Related Experiment Video
Updated: May 19, 2026

Quantification of Endothelial Fatty Acid Uptake using Fluorescent Fatty Acid Analogs
Published on: August 15, 2025
Real-time noninvasive imaging of fatty acid uptake in vivo
Amy H Henkin1, Allison S Cohen, Elena A Dubikovskaya
1Departments of Nutritional Science and Toxicology, University of California Berkeley, Berkeley, California 94720, United States.
Abstract:
Detection and quantification of fatty acid fluxes in animal model systems following physiological, pathological, or pharmacological challenges is key to our understanding of complex metabolic networks as these macronutrients also activate transcription factors and modulate signaling cascades including insulin sensitivity. To enable noninvasive, real-time, spatiotemporal quantitative imaging of fatty acid fluxes in animals, we created a bioactivatable molecular imaging probe based on long-chain fatty acids conjugated to a reporter molecule (luciferin). We show that this probe faithfully recapitulates cellular fatty acid uptake and can be used in animal systems as a valuable tool to localize and quantitate in real time lipid fluxes such as intestinal fatty acid absorption and brown adipose tissue activation. This imaging approach should further our understanding of basic metabolic processes and pathological alterations in multiple disease models.

