Related Experiment Video
Updated: Aug 21, 2026

Whole-cell Super-Resolution Imaging via DNA-PAINT on a Spinning Disk Confocal with Optical Photon Reassignment
Published on: January 6, 2026
Spectroscopic DNA-PAINT for Simultaneous Multiplexed Super-Resolution Microscopy
Md Abul Shahid1, Shohag Chandra Das1, Kripa Patel1
1Molecular Analytics and Photonics (MAP) Lab, Department of Textile Engineering, Chemistry and Science, North Carolina State University, Raleigh, North Carolina27606, United States.
None:
Simultaneous multiplexed super-resolution imaging remains a central challenge in single-molecule localization microscopy (SMLM), due to the limited number of spectrally distinguishable fluorophores and the tradeoff between spatial localization and spectral uncertainties. Here, we introduce spectroscopic DNA-PAINT (sDNA-PAINT), a framework that integrates DNA-PAINT with spectroscopic SMLM (sSMLM) to enable simultaneous multiplexed imaging with high spatial and spectral fidelity. Using DNA origami nanorulers, in vitro and fixed-cell imaging, we show that sDNA-PAINT conditions significantly reduce spectral uncertainty and enhance photon budgets compared to conventional glass and antibody-conjugated conditions in sSMLM imaging. Across representative dyes from three fluorophore families (rhodamine, cyanine, and oxazine), narrow spectral centroid distributions are observed to enable reliable statistical discrimination at the single-molecule level, even for dyes with heavily overlapping ensemble spectra. In four-color subcellular imaging, sDNA-PAINT achieves accurate spatial reconstruction and high classification accuracy within a single acquisition. sDNA-PAINT provides a pathway toward high-fidelity simultaneous multiplexed super-resolution interaction imaging.

