Published November 23, 2020 | Version v1

Self-Regeneration and Self-Healing in DNA Origami Nanostructures

  • 1. Department of Chemistry and Center for NanoScience Ludwig-Maximilians-Universität München Butenandtstr. 5-13, 81377 München, Germany

Description

DNA nanotechnology and advances in the DNA origami technique have enabled facile design and synthesis of complex and
functional nanostructures. Molecular devices are, however, prone to rapid functional and structural degradation due to the high proportion of surface atoms at the nanoscale and due to complex working environments. Besides stabilizing mechanisms, approaches for the self-repair of functional molecular devices are desirable. Here we exploit the self-assembly and reconfigurability of DNA origami nanostructures to induce the self-repair of defects of photoinduced and enzymatic damage. We provide examples of repair in DNA nanostructures showing the difference between unspecific self-regeneration and damage-specific self-healing mechanisms. Using DNA origami nanorulers studied by atomic force and superresolution DNA PAINT microscopy, quantitative preservation of fluorescence properties is demonstrated with the direct potential for improving nanoscale calibration samples. Here we demonstrate the data on which our findings based on. 

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Additional details

Funding

European Commission
ChipScope - Overcoming the Limits of Diffraction with Superresolution Lighting on a Chip 737089