Karolinska Institutet, Department of Clinical Neuroscience, Center for Psychiatric Research, Stockholm, Sweden.
Talanta. 2013 Sep 15;113:130-4. doi: 10.1016/j.talanta.2013.03.024. Epub 2013 Mar 15.
A high-speed and high-sensitive direct plasma radiometabolite analysis method for positron emission tomography (PET) radioligands has been developed. It was based on micellar/high submicellar liquid chromatography (LC) using a semi-preparative alkyl-bonded silica rod column in conjunction with steep gradient and high flow rate for rapid macromolecule removal from plasma without significant sample preparation and fast/efficient separation of PET radioligands from their radiometabolites. Excellent separation of target PET radioligand from its radiometabolites was achieved within 4 min with a limit of detection of 1 Bq (Bq) level. This method was successfully applied to study the radiometabolism for a wide variety of (11)C and (18)F labeled radioligands in human or monkey plasma. The improved sensitivity and throughput permitted the analysis of a large number of plasma samples for accurate determination PET radioligands during quantitative PET imaging studies. Micellar/high submicellar LC together with a monolithic column is an attractive alternative method to determine the radiometabolism of PET radioligands in plasma.
已开发出一种用于正电子发射断层扫描(PET)放射性配体的高速和高灵敏度直接血浆放射性代谢产物分析方法。它基于胶束/高亚胶束液相色谱(LC),使用半制备烷基键合硅胶棒柱,结合陡峭梯度和高流速,可快速从血浆中去除大分子,无需进行大量样品制备,并能快速/有效地将 PET 放射性配体与其放射性代谢产物分离。通过在 4 分钟内实现目标 PET 放射性配体与其放射性代谢产物的出色分离,检测限达到 1 Bq(Bq)水平。该方法已成功应用于研究各种(11)C 和(18)F 标记放射性配体在人体或猴血浆中的放射性代谢。灵敏度和通量的提高允许对大量血浆样品进行分析,以便在定量 PET 成像研究期间准确确定 PET 放射性配体。胶束/高亚胶束 LC 与整体柱一起是一种很有吸引力的替代方法,可用于确定血浆中 PET 放射性配体的放射性代谢。