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A fully automated liquid–liquid extraction system utilizing interface detection

机译:利用界面检测的全自动液液萃取系统

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摘要

The development of the Abbott Liquid-Liquid Extraction Station was a result of the need for an automated system to perform aqueous extraction on large sets of newly synthesized organic compounds used for drug discovery. The system utilizes a cylindrical laboratory robot to shuttle sample vials between two loading racks, two identical extraction stations, and a centrifuge. Extraction is performed by detecting the phase interface (by difference in refractive index) of the moving column of fluid drawn from the bottom of each vial containing a biphasic mixture. The integration of interface detection with fluid extraction maximizes sample throughput. Abbott-developed electronics process the detector signals. Sample mixing is performed by high-speed solvent injection. Centrifuging of the samples reduces interface emulsions. Operating software permits the user to program wash protocols with any one of six solvents per wash cycle with as many cycle repeats as necessary. Station capacity is eighty, 15 ml vials. This system has proven successful with a broad spectrum of both ethyl acetate and methylene chloride based chemistries. The development and characterization of this automated extraction system will be presented.
机译:雅培液体萃取站的开发是由于需要一种自动化系统来对用于药物发现的大量新合成的有机化合物进行水萃取。该系统利用一个圆柱形的实验室机器人在两个装载架,两个相同的提取站和一个离心机之间穿梭样品瓶。通过检测从包含双相混合物的每个样品瓶底部抽出的流体移动柱的相界面(通过折射率差异)来进行萃取。界面检测与流体提取的集成最大程度地提高了样品通量。雅培开发的电子设备处理检测器信号。通过高速溶剂注入进行样品混合。样品的离心作用减少了界面乳液。操作软件允许用户在每个洗涤循环中使用六种溶剂中的任何一种对洗涤程序进行编程,并根据需要进行多次循环。工作站容量为80个15毫升的样品瓶。事实证明,该系统可用于多种基于乙酸乙酯和二氯甲烷的化学试剂。将介绍此自动提取系统的开发和特性。

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