Spectroscopic probes with changeable π-conjugated systems

被引:154
作者
Shi, Wen [1 ]
Ma, Huimin [1 ]
机构
[1] Chinese Acad Sci, Inst Chem, Key Lab Analyt Chem Living Biosyst, Beijing Natl Lab Mol Sci, Beijing 100190, Peoples R China
关键词
RATIOMETRIC FLUORESCENT-PROBE; RESONANCE ENERGY-TRANSFER; RECOGNITION INDUCED ISOMERIZATION; TERT-BUTYLDIMETHYLSILYL ETHER; IMAGING HYDROGEN-PEROXIDE; RHODAMINE-B THIOLACTONE; NAKED-EYE DETECTION; LIVING CELLS; HYPOCHLOROUS ACID; AQUEOUS-MEDIA;
D O I
10.1039/c2cc33366j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Spectroscopic probes have been extensively investigated and used widely in many fields because of their powerful ability to improve analytical sensitivity, and to offer greater temporal and spatial resolution (in some cases a molecule event may be visualized by the naked eye). So far, different photophysical mechanisms, such as charge transfer, photo-induced electron transfer and fluorescent resonance energy transfer, have been employed to develop various spectroscopic probes with superior properties. However, these photophysical mechanisms depend on the energy levels of molecular orbitals, which are usually difficult to accurately determine. This would lead to the poor prediction of analytical performance of the designed probe. Instead, the change of pi-conjugated systems induced by chemical reactions is often accompanied by a distinct alteration in spectroscopic signal, which is more predictable and is of high signal/background ratio. This mechanism can serve as an effective measure for developing excellent spectroscopic probes, but to our knowledge, has not been systematically summarized. In this feature article, we review the development of spectroscopic probes with changeable pi-conjugated systems, which is catalogued according to the fluorochromes: fluorescein, rhodamine, spiropyran, squaraine, coumarin, cyanine, etc. Two main strategies for constructing these spectroscopic probes, including ring-closing reaction and nucleophilic addition reaction, are summarized, and the merits and limitations of the probes are discussed.
引用
收藏
页码:8732 / 8744
页数:13
相关论文
共 178 条
[41]  
Guerchais V, 2010, TOP ORGANOMETAL CHEM, V28, P171, DOI 10.1007/978-3-642-01866-4_6
[42]   FLUOROMETRIC DETERMINATION OF LIPASE ACYLASE ALPHA-+ GAMMA-CHYMOTRYPSIN + INHIBITORS OF THESE ENZYMES [J].
GUILBAULT, GG ;
KRAMER, DN .
ANALYTICAL CHEMISTRY, 1964, 36 (02) :409-&
[43]   Synthesis of a macrocyclic rhodamine 110 enzyme substrate as an intracellular probe for caspase 3 activity [J].
Guzikowski, AP ;
Naleway, JJ ;
Shipp, CT ;
Schutte, RC .
TETRAHEDRON LETTERS, 2000, 41 (24) :4733-4735
[44]   Visual and fluorogenic detection of a nerve agent simulant via a Lossen rearrangement of rhodamine-hydroxamate [J].
Han, Shoufa ;
Xue, Zhongwei ;
Wang, Zhen ;
Wen, Ting Bin .
CHEMICAL COMMUNICATIONS, 2010, 46 (44) :8413-8415
[45]   Activity-based probes: discovering new biology and new drug targets [J].
Heal, William P. ;
Dang, T. H. Tam ;
Tate, Edward W. .
CHEMICAL SOCIETY REVIEWS, 2011, 40 (01) :246-257
[46]   DIHYDRORHODAMINE 123 - A FLUORESCENT-PROBE FOR SUPEROXIDE GENERATION [J].
HENDERSON, LM ;
CHAPPELL, JB .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1993, 217 (03) :973-980
[47]   A TEMPO-conjugated fluorescent probe for monitoring mitochondrial redox reactions [J].
Hirosawa, Shota ;
Arai, Satoshi ;
Takeoka, Shinji .
CHEMICAL COMMUNICATIONS, 2012, 48 (40) :4845-4847
[48]   A copper(II) rhodamine complex with a tripodal ligand as a highly selective fluorescence imaging agent for nitric oxide [J].
Hu, Xiaoyue ;
Wang, Jian ;
Zhu, Xiang ;
Dong, Dapeng ;
Zhang, Xiaolin ;
Wu, Shuo ;
Duan, Chunying .
CHEMICAL COMMUNICATIONS, 2011, 47 (41) :11507-11509
[49]   Highly sensitive and selective turn-on fluorescent chemosensor for Pb2+ and Hg2+ based on a rhodamine-phenylurea conjugate [J].
Hu, Zhi-Qiang ;
Lin, Cun-sheng ;
Wang, Xiao-Ming ;
Ding, Lei ;
Cui, Cun-Li ;
Liu, Shu-Feng ;
Lu, Hai Yan .
CHEMICAL COMMUNICATIONS, 2010, 46 (21) :3765-3767
[50]   New latent fluorophore for DT diaphorase [J].
Huang, ST ;
Lin, YL .
ORGANIC LETTERS, 2006, 8 (02) :265-268