A red-emitting fluorescent probe with large stokes shift for monitoring of viscosity and polarity and its application in bioimaging, distinguishing cancer cells

IF 4.7 2区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Molecular Structure Pub Date : 2025-03-07 DOI:10.1016/j.molstruc.2025.141976
Xu Tang , Yaqin Li , Yunlong Han , Bo Hu , Zhi Zhu , Lei Liu
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Abstract

Viscosity plays a pivotal role as one of the most critical microenvironments within cellular systems. Aberrant fluctuations in intracellular viscosity have been established as a significant biomarker for various pathological conditions. The application of fluorescent probe technology to monitor viscosity changes in the cellular microenvironment holds substantial importance for advancing our understanding of cellular functions, elucidating strain mechanisms, and developing therapeutic strategies for diseases. In this study, we developed a novel red-emitting fluorescent probe featuring a large Stokes shift. This probe demonstrates exceptional sensitivity to both elevated viscosity and reduced polarity, endowing it with specific targeting capabilities towards lipid droplets. Through cellular imaging applications, the probe effectively detected oleic acid-induced and drug-mediated alterations in intracellular viscosity and polarity. Moreover, it exhibited remarkable potential in discriminating between cancerous and normal cells, as well as distinguishing cells with differential proliferation rates within the same cancer cell line. The probe's efficacy was further corroborated through zebrafish imaging experiments, which confirmed its ability to monitor viscosity changes in living organisms. This probe enables real-time observation of dynamic viscosity changes within cells, which holds significant implications for understanding biochemical reactions, molecular transport, and disease states within cells.

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一种用于监测黏度和极性的大斯托克斯位移红色荧光探针及其在生物成像、鉴别癌细胞中的应用
黏度作为细胞系统中最关键的微环境之一,起着举足轻重的作用。细胞内粘度的异常波动已被确定为各种病理条件的重要生物标志物。应用荧光探针技术监测细胞微环境中的粘度变化,对于提高我们对细胞功能的理解、阐明应变机制和制定疾病治疗策略具有重要意义。在这项研究中,我们开发了一种具有大斯托克斯位移的新型红色荧光探针。该探针对粘度升高和极性降低都表现出特殊的敏感性,使其具有针对脂滴的特定靶向能力。通过细胞成像应用,该探针有效地检测了油酸诱导和药物介导的细胞内粘度和极性的改变。此外,它在区分癌细胞和正常细胞以及在同一癌细胞系中区分增殖率不同的细胞方面表现出了显著的潜力。通过斑马鱼成像实验进一步证实了探针的功效,证实了其监测生物体粘度变化的能力。该探针能够实时观察细胞内的动态粘度变化,这对理解细胞内的生化反应、分子运输和疾病状态具有重要意义。
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来源期刊
Journal of Molecular Structure
Journal of Molecular Structure 化学-物理化学
CiteScore
7.10
自引率
15.80%
发文量
2384
审稿时长
45 days
期刊介绍: The Journal of Molecular Structure is dedicated to the publication of full-length articles and review papers, providing important new structural information on all types of chemical species including: • Stable and unstable molecules in all types of environments (vapour, molecular beam, liquid, solution, liquid crystal, solid state, matrix-isolated, surface-absorbed etc.) • Chemical intermediates • Molecules in excited states • Biological molecules • Polymers. The methods used may include any combination of spectroscopic and non-spectroscopic techniques, for example: • Infrared spectroscopy (mid, far, near) • Raman spectroscopy and non-linear Raman methods (CARS, etc.) • Electronic absorption spectroscopy • Optical rotatory dispersion and circular dichroism • Fluorescence and phosphorescence techniques • Electron spectroscopies (PES, XPS), EXAFS, etc. • Microwave spectroscopy • Electron diffraction • NMR and ESR spectroscopies • Mössbauer spectroscopy • X-ray crystallography • Charge Density Analyses • Computational Studies (supplementing experimental methods) We encourage publications combining theoretical and experimental approaches. The structural insights gained by the studies should be correlated with the properties, activity and/ or reactivity of the molecule under investigation and the relevance of this molecule and its implications should be discussed.
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