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首页> 外文期刊>Lab on a chip >Modulation-frequency encoded multi-color fluorescent DNA analysis in an optofluidic chip
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Modulation-frequency encoded multi-color fluorescent DNA analysis in an optofluidic chip

机译:光电芯片中的调制频率编码的多色荧光DNA分析

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We introduce a principle of parallel optical processing to an optofluidic lab-on-a-chip. During electrophoretic separation, the ultra-low limit of detection achieved with our set-up allows us to record fluorescence from covalently end-labeled DNA molecules. Different sets of exclusively color-labeled DNA fragments-otherwise rendered indistinguishable by spatio-temporal coincidence-are traced back to their origin by modulation-frequency-encoded multi-wavelength laser excitation, fluorescence detection with a single ultrasensitive, albeit color-blind photomultiplier, and Fourier analysis decoding. As a proof of principle, fragments obtained by multiplex ligation-dependent probe amplification from independent human genomic segments, associated with genetic predispositions to breast cancer and anemia, are simultaneously analyzed.
机译:我们将并行光学处理的原理引入到光流芯片实验室中。在电泳分离过程中,通过我们的设置实现的超低检测限使我们能够记录共价末端标记的DNA分子的荧光。通过调制频率编码的多波长激光激发,使用单个超灵敏的色盲光电倍增管进行荧光检测,可以将不同组的专门用颜色标记的DNA片段集(否则通过时空重合无法区分)追溯到其起源。和傅立叶分析解码。作为原理的证明,同时分析了通过多重连接依赖性探针扩增从独立的人类基因组片段中获得的片段,这些片段与乳腺癌和贫血的遗传易感性相关。

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