Publication | Open Access
Folding DNA into Twisted and Curved Nanoscale Shapes
1.3K
Citations
26
References
2009
Year
DnaEngineeringMechanical EngineeringOrigami MetamaterialsMolecular BiologyBiofabricationNanostructuresFoldable StructureDna NanotechnologySoft RoboticsDna ComputingBiophysicsNanoroboticsWireframe Beach BallDna ReplicationMolecular EngineeringFlexible ElectronicsMicrofabricationNatural SciencesSelf-assemblyCurved Nanoscale ShapesComplex ShapesMultiple Curved Elements
We demonstrate the ability to engineer complex shapes that twist and curve at the nanoscale from DNA. Through programmable self-assembly, strands of DNA are directed to form a custom-shaped bundle of tightly cross-linked double helices, arrayed in parallel to their helical axes. Targeted insertions and deletions of base pairs cause the DNA bundles to develop twist of either handedness or to curve. The degree of curvature could be quantitatively controlled, and a radius of curvature as tight as 6 nanometers was achieved. We also combined multiple curved elements to build several different types of intricate nanostructures, such as a wireframe beach ball or square-toothed gears.
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