Modeling a DNA-Origami Nanoplatform for Super-Resolution Luminescent Imaging
摘要
Abstract
The DNA origami method enables the creation of nanostructures with nanometer-scale precision, surpassing the diffraction limit of light, making it an effective tool for super-resolution microscopy. This work examines the application of DNA origami in nanoscopy and proposes a model nanostructure with positions for anchoring fluorescent emitters. It is shown that the structure can be used as a calibration nanoruler for STED, MINFLUX, STORM, PALM, cryogenic ZPL nanoscopy, and luminescent imaging based on quantum dots, as well as a platform for DNA-PAINT. The possibility of adapting the design to various super-resolution methods with minimal modifications is demonstrated.