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声学悬浮液滴中的亲和双相分配

Affinity two-phase partitioning in acoustically levitated drops.

作者信息

Santesson Sabina, Barinaga-Rementeria Ramírez Irene, Viberg Peter, Jergil Bengt, Nilsson Staffan

机构信息

Technical Analytical Chemistry and Biochemistry, Center for Chemistry and Chemical Engineering, Lund University, PO Box 124, SE-221 00 Lund, Sweden.

出版信息

Anal Chem. 2004 Jan 15;76(2):303-8. doi: 10.1021/ac034951h.

Abstract

Miniaturized (<1 microL) biospecific affinity two-phase partitioning in an acoustically levitated drop is described. Miniaturization commonly gives unfavorable surface/volume ratios, but in the levitation approach adsorption problems are minimized since the only surrounding wall is the liquid/air interface of the drop. Biotinylated liposomes were partitioned in aqueous poly(ethylene glycol)/dextran two-phase drops with NeutrAvidin-dextran as the affinity ligand. A two-phase drop was trapped and manipulated in a node of a standing ultrasonic wave. Alternatively, a two-phase system was formed by levitation and evaporation of a polymer one-phase drop. Phase mixing was achieved by adjusting the ultrasonic field and phase separation by readjusting the field. NeutrAvidin-dextran brought about the redistribution of biotinylated liposomes from the poly(ethylene glycol)-rich phase into the dextran-rich phase. Thus, an entire affinity two-phase separation procedure, including mixing of the phases and incubation to allow affinity interactions to develop under constant volume, followed by phase separation under controlled evaporation, can be performed in a single levitated drop. This miniaturized technique would allow the separation of biologically active membranes or organelles from individual cells for analysis.

摘要

本文描述了在声悬浮液滴中进行的小型化(<1微升)生物特异性亲和两相分配。小型化通常会导致不利的表面/体积比,但在悬浮方法中,由于唯一的周围壁是液滴的液/气界面,吸附问题被最小化。用中性抗生物素蛋白-葡聚糖作为亲和配体,将生物素化脂质体在聚乙二醇/葡聚糖水相两相液滴中进行分配。一个两相液滴被困在驻波的节点中并进行操控。或者,通过聚合物单相液滴的悬浮和蒸发形成两相系统。通过调节超声场实现相混合,通过重新调节场实现相分离。中性抗生物素蛋白-葡聚糖使生物素化脂质体从富含聚乙二醇的相重新分布到富含葡聚糖的相。因此,整个亲和两相分离过程,包括相混合和孵育以在恒定体积下进行亲和相互作用,然后在控制蒸发下进行相分离,可以在单个悬浮液滴中完成。这种小型化技术将允许从单个细胞中分离生物活性膜或细胞器进行分析。

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