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基于寿命的 pH 值和氧双荧光/磷光传感器的设计与制备及其在模型生理溶液和细胞中的探索。

Design and Preparation of Lifetime-Based Dual Fluorescent/Phosphorescent Sensor of pH and Oxygen and its Exploration in Model Physiological Solutions and Cells.

机构信息

Institute of Chemistry, Saint-Petersburg State University, Universitetsky Pr. 26, St. Petersburg, 198504, Russia.

Laboratory of Structural Dynamics, Stability and Folding of Proteins, Institute of Cytology, Russian Academy of Sciences, 4 Tikhoretsky Ave., St. Petersburg, 194064, Russia.

出版信息

Macromol Biosci. 2024 Oct;24(10):e2400225. doi: 10.1002/mabi.202400225. Epub 2024 Jul 10.

Abstract

In the present report, a novel dual pH-O sensor based on covalent conjugate of rhodamine 6G and cyclometalated iridium complex with poly(vinylpyrrolidone-block-vinyltetrazole) copolymer is reported. In model physiological solutions the sensor chromophores display independent phosphorescent and fluorescent lifetime responses onto variations in oxygen concentration and pH, respectively. Colocalization studies on Chinese hamster ovary cells demonstrate the preferential localization in endosomes and lysosomes. The fluorescent lifetime imaging microscopy-phosphorescent lifetime imaging microscopy (FLIM-PLIM) experiments show that the phosphorescent O sensor provides unambiguous information onto hypoxia versus normoxia cell status as well as semi-quantitative data on the oxygen concentration in cells in between these two states. However, the results of FLIM measurements indicate that dynamic lifetime interval of the sensor (≈0.5 ns between pH values 5.0 and 8.0) is insufficient even for qualitative estimation of pH in living cells because half-width of lifetime distribution in the studied samples is higher than the sensor dynamic interval. Nevertheless, the variations in rhodamine emission intensity are much higher and allow rough discrimination of acidic and neutral cell conditions. Thus, the results of this study indicate that the suggested approach to the design of dual pH-O sensors makes possible to prepare the biocompatible and water-soluble conjugate with fast cellular uptake.

摘要

在本报告中,我们报道了一种基于罗丹明 6G 和金属铱配合物与聚(乙烯基吡咯烷酮嵌段-乙烯四唑)共聚物共价结合的新型双 pH-O 传感器。在模型生理溶液中,传感器发色团分别对氧浓度和 pH 值的变化表现出独立的磷光和荧光寿命响应。在中华仓鼠卵巢细胞上的共定位研究表明,其优先定位于内体和溶酶体中。荧光寿命成像显微镜-磷光寿命成像显微镜(FLIM-PLIM)实验表明,磷光 O 传感器可提供明确的信息,以区分缺氧与正常氧细胞状态,以及这两种状态之间细胞中氧浓度的半定量数据。然而,FLIM 测量的结果表明,即使对于活细胞中 pH 值的定性估计,传感器的动态寿命间隔(在 pH 值 5.0 和 8.0 之间约为 0.5 ns)也不够,因为在研究样本中寿命分布的半宽度高于传感器的动态间隔。然而,罗丹明发射强度的变化要高得多,允许对酸性和中性细胞条件进行粗略区分。因此,本研究的结果表明,所提出的双 pH-O 传感器设计方法可制备出具有快速细胞摄取能力的生物相容性和水溶性缀合物。

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