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An integrated optics microfluidic device for detecting single DNA molecules

机译:用于检测单个DNA分子的集成光学微流体装置

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A fluorescence-based integrated optics microfluidic device is presented, capable of detecting single DNA molecules in a high throughput and reproducible manner. The device integrates microfluidics for DNA stretching with two optical elements for single molecule detection (SMD): a plano-aspheric refractive lens for fluorescence excitation (illuminator) and a solid parabolic reflective mirror for fluorescence collection (collector). Although miniaturized in size, both optical components were produced and assembled onto the microfluidic device by readily manufacturable fabrication techniques. The optical resolution of the device is determined by the small and relatively low numerical aperture (NA) illuminator lens (0.10 effective NA, 4.0 mm diameter) that delivers excitation light to a diffraction limited 2.0 mu m diameter spot at full width half maximum within the microfluidic channel. The collector (0.82 annular NA, 15 mm diameter) reflects the fluorescence over a large collection angle, representing 71% of a hemisphere, toward a single photon counting module in an infinity-corrected scheme. As a proof-of-principle experiment for this simple integrated device, individual intercalated lambda-phage DNA molecules (48.5 kb) were stretched in a mixed elongational-shear microflow, detected, and sized with a fluorescence signal to noise ratio of 9.9 +/- 1.0. We have demonstrated that SMD does not require traditional high numerical aperture objective lenses and sub-micron positioning systems conventionally used in many applications. Rather, standard manufacturing processes can be combined in a novel way that promises greater accessibility and affordability for microfluidic-based single molecule applications.
机译:提出了一种基于荧光的集成光学微流体装置,该装置能够以高通量和可再现的方式检测单个DNA分子。该设备将用于DNA拉伸的微流体与两个用于单分子检测(SMD)的光学元件集成在一起:用于荧光激发的平非球面折射透镜(照明器)和用于荧光收集的固体抛物面反射镜(收集器)。尽管尺寸最小化,但是通过易于制造的制造技术来生产两种光学部件并将其组装到微流体装置上。装置的光学分辨率取决于较小的数值孔径(NA)照明透镜(有效NA为0.10,直径为4.0 mm),该透镜将激发光传递到衍射限制的直径为2.0μm的光斑,该光斑在光斑内的最大宽度为一半最大值。微流体通道。该收集器(0.82环形NA,直径15 mm)在无穷大校正方案中朝单个光子计数模块反射大面积收集角度(代表半球的71%)上的荧光。作为此简单集成设备的原理实验,将单个插入的λ噬菌体DNA分子(48.5 kb)在混合的伸长剪切微流中拉伸,检测并确定大小,荧光信噪比为9.9 + / -1.0。我们已经证明,SMD不需要在许多应用中常规使用的传统高数值孔径物镜和亚微米定位系统。而是,可以以新颖的方式组合标准制造工艺,从而为基于微流体的单分子应用带来更大的可及性和可负担性。

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