Abstract
Current multiplexed analysis methods suffer from either slow reaction kinetics (planar arrays) or complicated encoding/decoding procedures (suspension arrays). We report herein a multiplexed DNA detection strategy that addresses these issues, based on positional encoding/decoding with self-assembled DNA nanostructures. The strategy enables the acquisition of high-resolution, consistent, and quantitative assay results in a single round of a transmission electron microscopy imaging operation. Applications in polymerase chain reaction-free settings and assays of other structurally distinct targets can be anticipated through the implementation of the strategy with miniaturized femtoliter/attoliter dispensing technology and readily accessible DNA conjugate structures.
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CITATION STYLE
Sun, S., Yao, H., Zhang, F., & Zhu, J. (2015). Multiplexed DNA detection based on positional encoding/decoding with self-assembled DNA nanostructures. Chemical Science, 6(2), 930–934. https://doi.org/10.1039/c4sc02696a
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