College of Chemistry, Green Catalysis Center, Henan Joint International Research Laboratory of Green Construction of Functional Molecules and Their Bioanalytical Applications, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Zhengzhou University, Zhengzhou 450001, China.
Analyst. 2021 Jan 21;146(2):495-501. doi: 10.1039/d0an01925a. Epub 2020 Nov 17.
Great progress has been made with lipid droplet targeting fluorescent probes in a wide range of biomedical fields. However, the Stokes shifts of most fluorescent probes are relatively small, leading to strong biological background fluorescence, poor signal-to-noise ratios, self-quenching in the commonly used microscopes and the need for in vivo imaging systems. In this manuscript, the ester substituent rotation of fluorophores was supposed to result in a large Stokes shift via steric hindrance effects and resonance effects. A lipid droplet targeting fluorescent probe 1 was achieved by simply appending a 4-substituted ester group onto the classic coumarin fluorophore. Probe 1 exhibited large Stokes shifts (122 to 184 nm) in both high polarity and weak polarity solvents with good lipophilicity and polarity responsive ability (3500 fold fluorescence enhancement). Probe 1 was suitable for washing-free imaging of lipid droplets in living cells with excellent specificity and rapidity (<2 min). Probe 1 was applied for distinguishing cancer cells from normal cells by taking advantage of the abnormalities of lipid droplets of cancer cells. Due to its huge Stokes shift, probe 1 can be used for in vivo tumor imaging by the excitation of a blue laser, which is important for biomedical research.
在广泛的生物医学领域中,针对脂滴的荧光探针取得了重大进展。然而,大多数荧光探针的斯托克斯位移相对较小,导致较强的生物背景荧光、较低的信噪比、在常用显微镜下的自猝灭以及对活体成像系统的需求。在本文中,假设荧光团的酯取代基旋转通过空间位阻效应和共振效应产生较大的斯托克斯位移。通过在经典香豆素荧光团上简单附加 4 位取代的酯基,实现了一种脂滴靶向荧光探针 1。探针 1 在高极性和弱极性溶剂中均表现出较大的斯托克斯位移(122 至 184nm),具有良好的亲脂性和极性响应能力(荧光增强 3500 倍)。探针 1 适合在活细胞中进行无洗涤的脂滴成像,具有优异的特异性和快速性(<2 分钟)。探针 1 利用癌细胞脂滴的异常,用于区分癌细胞和正常细胞。由于其巨大的斯托克斯位移,探针 1 可以通过蓝色激光激发用于体内肿瘤成像,这对于生物医学研究非常重要。