| Literature DB >> 29967322 |
Ashkan Ojaghi1, Meredith E Fay1,2, Wilbur A Lam1,2, Francisco E Robles3.
Abstract
Ultraviolet (UV) spectroscopy is a powerful tool for quantitative (bio)chemical analysis, but its application to molecular imaging and microscopy has been limited. Here we introduce ultraviolet hyperspectral interferometric (UHI) microscopy, which leverages coherent detection of optical fields to overcome significant challenges associated with UV spectroscopy when applied to molecular imaging. We demonstrate that this method enables quantitative spectral analysis of important endogenous biomolecules with subcellular spatial resolution and sensitivity to nanometer-scaled structures for label-free molecular imaging of live cells.Entities:
Year: 2018 PMID: 29967322 PMCID: PMC6028425 DOI: 10.1038/s41598-018-28208-0
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1UHI microscopy of a live RBC. (a) Topological map of estimated thickness for an isolated human RBC (axes in μm). (b) Refractive index for RBC (black line) within one standard deviation range (gray area) and 2 g/dL Hb solution (dashed red line). (c) Real refractive index increment (B) spectra for the imaged RBC and Hb solution. (d) Example amplitude map of an imaged RBC before and after digital refocusing at 390 nm. Note that digital refocusing is applied to images at all wavelengths. (e) Attenuation coefficient spectra for RBC (black line) within its standard deviation range (gray area) and Hb solution (dashed red line). (f) Molar extinction coefficient spectra for the RBC and Hb solution.
Figure 2UHI microscopy of a live neutrophil. (a) Optical density (OD) map of an unstained, isolated human neutrophil at 260 nm wavelength with inset depicting a bright-field microscopy image of the same neutrophil after Giemsa staining. (b) Nucleic acid mass map of a neutrophil with an average mass of 23.81 fg within the cell. (c) Protein mass map of a neutrophil with an average mass of 273.65 fg within the cell. (d) OPL map of a neutrophil at 260 nm. (e) OPL spectra averaged over cell nucleus, nucleus periphery, and cytoplasm. (f) Optical density spectra extracted from cell nucleus, nucleus periphery, and cytoplasm. (g) Phasor space representation of the attenuation spectra obtained from the imaged neutrophil. Dotted black lines outline the unit circle and universal semicircles. (h) Molecular image obtained by color coding the phasor space clusters based on the color bar shown in inset of (g).