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首页> 外文期刊>Journal of labelled compounds & radiopharmaceuticals. >Development of a new precursor-minimizing base control method and its application for the automated synthesis and SPE purification of ~18Ffluoromisonidazole (~18FFMIS0)
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Development of a new precursor-minimizing base control method and its application for the automated synthesis and SPE purification of ~18Ffluoromisonidazole (~18FFMIS0)

机译:~18F氟咪唑(~18FFMIS0)自动合成和SPE纯化的新前驱体最小化碱控制方法及其应用

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摘要

Bases such as potassium carbonate and potassium bicarbonate (KHCO_3) are essential for the elution of trapped ~18Ffluoride from ion exchange cartridges and for the prevention of ~18Ffluoride adsorption on the silica glass vial during the preparation of radiopharmaceuticals for positron emission tomography imaging. However, these bases promote the chemical decomposition of precursor compounds and the creation of unwanted organic impurities. Thus, the goal of the current study was to develop a new method for synthesizing ~18Ffluoride-labeled radiopharmaceuticals (e.g., ~18F fluoromisonizadole (~18FFMISO)) that permits the fine control of base concentrations while minimizing adverse events. Non-decay-corrected radiochemical yields of 25.1 +-5.0 and 13.3 +-5.1 (n = 3) were achieved after solid-phase extraction purification using automatic synthesis with GE TRACERlab MX and KHCO_3 at concentrations of 14.1 and 33.0 mumol, respectively, and 1 mg of precursor (1-(2'-nitro-1'-imidazolyl)-2-O-tetra-hydropyranyl-3-O-toluenesulfonyl propanediol (NITTP)). The newly developed synthesis protocol with fine base control and low precursor content permits high radiochemical yields with minimal impurities.
机译:碳酸钾和碳酸氢钾 (KHCO_3) 等碱对于从离子交换盒中洗脱捕获的 [~18F] 氟化物以及在制备用于正电子发射断层扫描成像的放射性药物期间防止 [~18F] 氟化物吸附在二氧化硅玻璃瓶上至关重要。然而,这些碱促进了前体化合物的化学分解和不需要的有机杂质的产生。因此,本研究的目标是开发一种合成 [~18F] 氟化物标记的放射性药物(例如 [~18F] 氟米索尼啶 ([~18F]FMISO))的新方法,该方法可以精细控制碱浓度,同时最大限度地减少不良事件。使用浓度分别为 14.1 和 33.0 mumol 的 GE TRACERlab MX 和 KHCO_3 和 1 mg 前驱体(1-(2'-硝基-1'-咪唑基)-2-O-四氢吡喃基-3-O-甲苯磺酰丙二醇 (NITTP))进行固相萃取纯化后,非衰变校正的放射化学产率分别为 25.1 +-5.0% 和 13.3 +-5.1% (n = 3)。新开发的合成方案具有精细的碱控制和低前驱体含量,可实现高放射化学产率和最少的杂质。

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