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Monitoring Lipid Peroxidation within Foam Cells by Lysosome-Targetable and Ratiometric Probe

化学 溶酶体 脂质过氧化 荧光团 荧光 生物物理学 紧身衣 荧光显微镜 流式细胞术 共焦 共焦显微镜 生物化学 脂滴 泡沫电池 细胞生物学 脂蛋白 胆固醇 分子生物学 抗氧化剂 量子力学 物理 数学 生物 几何学
作者
Xinfu Zhang,Benlei Wang,Chao Wang,Lingcheng Chen,Yi Xiao
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:87 (16): 8292-8300 被引量:67
标识
DOI:10.1021/acs.analchem.5b01428
摘要

Lipid peroxidation (LPO) in lysosomes is a valuable analyte because it is close associated with the evolutions of some major diseases. As a typical example, in the start-up phase of atherosclerosis, lysosomes get as swollen as foams, by accumulating a large amount of lipoproteins, which facilitates the free-radical chain propagation of LPO. Despite the existences of several fluorescent LPO probes, they are not appropriate for reporting the local extents of lysosomal LPO, for their unspecific intracellular localizations. Here, Foam-LPO, the first fluorescent LPO probe specifically targeting lysosomes, has been developed through straightforward synthesis using low-cost reagents. A basic tertiary amine group enables it to selectively localize in acidic lysosomes; and the conjugated diene moiety within the BODIPY fluorophore will degrade in response to lipid peroxidation, which results in fluorescence maximum shifting from 586 to 512 nm. Thus, under a confocal fluorescence microscope, Foam-LPO is able not only to visualize dynamic morphological changes of lysosomes during the evolution of foam cells, but also to relatively quantify local LPO extents in single lysosomes through ratiometric imaging. In addition, Foam-LPO proves applicable for two-color flow cytometry (FCM) analysis to make quantitative and high-throughput evaluation of LPO levels in large quantity of cells at different stages during the induction to form foam cells. Also importantly, with the aid of this new probe, the different roles played by low-density lipoprotein (LDL) and its oxidized form (ox-LDL) for the LPO processes of foam cells are distinguished and clarified, which benefits the understanding in the initiation and control factors of atherosclerosis.
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