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Circle-to-circle amplification on a digital microfluidic chip for amplified single molecule detection

机译:数字微流控芯片上的圆到圆扩增,用于扩增的单分子检测

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We demonstrate a novel digital microfluidic nucleic acid amplification concept which is based on padlock probe mediated DNA detection and isothermal circle-to-circle amplification (C2CA). This assay platform combines two digital approaches. First, digital microfluidic manipulation of droplets which serve as micro-reaction chambers and shuttling magnetic particles between these droplets facilitates the integration of complex solid phase multistep assays. We demonstrate an optimized novel particle extraction and transfer protocol for superparamagnetic particles on a digital microfluidic chip that allows for nearly 100% extraction efficiencies securing high assay performance. Second, the compartmentalization required for digital single molecule detection is solved by simple molecular biological means, circumventing the need for complex microfabrication procedures necessary for most, if not all, other digital nucleic acid detection methods. For that purpose, padlock probes are circularized in a strictly target dependent ligation reaction and amplified through two rounds of rolling circle amplification, including an intermediate digestion step. The reaction results in hundreds of 500 nm sized individually countable DNA nanospheres per detected target molecule. We demonstrate that integrated miniaturized digital microfluidic C2CA results in equally high numbers of G2CA products μL~(-1) as off-chip tube control experiments indicating high assay performance without signal loss. As low as 1 aM synthetic Pseudomonas aeruginosa DNA was detected with a linear dynamic range over 4 orders of magnitude up to 10 fM proving excellent suitability for infectious disease diagnostics.
机译:我们展示了一种新型的数字微流体核酸扩增概念,该概念基于挂锁探针介导的DNA检测和等温环到环扩增(C2CA)。该测定平台结合了两种数字方法。首先,对用作微反应室的液滴进行数字微流控,并在这些液滴之间穿梭磁性颗粒,有助于整合复杂的固相多步测定。我们在数字微流控芯片上展示了一种针对超顺磁性粒子的优化的新型粒子提取和传输协议,该协议允许近100%的提取效率,确保了较高的测定性能。其次,通过简单的分子生物学方法解决了数字单分子检测所需的分隔问题,从而避免了对大多数(如果不是全部)其他数字核酸检测方法所必需的复杂的微细加工程序的需求。为此,在严格的靶标依赖性连接反应中将挂锁探针环化,并通过两轮滚环扩增(包括中间消化步骤)进行扩增。该反应导致每个检测到的靶分子形成数百个500 nm大小的可单独计数的DNA纳米球。我们证明了集成的微型数字微流控C2CA导致G2CA产物μL〜(-1)的数量相同,这与芯片外管控制实验表明没有信号损失的高检测性能有关。可以检测到低至1 aM的合成铜绿假单胞菌DNA,线性动态范围超过4个数量级,最高可达10 fM,证明对传染病诊断具有极好的适用性。

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