Investigation of the Membrane Fluidity Regulation of Fatty Acid Intracellular Distribution by Fluorescence Lifetime Imaging of Novel Polarity Sensitive Fluorescent Derivatives

被引:15
作者
Bianchetti, Giada [1 ,2 ]
Azoulay-Ginsburg, Salome [3 ]
Keshet-Levy, Nimrod Yosef [3 ,4 ]
Malka, Aviv [3 ]
Zilber, Sofia [4 ]
Korshin, Edward E. [3 ]
Sasson, Shlomo [5 ]
De Spirito, Marco [2 ]
Gruzman, Arie [3 ]
Maulucci, Giuseppe [1 ,2 ]
机构
[1] Univ Cattolica Sacro Cuore, Biophys Sect, Neurosci Dept, I-00168 Rome, Italy
[2] Fdn Policlin Univ A Gemelli IRCSS, I-00168 Rome, Italy
[3] Bar Ilan Univ, Dept Chem, IL-59290002 Ramat Gan, Israel
[4] Shaare Zedek Med Ctr, Dept Pathol, IL-9103102 Jerusalem, Israel
[5] Hebrew Univ Jerusalem, Fac Med, Inst Drug Res, IL-911210 Jerusalem, Israel
关键词
fatty acids analogs; laurdan derivatives; FLIM; membrane fluidity; two-photons microscopy; phasor analysis; C-13; NMR; CHOLESTEROL; CELLS; MICROSCOPY; MODEL;
D O I
10.3390/ijms22063106
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Free fatty acids are essential structural components of the cell, and their intracellular distribution and effects on membrane organelles have crucial roles in regulating the metabolism, development, and cell cycle of most cell types. Here we engineered novel fluorescent, polarity-sensitive fatty acid derivatives, with the fatty acid aliphatic chain of increasing length (from 12 to 18 carbons). As in the laurdan probe, the lipophilic acyl tail is connected to the environmentally sensitive dimethylaminonaphthalene moiety. The fluorescence lifetime imaging analysis allowed us to monitor the intracellular distribution of the free fatty acids within the cell, and to simultaneously examine how the fluidity and the microviscosity of the membrane environment influence their localization. Each of these probes can thus be used to investigate the membrane fluidity regulation of the correspondent fatty acid intracellular distribution. We observed that, in PC-12 cells, fluorescent sensitive fatty acid derivatives with increased chain length compartmentalize more preferentially in the fluid regions, characterized by a low microviscosity. Moreover, fatty acid derivatives with the longest chain compartmentalize in lipid droplets and lysosomes with characteristic lifetimes, thus making these probes a promising tool for monitoring lipophagy and related events.
引用
收藏
页码:1 / 17
页数:17
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