Yan Ma, Mengfan Han, Yang Su, Yongmei Yin, Xiujie Zhao, Rimo Xi, Meng Meng
Heptamethine cyanines are attractive NIR fluorophores for image-guided tumor phototherapy. However, most cyanines exhibit unignorably high background fluorescence, which would lead to low-contrast images in the tumor. Inspired by findings that proper modulations of cyanines can self-quench fluorescence in the aggregated state but retrieve fluorescence when they are switched to the monomer, we herein engineer four amphiphilic heptamethine cyanines (IR780-NC n, n = 3/6/12/18) with extended hydrophobic alkyl chains. By studying the optimal properties and morphology of the dyes, we finally optimize IR780-NC 12 and IR780-NC 18 which can form nonfluorescent nanoaggregates in PBS but disassemble and recover intense NIR emission in hydrophobic media. Upon cellular uptake, the amphiphilic cyanines show fluorescence in membranous organelles such as mitochondria (IR780-NC 3 and IR780-NC 6 ) or the cell membrane (IR780-NC 12 and IR780-NC 18 ). Also, hydrophobic shielding enhances ROS generation under laser irradiation, as observed in IR780-NC 12 and IR780-NC 18 . In vivo, IR780-NC 18 administration (i.v.) exhibits the brightest and most prolonged tumor fluorescence up to 96 h. Guided by the NIR images in the tumor, an efficient PTT/PDT antitumor effect is confirmed for IR780-NC 12 and IR780-NC 18 phototherapy. We believe that self-assembly tuning design is a simple and powerful strategy to develop fluorescent “turn-on” cyanines as high-contrast NIR theranostic agents to guide tumor phototherapy.