Institute of Environmental Science, Shanxi University, Taiyuan, 030006, P. R. China.
J Mater Chem B. 2020 Feb 21;8(7):1466-1471. doi: 10.1039/c9tb02551k. Epub 2020 Jan 29.
Autophagy plays crucial roles in maintaining normal intracellular homeostasis. Molecular probes capable of monitoring lysosomal pH changes during autophagy are still highly required yet challenging to develop. Here, a lysosome-targeting fluorescent pH probe, RML, is presented by introducing a methylcarbitol unit as the lysosome-targeting group to rhodamine B, which is highly sensitive to pH changes. RML exhibits remarkable pH-dependent behavior at 583 nm with a fluorescent enhancement of more than 148-fold. The pK value is determined as 4.96, and the linear response with pH changes from 4.50-5.70, which is favorable for lysosomal pH imaging. We also confirm that RML diffuses selectively into lysosomes using confocal fluorescence microscopy. Using RML, we have successfully visualized autophagy by monitoring the lysosomal pH changes.
自噬在维持细胞内正常的动态平衡中起着至关重要的作用。能够监测自噬过程中溶酶体 pH 变化的分子探针仍然高度需要,但开发起来具有挑战性。在这里,我们通过在罗丹明 B 上引入甲基卡必醇单元作为溶酶体靶向基团,设计并合成了一种溶酶体靶向荧光 pH 探针 RML。RML 在 583nm 处对 pH 变化具有显著的响应,荧光增强超过 148 倍。pK 值确定为 4.96,在 4.50-5.70 范围内与 pH 变化呈线性关系,有利于溶酶体 pH 成像。我们还通过共聚焦荧光显微镜确认 RML 选择性地扩散到溶酶体中。使用 RML,我们通过监测溶酶体 pH 的变化,成功地可视化了自噬过程。