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Fluorescing fatty acids in rat fatty liver models

机译:大鼠脂肪肝模型中的荧光脂肪酸

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The autofluorescence (AF) of NAD(P)H and flavins has been at the basis of many in-situ studies of liver energy metabolism and functionality. Conversely, few data have been so far reported on fluorescing lipids. In this work we investigated the AF of liver lipid extracts from two fatty liver models, Wistar rats fed with MCD diet for 12 days (Wi-MCD), and obese (fa/fa) Zucker rats. Among the most abundant fatty acids in the lipid extracts, indicated by mass spectrometry, arachidonic acid (AA) exhibited higher quantum yield than the other fluorescing fatty acids (FLFA), and red shifted AF spectrum. This allowed to estimate the AA contribution to the overall emission of lipid extracts by curve fitting analysis. AA prevailed in obese Zucker livers, accounting for the different AF spectral profiles between the two models. AF and mass spectrometry indicated also a different balance between the fluorescing fraction and the overall amount of AA in the two models. The ability of AF to detect directly AA and FLFA was demonstrated, suggesting its supportive role as tool in wide-ranging applications, from the control of animal origin food, to experimental investigations on liver fat accumulation, lipotoxicity and disease progression, with potential translation to the clinics.
机译:NAD(P)H和黄林斯的自发荧光(AF)是肝脏能量代谢和功能的许多原位研究。相反,迄今为止缺乏荧光脂质的数据很少。在这项工作中,我们研究了来自两种脂肪肝模型的肝脂提取物的AF,Wistar大鼠喂食MCD饮食12天(Wi-MCD)和肥胖(FA / FA)Zucker大鼠。在脂质提取物中最丰富的脂肪酸中,由质谱表示的脂质酸(AA)表现出比其他荧光脂肪酸(FLFA)的量子屈服更高的量子产率,以及红色移位的AF光谱。通过曲线拟合分析允许通过曲线拟合分析来估计对脂质提取物的整体排放的AA贡献。 AA在肥胖的Zucker肝脏中盛行,占两种模型之间的不同AF光谱配置文件。 AF和质谱表明在两种模型中的荧光分数和AA的总体量之间也表明了不同的平衡。证明了AF检测直接AA和FLFA的能力,表明其在宽范围应用中的工具,从动物来源食品的控制,对肝脏脂肪积累,脂肪毒性和疾病进展的实验研究,具有潜在的翻译诊所。

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