Faculty of Physics and Center for Nanoscience, Ludwig Maximilian University, Munich, Germany.
Max Planck Institute of Biochemistry, Martinsried, Germany.
Nat Methods. 2019 Nov;16(11):1101-1104. doi: 10.1038/s41592-019-0584-7. Epub 2019 Oct 7.
DNA points accumulation in nanoscale topography (DNA-PAINT) is a relatively easy-to-implement super-resolution technique. However, image acquisition is slow compared to most other approaches. Here, we overcome this limitation by designing optimized DNA sequences and buffer conditions. We demonstrate our approach in vitro with DNA origami and in situ using cell samples, and achieve an order of magnitude faster imaging speeds without compromising image quality or spatial resolution. This improvement now makes DNA-PAINT applicable to high-throughput studies.
DNA 点积累纳米形貌(DNA-PAINT)是一种相对容易实现的超分辨率技术。然而,与大多数其他方法相比,图像采集速度较慢。在这里,我们通过设计优化的 DNA 序列和缓冲条件来克服这一限制。我们在体外使用 DNA 折纸和在体内使用细胞样本证明了我们的方法,并实现了快一个数量级的成像速度,而不会牺牲图像质量或空间分辨率。这种改进使得 DNA-PAINT 现在适用于高通量研究。