4.8 Article

Fast and multiplexed superresolution imaging with DNA-PAINT-ERS

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41467-020-18181-6

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资金

  1. OHSU Knight Cancer Institute
  2. Damon Runyon Cancer Research Foundation
  3. M. J. Murdock Charitable Trust
  4. Prospect Creek Foundation
  5. Cancer Systems Biology Consortium from the National Cancer Institute (CSBC) [U54 CA209988]
  6. National Institute of General Medical Sciences [R01 GM132322]
  7. Caner Early Detection Advanced Research (CEDAR) Center of the OHSU Knight Cancer Institute

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DNA points accumulation for imaging in nanoscale topography (DNA-PAINT) facilitates multiplexing in superresolution microscopy but is practically limited by slow imaging speed. To address this issue, we propose the additions of ethylene carbonate (EC) to the imaging buffer, sequence repeats to the docking strand, and a spacer between the docking strand and the affinity agent. Collectively termed DNA-PAINT-ERS (E = EC, R = Repeating sequence, and S = Spacer), these strategies can be easily integrated into current DNA-PAINT workflows for both accelerated imaging speed and improved image quality through optimized DNA hybridization kinetics and efficiency. We demonstrate the general applicability of DNA-PAINT-ERS for fast, multiplexed superresolution imaging using previously validated oligonucleotide constructs with slight modifications.

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