A Noncovalent Fluorescence Turn-on Strategy for Hypoxia
Imaging
Geng, WC (Geng, Wen-Chao)[ 1 ] ; Jia, SR (Jia, Shaorui)[ 2 ] ; Zheng, Z (Zheng, Zhe)[ 1 ] ; Li, ZH (Li, Zhihao)[ 1 ] ; Ding, D (Ding, Dan)[ 2 ] ; Guo, DS (Guo, Dong-Sheng)[ 1 ]
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58(8): 2377-2381
DOI: 10.1002/anie.201813397
Abstract
Hypoxia
plays crucial roles in many diseases and is a central target for them. Present
hypoxia imaging is restricted to the covalent approach, which needs tedious
synthesis. In this work, a new supramolecular host-guest approach, based on the
complexation of a hypoxia-responsive macrocycle with a commercial dye, is
proposed. To exemplify the strategy, a carboxyl-modified azocalix[4]arene
(CAC4A) was designed that binds to rhodamine 123 (Rho123) and quenches its
fluorescence. The azo groups of CAC4A were selectively reduced under hypoxia,
leading to the release of Rho123 and recovery of its fluorescence. The
noncovalent strategy was validated through hypoxia imaging in living cells
treated with the CAC4A-Rho123 reporter pair.