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The ability to simultaneously image multiple biomolecules in biologically relevant three-dimensional (3D) cell culture environments would contribute greatly to the understanding of complex cellular mechanisms and cell-material interactions. Here, we present a computational framework for label-free quantitative volumetric Raman imaging (qVRI). We apply qVRI to a selection of biological systems: human pluripotent stem cells with their cardiac derivatives, monocytes and monocyte-derived macrophages in conventional cell culture systems and mesenchymal stem cells inside biomimetic hydrogels that supplied a 3D cell culture environment. We demonstrate visualization and quantification of fine details in cell shape, cytoplasm, nucleus, lipid bodies and cytoskeletal structures in 3D with unprecedented biomolecular specificity for vibrational microspectroscopy.

Original publication

DOI

10.1038/ncomms14843

Type

Journal article

Journal

Nat Commun

Publication Date

22/03/2017

Volume

8

Keywords

Animals, Cell Culture Techniques, Humans, Imaging, Three-Dimensional, Induced Pluripotent Stem Cells, Lipids, Macrophages, Monocytes, Myocytes, Cardiac, Rats, Sprague-Dawley, Spectrum Analysis, Raman