4.8 Article

Deep and high-resolution three-dimensional tracking of single particles using nonlinear and multiplexed illumination

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NATURE COMMUNICATIONS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms8874

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资金

  1. Texas 4000
  2. National Institutes of Health [EB011556, NS078791, NS082518, CA193038]
  3. American Heart Association [14EIA8970041]

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Molecular trafficking within cells, tissues and engineered three-dimensional multicellular models is critical to the understanding of the development and treatment of various diseases including cancer. However, current tracking methods are either confined to two dimensions or limited to an interrogation depth of similar to 15 mu m. Here we present a three-dimensional tracking method capable of quantifying rapid molecular transport dynamics in highly scattering environments at depths up to 200 mu m. The system has a response time of 1ms with a temporal resolution down to 50 mu s in high signal-to-noise conditions, and a spatial localization precision as good as 35 nm. Built on spatiotemporally multiplexed two-photon excitation, this approach requires only one detector for three-dimensional particle tracking and allows for two-photon, multicolour imaging. Here we demonstrate three-dimensional tracking of epidermal growth factor receptor complexes at a depth of similar to 100 mu m in tumour spheroids.

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