires the availability of a broad spectrum of radiolabeled synthons for the development of positron emission tomography (PET) tracers. The aim of this study was to synthesize 1‐iodo‐2‐[ 11 C]methylpropane and 2‐methyl‐1‐[ 11 C]propanol and investigate the use of these reagents in further radiosynthesis reactions. 2‐Methyl‐1‐[ 11 C]propanol was obtained with an average radiochemical yield of 46 ± 6% d.c. and used with fluorobenzene as starting material. High conversion rates of 85 ± 4% d.c. could be observed with HPLC, but large precursor amounts (32 mg, 333 μmol) were needed. 1‐Iodo‐2‐[ 11 C]methylpropane was synthesized with a radiochemical yield of 25 ± 7% d.c. and with a radiochemical purity of 78 ± 7% d.c. The labelling agent 1‐iodo‐2‐[ 11 C]methylpropane was coupled to thiophenol, phenol and phenylmagnesium bromide. Average radiochemical conversions of 83% d.c. for thiophenol, 40% d.c. for phenol, and 60% d.c. for phenylmagnesium bromide were obtained. In addition, [ 11 C]2‐methyl‐1‐propyl phenyl sulphide was isolated with a radiochemical yield of 5 ± 1% d.c. and a molar activity of 346 ± 113 GBq/μmol at the end of synthesis. Altogether, the syntheses of 1‐iodo‐2‐[ 11 C]methylpropane and 2‐methyl‐1‐[ 11 C]propanol were achieved and applied as proof of their applicability.
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