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使用基于BODIPY的比率荧光探针实时监测HeLa细胞、以及斑马鱼幼虫中的线粒体pH值。

Real-Time Monitoring of Mitochondrial pH in HeLa Cells, , and Zebrafish Larvae Using BODIPY-Based Ratiometric Fluorescent Probes.

作者信息

Kathuria Ishana, Pandey Subash, Schwandt Ronald J, Agyemang Peter, Arachchige Dilka Liyana, Dwivedi Sushil K, Lanquaye Henry, Liu Haiying, Luck Rudy L

机构信息

Department of Chemistry, Michigan Technological University, Houghton, Michigan 49931, United States.

出版信息

ACS Appl Bio Mater. 2025 Jul 21;8(7):6455-6468. doi: 10.1021/acsabm.5c00978. Epub 2025 Jul 3.

Abstract

Three BODIPY-based fluorescent probes, , , and , were synthesized for ratiometric pH sensing in living cells, fruit flies, and zebrafish larvae. These probes were designed to target mitochondrial environments by functionalizing the BODIPY core with various substituent groups that tune the pH sensitivity. The probes exhibited strong ratiometric fluorescence changes with p values (, 7.3; , 7.5; , 7.2) suitable for mitochondrial pH detection. Theoretical calculations supported these findings by establishing the geometries and electronic transitions and also resulted in the derivation of their p values. Confocal imaging confirmed mitochondrial accumulation of these probes in HeLa cells, facilitating broad-range pH monitoring across a wide pH spectrum (3.5 to 9.1). These ratiometric pH sensors display good reversibility and response times under varying pH conditions. In application, the probe was employed to monitor pH fluctuations under conditions of oxidative stress and nutrient deprivation. Dual-channel cell imaging revealed a pH-dependent fluorescence shift with precise transitions, demonstrating the feasibility of real-time monitoring of the mitochondrial membrane potential in living cells. Furthermore, the probe effectively visualized pH changes in and zebrafish larvae, further supporting its applicability across diverse biological systems. We demonstrate that a fluorescence ratiometric intensity graph for probe can be effectively employed to determine pH values within the mitochondria of HeLa cells.

摘要

合成了三种基于BODIPY的荧光探针,即[具体探针名称1]、[具体探针名称2]和[具体探针名称3],用于活细胞、果蝇和斑马鱼幼虫中的比率pH传感。这些探针通过用各种调节pH敏感性的取代基对BODIPY核心进行功能化设计,以靶向线粒体环境。这些探针在适合线粒体pH检测的pKa值([具体探针1的pKa值]为7.3;[具体探针2的pKa值]为7.5;[具体探针3的pKa值]为7.2)下表现出强烈的比率荧光变化。理论计算通过确定几何结构和电子跃迁支持了这些发现,还推导了它们的pKa值。共聚焦成像证实了这些探针在HeLa细胞中的线粒体积累,便于在宽pH范围(3.5至9.1)内进行广泛的pH监测。这些比率pH传感器在不同pH条件下显示出良好的可逆性和响应时间。在应用中,探针[具体探针名称]被用于监测氧化应激和营养剥夺条件下的pH波动。双通道细胞成像显示了pH依赖性荧光位移以及精确的转变,证明了实时监测活细胞中线粒体膜电位的可行性。此外,探针[具体探针名称]有效地可视化了果蝇和斑马鱼幼虫中的pH变化,进一步支持了其在不同生物系统中的适用性。我们证明,探针[具体探针名称]的荧光比率强度图可有效地用于确定HeLa细胞线粒体内的pH值。

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