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首页> 外文期刊>American Journal of Analytical Chemistry >Development of a Fast and Facile Analytical Approach to Quantify Radiometabolites in Human Plasma Samples Using Ultra High Performance Liquid Chromatography
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Development of a Fast and Facile Analytical Approach to Quantify Radiometabolites in Human Plasma Samples Using Ultra High Performance Liquid Chromatography

机译:快速,简便的分析方法的发展,以使用超高效液相色谱法对人体血浆样品中的放射性代谢产物进行定量

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Introduction: Conventional metabolite analyses often require manual sample preparation, generating variability of measurements. This study describes a new method to quantify radiometabolites in blood, combining ultra high performance liquid chromatography (UHPLC) and turbulent flow chromatography, an alternative fully automated process allowing analyte’s extraction. Methods: A new radiotracer for dopamine transporter imaging, namely LBT-999, was used to demonstrate the method’s robustness. Matrix effect, Turboflow column loading, linearity, specificity and precision were evaluated with in vitro samples of LBT-999 in human plasma. Radiodetector sensitivity and preliminary evaluation were respectively determined by analysis of calibrated samples of [~(18)F]LBT-999 and blood samples from 4 healthy subjects injected with [~(18)F]LBT-999, withdrawn at 5, 15, 30 and 45 min pi. Results: With three sequential loadings (3 × 100 μL) of the Turboflow column, mean coefficients of variation were 1%, below 2%, 2% and 30.9% for matrix effect, specificity, repeatability and intermediate precision, respectively. Correlation coefficients for linearity were superior to 0.97. Limits of detection and quantification of the radiodetector were fixed at 3 and 9 c/s. Retention times for [~(18)F]LBT-999 and the two radiometabolites detected by radio-UHPLC were 6.5, 4.8 and 9.6 min. Forty-five min after the injection, parent fraction was still predominant with 57.8% ± 25% of the total radioactivity. Conclusions: An innovative approach, allying UHPLC and Turboflow column, was developed and its sensitivity, linearity, specificity and repeatability validated. Preliminary results of the clinical trial are in accordance with literature data, demonstrating its efficiency in radiometabolites quantification.
机译:简介:常规代谢物分析通常需要手动准备样品,从而产生测量的可变性。这项研究描述了一种结合超高效液相色谱(UHPLC)和湍流色谱法(一种允许分析物提取的全自动方法)的一种定量血液中放射性代谢物的新方法。方法:一种用于多巴胺转运蛋白成像的新型放射性示踪剂,即LBT-999,用于证明该方法的鲁棒性。使用人血浆中的LBT-999体外样品评估了基质效应,Turboflow色谱柱上样量,线性,特异性和精密度。通过对[〜(18)F] LBT-999的校准样品和注射了[〜(18)F] LBT-999的4位健康受试者的血液样品进行分析,分别确定放射检测器的灵敏度和初步评估,并在5、15、15抽出圆周率30和45分钟。结果:在Turboflow色谱柱的三个顺序装载量(3×100μL)下,基质效应,特异性,可重复性和中间精度的平均变异系数分别为1%,2%,2%和30.9%以下。线性相关系数优于0.97。放射性检测器的检测和定量限固定为3和9 c / s。 [〜(18)F] LBT-999和通过放射性超高效液相色谱检测到的两种放射性代谢物的保留时间分别为6.5、4.8和9.6分钟。注射后45分钟,母体部分仍占主导地位,占总放射性的57.8%±25%。结论:开发了一种结合UHPLC和Turboflow色谱柱的创新方法,并验证了其灵敏度,线性,特异性和可重复性。临床试验的初步结果与文献数据一致,证明了其在放射性代谢物定量分析中的效率。

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