Imaging bioluminescence by detecting localized haemodynamic contrast from photosensitized vasculature.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38730257.
- Also identified by DOI 10.1038/s41551-024-01210-w and PMC identifier 12121613.
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Abstract
Bioluminescent probes are widely used to monitor biomedically relevant processes and cellular targets in living animals. However, the absorption and scattering of visible light by tissue drastically limit the depth and resolution of the detection of luminescence. Here we show that bioluminescent sources can be detected with magnetic resonance imaging by leveraging the light-mediated activation of vascular cells expressing a photosensitive bacterial enzyme that causes the conversion of bioluminescent emission into local changes in haemodynamic contrast. In the brains of rats with photosensitized vasculature, we used magnetic resonance imaging to volumetrically map bioluminescent xenografts and cell populations virally transduced to express luciferase. Detecting bioluminescence-induced haemodynamic signals from photosensitized vasculature will extend the applications of bioluminescent probes.
Medical subject headings
- Hemodynamics
- Magnetic Resonance Imaging
- Luminescent Measurements