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DOI: 10.1021/nl1040836
¤ OpenAccess: Green
This work has “Green” OA status. This means it may cost money to access on the publisher landing page, but there is a free copy in an OA repository.

Stability of DNA Origami Nanoarrays in Cell Lysate

Qian Mei,Xixi Wei,Fengyu Su,Yan Liu,Cody Youngbull,Roger H. Johnson,Stuart Lindsay,Deirdre R. Meldrum

DNA origami
Lysis
Nanotechnology
2011
Scaffolded DNA origami, a method to create self-assembled nanostructures with spatially addressable features, has recently been used to develop water-soluble molecular chips for label-free RNA detection, platforms for deterministic protein positioning, and single molecule reaction observatories. These applications highlight the possibility of exploiting the unique properties and biocompatibility of DNA nanostructures in live, cellular systems. Herein, we assembled several DNA origami nanostructures of differing shape, size and probes, and investigated their interaction with lysate obtained from various normal and cancerous cell lines. We separated and analyzed the origami-lysate mixtures using agarose gel electrophoresis and recovered the DNA structures for functional assay and subsequent microscopic examination. Our results demonstrate that DNA origami nanostructures are stable in cell lysate and can be easily separated from lysate mixtures, in contrast to natural, single- and double-stranded DNA. Atomic force microscope (AFM) and transmission electron microscope (TEM) images show that the DNA origami structures are fully intact after separation from cell lysates and hybridize to their targets, verifying the superior structural integrity and functionality of self-assembled DNA origami nanostructures relative to conventional oligonucleotides. The stability and functionality of DNA origami structures in cell lysate validate their use for biological applications, for example, as programmable molecular rafts or disease detection platforms.
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    Stability of DNA Origami Nanoarrays in Cell Lysate” is a paper by Qian Mei Xixi Wei Fengyu Su Yan Liu Cody Youngbull Roger H. Johnson Stuart Lindsay Deirdre R. Meldrum published in 2011. It has an Open Access status of “green”. You can read and download a PDF Full Text of this paper here.