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High-throughput analysis using non-depletive SPME: challenges and applications to the determination of free and total concentrations in small sample volumes

机译:使用非消耗性SPME进行高通量分析:小样品量中游离和总浓度测定的挑战和应用

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摘要

In vitro high-throughput non-depletive quantitation of chemicals in biofluids is of growing interest in many areas. Some of the challenges facing researchers include the limited volume of biofluids, rapid and high-throughput sampling requirements, and the lack of reliable methods. Coupled to the above, growing interest in the monitoring of kinetics and dynamics of miniaturized biosystems has spurred the demand for development of novel and revolutionary methodologies for analysis of biofluids. The applicability of solid-phase microextraction (SPME) is investigated as a potential technology to fulfill the aforementioned requirements. As analytes with sufficient diversity in their physicochemical features, nicotine, N,N-Diethyl-meta-toluamide, and diclofenac were selected as test compounds for the study. The objective was to develop methodologies that would allow repeated non-depletive sampling from 96-well plates, using 100 µL of sample. Initially, thin film-SPME was investigated. Results revealed substantial depletion and consequent disruption in the system. Therefore, new ultra-thin coated fibers were developed. The applicability of this device to the described sampling scenario was tested by determining the protein binding of the analytes. Results showed good agreement with rapid equilibrium dialysis. The presented method allows high-throughput analysis using small volumes, enabling fast reliable free and total concentration determinations without disruption of system equilibrium.
机译:在许多领域中,对生物流体中化学物质进行体外高通量非消耗性定量分析的兴趣日益增加。研究人员面临的一些挑战包括生物流体的数量有限,快速且高通量的采样要求以及缺乏可靠的方法。结合以上所述,对微型化生物系统动力学和动力学监测的兴趣日益增长,刺激了对开发新颖且革命性的生物流体分析方法的需求。固相微萃取(SPME)的适用性被研究为满足上述要求的潜在技术。作为理化特性具有足够多样性的分析物,选择了尼古丁,N,N-二乙基-间甲酰胺和双氯芬酸作为本研究的测试化合物。目的是开发一种方法,该方法允许使用100µL的样品从96孔板中重复进行非消耗性采样。最初,研究了薄膜SPME。结果显示系统大量耗竭并因此中断。因此,开发了新的超薄涂层纤维。通过确定分析物的蛋白质结合力,测试了该设备对上述采样方案的适用性。结果显示与快速平衡透析具有良好的一致性。提出的方法允许使用小体积进行高通量分析,从而能够快速可靠地进行游离和总浓度测定,而不会破坏系统平衡。

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