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基于载体的液滴微流控中的两相化学传感

Ionophore-Based Biphasic Chemical Sensing in Droplet Microfluidics.

机构信息

Department of Chemistry, University of Michigan, 930 N University, Ann Arbor, MI, 48109, USA.

Department of Biophysics, University of Michigan, 930 N University, Ann Arbor, MI, 48109, USA.

出版信息

Angew Chem Int Ed Engl. 2019 Jun 11;58(24):8092-8096. doi: 10.1002/anie.201902960. Epub 2019 May 8.

Abstract

Droplet microfluidics is an enabling platform for high-throughput screens, single-cell studies, low-volume chemical diagnostics, and microscale material syntheses. Analytical methods for real-time and in situ detection of chemicals in the droplets will benefit these applications, but they remain limited. Reported herein is a novel heterogeneous chemical sensing strategy based on functionalization of the oil phase with rationally combined sensing reagents. Sub-nanoliter oil segments containing pH-sensitive fluorophores, ionophores, and ion-exchangers enable highly selective and rapid fluorescence detection of physiologically important electrolytes (K , Na , and Cl ) and polyions (protamine) in sub-nanoliter aqueous droplets. Electrolyte analysis in whole blood is demonstrated without suffering from optical interference from the sample matrix. Moreover, an oil phase doped with an aza-BODIPY dye allows indication of H O in the aqueous droplets, exemplifying sensing of targets beyond ionic species.

摘要

液滴微流控是一种可实现高通量筛选、单细胞研究、小体积化学诊断和微尺度材料合成的平台。针对液滴中化学物质的实时和原位检测的分析方法将有益于这些应用,但它们仍然有限。本文报道了一种新的基于油相的功能化的异质化学传感策略,该策略使用合理组合的传感试剂。包含 pH 敏感荧光团、离子载体和离子交换剂的亚纳升级油段可在亚纳升级水液滴中对生理上重要的电解质(K+、Na+和 Cl-)和聚离子(鱼精蛋白)进行高度选择性和快速荧光检测。在不受到样品基质光学干扰的情况下,在全血中进行了电解质分析。此外,掺杂有氮杂 BODIPY 染料的油相可指示水液滴中的 H2O,这证明了对除离子物种之外的目标的传感。

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