Chen Yuncong, Zhu Chengcheng, Cen Jiajie, Bai Yang, He Weijiang, Guo Zijian
State Key Laboratory of Coordination Chemistry , Coordination Chemistry Institute , School of Chemistry and Chemical Engineering , Nanjing University , Hankou Road No.22 , Nanjing 210093 , PR China . Email:
Chem Sci. 2015 May 1;6(5):3187-3194. doi: 10.1039/c4sc04021j. Epub 2015 Mar 16.
The homeostasis of mitochondrial pH (pH) is crucial in cell physiology. Developing small-molecular fluorescent sensors for the ratiometric detection of pH fluctuation is highly demanded yet challenging. A ratiometric pH sensor, , was constructed by integrating a pH-sensitive FITC fluorophore with a pH-insensitive hemicyanine group. The hemicyanine group also acts as the mitochondria targeting group due to its lipophilic cationic nature. Besides its ability to target mitochondria, this sensor provides two ratiometric pH sensing modes, the dual excitation/dual emission mode (D/D) and dual excitation (D) mode, and its linear and reversible ratiometric response range from pH 6.15 to 8.38 makes this sensor suitable for the practical tracking of pH fluctuation in live cells. With this sensor, stimulated pH fluctuation has been successfully tracked in a ratiometric manner both fluorescence imaging and flow cytometry.
线粒体pH值(pH)的稳态在细胞生理学中至关重要。开发用于比率检测pH波动的小分子荧光传感器需求迫切但具有挑战性。一种比率pH传感器,通过将对pH敏感的异硫氰酸荧光素(FITC)荧光团与对pH不敏感的半菁基团整合而构建。由于其亲脂性阳离子性质,半菁基团还充当线粒体靶向基团。除了具有靶向线粒体的能力外,该传感器还提供两种比率pH传感模式,即双激发/双发射模式(D/D)和双激发(D)模式,其线性和可逆的比率响应范围为pH 6.15至8.38,使得该传感器适用于实时追踪活细胞中的pH波动。利用该传感器,已通过荧光成像和流式细胞术以比率方式成功追踪了刺激引起的pH波动。