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Dendronized fluorosurfactant for highly stable water-in-fluorinated oil emulsions with minimal inter-droplet transfer of small molecules

机译:树枝状含氟表面活性剂用于高度稳定的氟化油包水型乳化液使小分子之间的液滴间转移最少

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摘要

Fluorosurfactant-stabilized microfluidic droplets are widely used as pico- to nanoliter volume reactors in chemistry and biology. However, current surfactants cannot completely prevent inter-droplet transfer of small organic molecules encapsulated or produced inside the droplets. In addition, the microdroplets typically coalesce at temperatures higher than 80 °C. Therefore, the use of droplet-based platforms for ultrahigh-throughput combination drug screening and polymerase chain reaction (PCR)-based rare mutation detection has been limited. Here, we provide insights into designing surfactants that form robust microdroplets with improved stability and resistance to inter-droplet transfer. We used a panel of dendritic oligo-glycerol-based surfactants to demonstrate that a high degree of inter- and intramolecular hydrogen bonding, as well as the dendritic architecture, contribute to high droplet stability in PCR thermal cycling and minimize inter-droplet transfer of the water-soluble fluorescent dye sodium fluorescein salt and the drug doxycycline.
机译:含氟表面活性剂稳定的微流体小滴在化学和生物学中广泛用作皮纳至纳升的体积反应器。然而,目前的表面活性剂不能完全防止液滴内包裹或产生的有机小分子在液滴间的转移。另外,微滴通常在高于80°C的温度下聚结。因此,基于液滴的平台用于超高通量组合药物筛选和基于聚合酶链反应(PCR)的罕见突变检测的使用受到限制。在这里,我们提供了有关设计表面活性剂的见解,这些表面活性剂可形成具有改善的稳定性和抗液滴间转移能力的坚固的微滴。我们使用了一组基于树枝状低聚甘油的表面活性剂来证明,高度的分子间和分子内氢键以及树枝状结构有助于PCR热循环中的高液滴稳定性,并最大程度地降低了液滴之间的液滴间转移水溶性荧光染料荧光素钠盐和药物多西环素。

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