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Super-resolution label-free volumetric vibrational imaging

Author

Listed:
  • Chenxi Qian

    (California Institute of Technology)

  • Kun Miao

    (California Institute of Technology)

  • Li-En Lin

    (California Institute of Technology)

  • Xinhong Chen

    (California Institute of Technology)

  • Jiajun Du

    (California Institute of Technology)

  • Lu Wei

    (California Institute of Technology)

Abstract

Innovations in high-resolution optical imaging have allowed visualization of nanoscale biological structures and connections. However, super-resolution fluorescence techniques, including both optics-oriented and sample-expansion based, are limited in quantification and throughput especially in tissues from photobleaching or quenching of the fluorophores, and low-efficiency or non-uniform delivery of the probes. Here, we report a general sample-expansion vibrational imaging strategy, termed VISTA, for scalable label-free high-resolution interrogations of protein-rich biological structures with resolution down to 78 nm. VISTA achieves decent three-dimensional image quality through optimal retention of endogenous proteins, isotropic sample expansion, and deprivation of scattering lipids. Free from probe-labeling associated issues, VISTA offers unbiased and high-throughput tissue investigations. With correlative VISTA and immunofluorescence, we further validated the imaging specificity of VISTA and trained an image-segmentation model for label-free multi-component and volumetric prediction of nucleus, blood vessels, neuronal cells and dendrites in complex mouse brain tissues. VISTA could hence open new avenues for versatile biomedical studies.

Suggested Citation

  • Chenxi Qian & Kun Miao & Li-En Lin & Xinhong Chen & Jiajun Du & Lu Wei, 2021. "Super-resolution label-free volumetric vibrational imaging," Nature Communications, Nature, vol. 12(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-23951-x
    DOI: 10.1038/s41467-021-23951-x
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