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Multiplexed 3D super-resolution imaging of whole cells using spinning disk confocal microscopy and DNA-PAINT

机译:使用旋转盘共聚焦显微镜和DNA-PAINT对全细胞进行3D超分辨率成像

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Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, but complex hardware is required to perform SMLM in thick samples. Here, we combine 3D DNA points accumulation for imaging in nanoscale topography (DNA-PAINT) with spinning disk confocal (SDC) hardware to overcome this limitation. We assay our achievable resolution with two- and three-dimensional DNA origami structures and demonstrate the general applicability by imaging a large variety of cellular targets including proteins, DNA and RNA deep in cells. We achieve multiplexed 3D super-resolution imaging at sample depths up to ~10?μm with up to 20?nm planar and 80?nm axial resolution, now enabling DNA-based super-resolution microscopy in whole cells using standard instrumentation.
机译:单分子定位显微镜(SMLM)可以可视化纳米级的生物靶标,但是需要复杂的硬件才能在厚样品中执行SMLM。在这里,我们将3D DNA点累加与旋转盘共聚焦(SDC)硬件相结合,用于纳米级地形(DNA-PAINT)中的成像,以克服此限制。我们用二维和三维DNA折纸结构分析了我们可以实现的分辨率,并通过对细胞深处的各种细胞靶标(包括蛋白质,DNA和RNA)进行成像来证明其普遍适用性。我们实现了高达10?μm的样品深度,高达20?nm的平面分辨率和80?nm的轴向分辨率的多路3D超分辨率成像,现在可以使用标准仪器在整个细胞中进行基于DNA的超分辨率显微镜检查。

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