Ultrasmall volume molecular isothermal amplification in microfluidic chip with advanced surface processing

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Abstract

In this paper, we developed a metal micro-fluidic chip with advanced surface processing for ultra-small volume molecular isothermal amplification. This method takes advantages of the nucleic acid amplification with good stability and consistency, high sensitivity about 31 genomic DNA copies and bacteria specific gene identification. Based on the advanced surface processing, the bioreaction assays of nucleic acid amplification was dropped about 392nl in volume. A high numerical aperture confocal optical detection system was advanced to sensitively monitor the DNA amplification with low noise and high power collecting fluorescence near to the optical diffraction limit. A speedy nucleic acid isothermal amplification was performed in the ultra-small volume microfluidic chip, where the time at the inflexions of second derivative to DNA exponential amplified curves was brought forward and the sensitivity was improved about 65 folds to that of in current 25μl Ep-tube amplified reaction, which indicates a promising clinic molecular diagnostics in the droplet amplification.

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Huang, G., Ma, L., Yang, X., & Yang, X. (2011). Ultrasmall volume molecular isothermal amplification in microfluidic chip with advanced surface processing. In Journal of Physics: Conference Series (Vol. 277). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/277/1/012013

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