Institute of Biology and Biomedicine, Lobachevsky State University of Nizhny Novgorod, Nizhny Novgorod, Russia; Institute of Experimental Oncology and Biomedical Technologies, Privolzhsky Research Medical University, Nizhny Novgorod, Russia.
Pirogov Russian National Research Medical University, Laboratory of Experimental Oncology, Moscow, Russia.
Biophys J. 2022 Apr 5;121(7):1156-1165. doi: 10.1016/j.bpj.2022.02.036. Epub 2022 Feb 23.
Changes in intracellular pH (pHi) reflect metabolic states of cancer cells during tumor growth and dissemination. Therefore, monitoring of pHi is essential for understanding the metabolic mechanisms that support cancer progression. Genetically encoded fluorescent pH sensors have become irreplaceable tools for real-time tracking pH in particular subcellular compartments of living cells. However, ratiometric readout of most of the pH probes is poorly suitable to measure pH in thick samples ex vivo or tissues in vivo including solid tumors. Fluorescence lifetime imaging (FLIM) is a promising alternative to the conventional fluorescent microscopy. Here, we present a quantitative approach to map pHi in cancer cells and tumors in vivo, relying on fluorescence lifetime of a genetically encoded pH sensor SypHerRed. We demonstrate the utility of SypHerRed in visualizing pHi in cancer cell culture and in mouse tumor xenografts using fluorescence lifetime imaging microscopy and macroscopy. For the first time to our knowledge, the absolute pHi value is obtained for tumors in vivo by an optical technique. In addition, we demonstrate the possibility of simultaneous detection of pHi and endogenous fluorescence of metabolic cofactor NADH, which provides a complementary insight into metabolic aspects of cancer. Fluorescence lifetime-based readout and red-shifted spectra make pH sensor SypHerRed a promising instrument for multiparameter in vivo imaging applications.
细胞内 pH 值 (pHi) 的变化反映了肿瘤生长和扩散过程中癌细胞的代谢状态。因此,监测 pHi 对于了解支持癌症进展的代谢机制至关重要。遗传编码的荧光 pH 传感器已成为实时跟踪活细胞特定亚细胞区室 pH 值的不可或缺的工具。然而,大多数 pH 探针的比率读数对于测量离体厚样品或包括实体瘤在内的体内组织中的 pH 值并不适用。荧光寿命成像 (FLIM) 是传统荧光显微镜的一种很有前途的替代方法。在这里,我们提出了一种定量方法,依靠遗传编码的 pH 传感器 SypHerRed 的荧光寿命,来绘制体内癌细胞和肿瘤的 pHi。我们使用荧光寿命成像显微镜和宏观显微镜证明了 SypHerRed 在可视化癌细胞培养和小鼠肿瘤异种移植中的 pHi 的实用性。据我们所知,这是第一次通过光学技术获得体内肿瘤的绝对 pHi 值。此外,我们还证明了同时检测 pHi 和代谢辅因子 NADH 的内源性荧光的可能性,这为癌症的代谢方面提供了一个互补的见解。基于荧光寿命的读出和红移光谱使 pH 传感器 SypHerRed 成为一种很有前途的用于多参数体内成像应用的仪器。