A Bright Two‐Photon Lipid Droplets Probe with Viscosity‐Enhanced Solvatochromic Emission for Visualizing Lipid Metabolic Disorders in Deep Tissues

溶剂变色 脂滴 荧光 材料科学 生物物理学 极性(国际关系) 尼罗河红 荧光团 化学 光学 生物 生物化学 物理 细胞
作者
Zheng Zheng,Yuchen Yang,Pingping Wang,Xuexin Gou,Junyi Gong,Xiaoqian Wu,Zhiwei Bao,Lijie Liu,Jing Zhang,Hang Zou,Lei Zheng,Ben Zhong Tang
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (35) 被引量:33
标识
DOI:10.1002/adfm.202303627
摘要

Abstract The polarity of lipid droplets (LDs) plays an important role in pathological processes associated with abnormal lipid metabolism. Monitoring the variation of LDs polarity in cells and tissues is of great importance in biomedical research and clinical diagnosis. However, developing fluorescent LDs‐specific probes with high polarity sensitivity, brightness, and permeability for deep tissue imaging is still challenging. Herein, a push–pull fluorescent luminogen (DPBT) with aggregation‐induced emission, strong solvatochromism, large Stokes shift, high solid‐state fluorescence efficiency and superior two‐photon absorption is facilely developed. The lipophilic DPBT can specifically stain LDs with high biocompatibility and good photostability. The viscosity‐enhanced solvatochromic emission property enables DPBT to visualize LDs polarity with high brightness and imaging contrast, and deep penetration depth under two‐photon microscopy. DPBT can specifically stain lipids in various mouse tissues (atherosclerotic plaque, liver, and mesenteric adipose tissues) and map their polarity distribution to reflect lipid metabolic states within those tissues. It is found that the lipids deposition as well as their polarity distribution in tissues of hyperlipoidemia mouse are clearly different from the tissues of the normal mouse. Its excellent properties make DPBT a promising candidate for investigating LDs‐associated physiological and pathological processes in live biological samples.
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