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Label-free metabolic imaging by mid-infrared optoacoustic microscopy in living cells
Author(s) -
Miguel A. Pleitez,
Asrar Ali Khan,
Alice Soldà,
Andriy Chmyrov,
Josefine Reber,
Francesca Gasparin,
Markus Seeger,
Benedikt Schätz,
Stephan Herzig,
Marcel Scheideler,
Vasilis Ntziachristos
Publication year - 2019
Publication title -
nature biotechnology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 15.358
H-Index - 445
eISSN - 1546-1696
pISSN - 1087-0156
DOI - 10.1038/s41587-019-0359-9
Subject(s) - microscopy , infrared , absorption (acoustics) , infrared microscopy , materials science , biophysics , near infrared spectroscopy , chemistry , optics , biology , physics , composite material
We develop mid-infrared optoacoustic microscopy (MiROM) for label-free, bond-selective, live-cell metabolic imaging, enabling spatiotemporal monitoring of carbohydrates, lipids and proteins in cells and tissues. Using acoustic detection of optical absorption, MiROM converts mid-infrared sensing into a positive-contrast imaging modality with negligible photodamage and high sensitivity. We use MiROM to observe changes in intrinsic carbohydrate distribution from a diffusive spatial pattern to tight co-localization with lipid droplets during adipogenesis.

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