首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >New approach in radiometabolite analysis of positron emission tomography (PET) radioligands; lead-shielded microextraction by packed sorbent as a tool for in vivo radiometabolite analysis of [C-11]SMW139 in rat plasma
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New approach in radiometabolite analysis of positron emission tomography (PET) radioligands; lead-shielded microextraction by packed sorbent as a tool for in vivo radiometabolite analysis of [C-11]SMW139 in rat plasma

机译:正电子发射断层扫描(PET)放射性配体的放射性素分析新方法; 用填充的吸附剂作为用于大鼠等离子体中[C-11] SMW139的体内放射性刚性刚性刚性刚性亚铁分析的铅屏蔽微萃取物

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摘要

The blood plasma radiometabolite analysis (RMA) is crucial procedure for quantitative analysis of positron emission tomography (PET) radioligands with no original reference region in the brain. Blood sampling and separating plasma for RMA has been a challenge especially with small animal PET research. This work aimed to overcome this problem by presenting a semi-automated lead shielded microextraction by packed sorbents (SLS-MEPS). The capability of SLS-MEPS was evaluated for RMA of [C-11]SMW139 as a PET radioligand in rat plasma samples. [C-11]SMW139 is a potential radioligand with high receptor binding for P2X(7)R in vivo. The validation method was individually performed for [C-11]SMW139 and [C-12]SMW139 with reversed phase high performance liquid chromatography (HPLC) utilizing radio- and UV-detector, respectively. The limits of detection (LOD) and quantification (LOQ) [C-11]SMW139 in rat plasma were 3 and 10 Becquerel (Bq), respectively. The standard calibration curve was obtained for [C-11]SMW139 within the concentration range 10-15000 Bq with over 0.995 coefficients for all assays. In addition, the capability of SLS-MEPS in combination with HPLC-UV for extraction of [C-12]SMW139 in rat plasma was also challenged and the obtained results showed a proper linearity (20-2000 mu g mL(-1)), accuracy and repeatability.
机译:血液血浆辐射素分析(RMA)是对正电子发射断层扫描(PET)放射性配体的主要分析的关键程序,没有脑内没有原始参考区域。 RMA的血液取样和分离等离子体尤其是小型动物宠物研究的挑战。这项工作旨在通过呈现填充吸附剂(SLS-MEP)来介绍半自动引线屏蔽微萃取来克服这个问题。在大鼠等离子体样品中评估[C-11] SMW139的RMA的SLS-MEP的能力。 [C-11] SMW139是具有高受体结合的潜在放射性配体,其在体内对P2x(7)R具有高受体结合。使用无线电和UV检测器的反相高性能液相色谱(HPLC)分别为[C-11] SMW139和[C-12] SMW139单独对验证方法进行单独进行。在大鼠血浆中的检测极限(LOD)和定量(LOQ)[C-11] SMW139分别为3和10 beCrulel(BQ)。在浓度范围内的[C-11] SMW139中获得标准校准曲线10-15000bq的浓度范围内,具有超过0.995系数的所有测定。此外,在大鼠血浆中,SLS-MEP与HPLC-UV结合HPLC-UV的能力也被攻击,得到的结果显示出适当的线性(20-2000μg(-1)) ,准确性和可重复性。

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