Guangxi Key Laboratory of Electrochemical Energy Materials, Institute of Optical Materials and Chemical Biology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, PR China.
Guangxi Key Laboratory of Electrochemical Energy Materials, Institute of Optical Materials and Chemical Biology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Mar 5;268:120637. doi: 10.1016/j.saa.2021.120637. Epub 2021 Nov 18.
Lipid droplets (LDs), are multi-functional organelles with the storage of neutral lipids and proteins, participating in various of physiological processes. However, abnormal of LDs in morphology and numbers always lead to multiple diseases, including cancer, viral infection, obesity, inflammation. To better understand the physiological function of LDs in living cells, we designed two new fluorescent probes LDs-CA and LDs-BCA based on the triphenylamine and coumarin fluorophores to monitor LDs polarity and numbers variation in this work. The one-step strategy for the regulation of BF group realized a gratifying in emission wavelengths from orange fluorescence of LDs-CA to the red fluorescence of LDs-BCA, surprisingly. The two novel probes showed strong positive solvatochromism effect in different solvents and exhibited the aggregation-induced emission (AIE) effect. Based on the above excellent optical properties, LDs-CA and LDs-BCA were applied for imaging of the LDs with high overlap coefficient when co-stained with commercial dyes, respectively. The probes of LDs-CA and LDs-BCA provided an intuitive method to visualize the dynamic changes of LDs in morphology, size, and numbers under nutritionalstimulation, affording a powerful tool for fluorescence visualization of LDs related biological processes. Notably, the near-infrared emissive probe LDs-BCA successfully imaged the gastric fat in living obese mouse, which may provide a new idea for medical diagnostics.
脂滴(LDs)是具有储存中性脂质和蛋白质等多种功能的细胞器,参与各种生理过程。然而,LDs 的形态和数量异常通常会导致多种疾病,包括癌症、病毒感染、肥胖症、炎症等。为了更好地了解 LDs 在活细胞中的生理功能,我们设计了两种基于三苯胺和香豆素荧光团的新型荧光探针 LDs-CA 和 LDs-BCA,用于监测 LDs 极性和数量的变化。BF 基团的一步调控策略实现了令人惊喜的从橙色荧光 LDs-CA 到红色荧光 LDs-BCA 的发射波长的可喜调节。这两种新型探针在不同溶剂中表现出强烈的正溶剂化变色效应,并表现出聚集诱导发射(AIE)效应。基于上述优异的光学性能,当与商业染料共染色时,LDs-CA 和 LDs-BCA 分别用于 LDs 的高重叠系数成像。LDs-CA 和 LDs-BCA 探针提供了一种直观的方法来可视化营养刺激下 LDs 在形态、大小和数量上的动态变化,为荧光可视化 LDs 相关生物过程提供了有力的工具。值得注意的是,近红外发射探针 LDs-BCA 成功地对活体肥胖小鼠的胃脂肪进行了成像,这可能为医学诊断提供了新的思路。