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Microfluidic Chip-Based Induced Phase Separation Extraction as a Fast and Efficient Miniaturized Sample Preparation Method

机译:基于微流体芯片的诱导相分离萃取作为快速高效的小型化样品制备方法

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摘要

Induced phase separation extraction (IPSE) is an efficient sample clean-up technique that can replace liquid-liquid extraction (LLE). The purpose of this study was to miniaturize IPSE by carrying it out in a microfluidic chip. An IPSE chip was designed and evaluated for its ability to separate and purify samples on a microscale. The 5 × 2 cm chip was fed with a solution of polar to non-polar model compounds in acetonitrile-water (1:1). In the 100 µm wide and 40 µm deep microchannels, the sample solution was efficiently separated into two immiscible phases by adding a hydrophobic solvent as inducer. Analytes present in the sample solution each migrated to their own favorable phase upon phase separation. After optimization, extraction and fractionation were easily and efficiently achieved. The behavior of analytes with a pH-dependent partitioning could be influenced by adjusting the pH of the sample solution. Scutellaria baicalensis extract, used in Traditional Chinese Medicine (TCM), was successfully separated in aglycones and glycosides. In this microscale system, the sample and solvent consumption is reduced to microliters, while the time needed for the sample pretreatment is less than one minute. Additionally, the extraction efficiency can reach up to 98.8%, and emulsion formation is avoided.
机译:诱导的相分离提取(IPSE)是一种有效的样品清洁技术,可以取代液 - 液萃取(LLE)。本研究的目的是通过在微流体芯片中携带它来小型IPSE。设计并评估了IPSE芯片的能力,以便在微尺度上分离和纯化样品。将5×2cm芯片加入乙腈水溶液(1:1)中的极性至非极性模型化合物的溶液。在100μm宽和40μm深的微通道中,通过添加疏水性溶剂作为诱导剂,将样品溶液有效地分离成两个不混溶的相。在样品溶液中存在的分析物在相分离时迁移到它们自身的有利相。优化后,容易且有效地实现提取和分馏。通过调节样品溶液的pH,可以影响具有pH依赖性分配的分析物的行为。用于中药(TCM)的Scutellaria baicalensis萃取物,成功地分离在糖酮和糖苷中。在该微观系统中,样品和溶剂消耗降低到微升,而样品预处理所需的时间少于一分钟。另外,提取效率可达98.8%,避免乳液形成。

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