Real time quantitative analysis of lipid storage and lipolysis pathways by confocal spectral imaging of intracellular micropolarity |
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Authors: | Giuseppe Maulucci Flavio Di Giacinto Claudio De Angelis Ofir Cohen Bareket Daniel Carla Ferreri Marco De Spirito Shlomo Sasson |
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Affiliation: | 1. Istituto di Fisica, Università Cattolica del Sacro Cuore, Largo Francesco Vito 1, 00168 Rome, Italy;2. Institute for Drug Research, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem 9112001, Israel;3. ISOF, Consiglio Nazionale delle Ricerche, Via P. Gobetti 101, 40129 Bologna, Italy |
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Abstract: | Organisms store fatty acids in triacylglycerols in the form of lipid droplets, or hydrolyze triacylglycerols in response to energetic demands via activation of lipolytic or storage pathways. These pathways are complex sets of sequential reactions that are finely regulated in different cell types. Here we present a high spatial and temporal resolution-based method for the quantification of the turnover of fatty acids into triglycerides in live cells without introducing sample preparation artifacts.We performed confocal spectral imaging of intracellular micropolarity in cultured insulin secreting beta cells to detect micropolarity variations as they occur in time and at different pixels of microscope images. Acquired data are then analyzed in the framework of the spectral phasors technique.The method furnishes a metabolic parameter, which quantitatively assesses fatty acids - triacylglycerols turnover and the activation of lipolysis and storage pathways. Moreover, it provides a polarity profile, which represents the contribution of hyperpolar, polar and non-polar classes of lipids. These three different classes can be visualized on the image at a submicrometer resolution, revealing the spatial localization of lipids in cells under physiological and pathological settings.This new method allows for a fine-tuned, real-time visualization of the turnover of fatty acids into triglycerides in live cells with submicrometric resolution. It also detects imbalances between lipid storage and usage, which may lead to metabolic disorders within living cells and organisms. |
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Keywords: | ACT-1 acyl transfer enzyme 1 AGPAT 1-acylglycerol-3-phosphate O-acyltransferase ATAGL adipose triglyceride lipase CARS coherent anti-Stokes Raman scattering DAG diacylglycerol DGAT diacylglycerol acyl transferase FCS fetal calf serum FFA Free Fatty acids GPAT glycerophosphate acyltransferase HP hyper-polar HSL hormone-sensitive lipase LD lipid droplets LPA lysophosphatidic acid MGL monoacylglycerol lipase NP non-polar P polar PA palmitic acid PAP phosphatidic acid phosphatase PhA phosphatidic acid SCD1 Stearoyl-CoA desaturase-1 SHG second harmonic generation SRS Stimulated Raman Scattering TAG triacylglycerols THG third harmonic generation Metabolic imaging Triglycerides Fatty acids Lipid droplets Spectral phasors Beta cells |
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