Shen Shi-Li, Chen Xin-Peng, Zhang Xiao-Fan, Miao Jun-Ying, Zhao Bao-Xiang
Institute of Organic Chemistry, School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, P. R. China.
J Mater Chem B. 2015 Feb 7;3(5):919-925. doi: 10.1039/c4tb01763c. Epub 2014 Dec 8.
A novel rhodamine B-based fluorescent probe (RML) for lysosomal pH was developed by integrating a 4-(2-aminoethyl)morpholine moiety, which is a lysosome-targetable group, into a rhodamine B fluorophore, which is associated with rhodamine B dyes possessing spirocyclic (non-fluorescent) and ring-opening (fluorescent) forms with response to pH. The probe responded to acidic pH at low concentration in a short amount of time. In addition, RML showed good membrane permeability and brilliant selectivity among various amino acids and metal cations. RML exhibited an 80-fold increase in fluorescence intensity at 583 nm throughout the pH range of 7.40-4.00 with a pK of 5.16, which indicates that RML is valuable for studying intracellular acidic organelles. Moreover, RML has been successfully applied in HeLa cells, and the results demonstrated that RML could selectively stain lysosomes in living HeLa cells. Note that RML could be used to detect the pH increase in lysosomes induced by bafilomycin A1 within HeLa cells.
通过将作为溶酶体靶向基团的4-(2-氨基乙基)吗啉部分整合到若丹明B荧光团中,开发了一种用于检测溶酶体pH值的新型若丹明B基荧光探针(RML),该荧光团与具有螺环(非荧光)和开环(荧光)形式且对pH有响应的若丹明B染料相关。该探针在低浓度下短时间内就能对酸性pH作出响应。此外,RML在各种氨基酸和金属阳离子中表现出良好的膜通透性和出色的选择性。在7.40-4.00的pH范围内,RML在583 nm处的荧光强度增加了80倍,pK为5.16,这表明RML对于研究细胞内酸性细胞器具有重要价值。此外,RML已成功应用于HeLa细胞,结果表明RML可以选择性地标记活HeLa细胞中的溶酶体。请注意,RML可用于检测HeLa细胞中由巴弗洛霉素A1诱导的溶酶体pH升高。