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Ultrarapid generation of femtoliter microfluidic droplets for single-molecule-counting immunoassays

机译:飞升的飞升微流控滴的单分子计数免疫分析

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We report a microfluidic droplet-based approach enabling the measurement of chemical reactions of individual enzyme molecules and its application to a single-molecule-counting immunoassay. A microfluidic device is used to generate and manipulate <10 fL droplets at rates of up to 1.3 × 10~6 per second, about 2 orders of magnitude faster than has previously been reported. The femtodroplets produced with this device can be used to encapsulate single biomolecular complexes tagged with a reporter enzyme; their small volume enables the fluorescent product of a single enzyme molecule to be detected within 10 min of on-chip incubation. Our prototype system is validated by detection of a biomarker for prostate cancer in buffer, down to a concentration of 46 fM. This work demonstrates a highly flexible and sensitive diagnostic platform that exploits extremely high-speed generation of monodisperse femtoliter droplets for the counting of individual analyte molecules.
机译:我们报告了一种基于微流体液滴的方法,该方法能够测量单个酶分子的化学反应并将其应用于单分子计数免疫测定。使用微流体装置以每秒高达1.3×10〜6的速率生成和处理<10 fL液滴,比以前报道的速度快约2个数量级。用该装置产生的飞沫可用于封装带有报告酶的单个生物分子复合物。它们的体积小,可以在芯片孵育10分钟内检测到单个酶分子的荧光产物。我们的原型系统通过在浓度低至46 fM的缓冲液中检测前列腺癌的生物标记物而得到验证。这项工作展示了高度灵活和灵敏的诊断平台,该平台利用超高速生成的单分散飞升液滴来计数单个分析物分子。

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