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基于线性甘油三酯的氟表面活性剂在基于液滴微流控的生化分析中具有很大的潜力。

Linear triglycerol-based fluorosurfactants show high potential for droplet-microfluidics-based biochemical assays.

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

Soft Matter. 2021 Aug 11;17(31):7260-7267. doi: 10.1039/d1sm00890k.

Abstract

Fluorosurfactants have expanded the landscape of high-value biochemical assays in microfluidic droplets, but little is known about how the spatial geometries and polarity of the head group contribute to the performance of fluorosurfactants. To decouple this, we design, synthesize, and characterize two linear and two dendritic glycerol- or tris-based surfactants with a common perfluoropolyether tail. To reveal the influence of spatial geometry, we choose inter-droplet cargo transport as a stringent test case. Using surfactants with linear di- and triglycerol, we show that the inter-droplet cargo transport is minimal compared with their dendritic counterparts. When we encapsulated a less-leaky sodium fluorescent dye into the droplets, quantitatively, we find that the mean fluorescence intensity of the PFPE-dTG stabilized PBS-only droplets after 72 h was ∼3 times that of the signal detected in PBS-only droplets stabilized by PFPE-lTG. We also demonstrate that the post-functionalization of PFPE-lTG having a linear geometry and four hydroxy groups enables the 'from-Droplet' fishing of the biotin-streptavidin protein complex without the trade-off between fishing efficiency and droplet stability. Thus, our approach to design user-friendly surfactants reveals the aspects of spatial geometry and facile tunability of the polar head groups that have not been captured or exploited before.

摘要

氟表面活性剂扩展了微流控液滴中高价值生化分析的范围,但人们对头基的空间几何形状和极性如何影响氟表面活性剂的性能知之甚少。为了分离这一点,我们设计、合成和表征了两种具有共同全氟聚醚尾的线性和两种树状甘油基或三基表面活性剂。为了揭示空间几何形状的影响,我们选择液滴间货物运输作为严格的测试案例。使用具有线性二甘醇和三甘醇的表面活性剂,我们表明与树状表面活性剂相比,液滴间货物运输最小。当我们将一种泄漏较少的钠离子荧光染料封装在液滴中时,定量地,我们发现 PFPE-dTG 稳定的 PBS 仅液滴的平均荧光强度在 72 小时后约为 PFPE-lTG 稳定的 PBS 仅液滴中检测到的信号的 3 倍。我们还证明,具有线性几何形状和四个羟基的 PFPE-lTG 的后功能化能够实现“从液滴中钓鱼”生物素-链霉亲和素蛋白复合物,而不会在钓鱼效率和液滴稳定性之间进行权衡。因此,我们设计用户友好型表面活性剂的方法揭示了以前未被捕获或利用的空间几何形状和极性头基的易调节性方面。

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