Issue 26, 2014

Water-soluble bioprobes with aggregation-induced emission characteristics for light-up sensing of heparin

Abstract

Two water-soluble cationic fluorene-based fluorescent probes for heparin detection are designed and synthesized. A slight change in the molecular design results in two probes with opposite optical properties in their solution and aggregation states as well as a response to heparin in buffer solution. The probe with a propeller-like conformation exhibits aggregation-induced emission (AIE) characteristics and shows a green fluorescence enhancement upon interaction with heparin; in contrast, the probe with a more planar conformation has a fluorescence quenching response. A comprehensive study on heparin detection using the two probes was conducted, which revealed that the AIE probe shows a better performance than the aggregation-caused quenching (ACQ) probe in terms of sensitivity. The AIE probe integrated with graphene oxide (GO) further improves the heparin detection sensitivity and selectivity. The solution of AIE probe/GO emits strong green fluorescence only in the presence of heparin, which allows for light-up visual discrimination of heparin from its analogues such as chondroitin-4-sulfate and hyaluronic acid. Moreover, the linear light-up response of AIE probe/GO enables heparin quantification in the range of 0–13.2 μM with a detection limit of 10 nM, which is of practical importance for heparin monitoring during surgery or therapy.

Graphical abstract: Water-soluble bioprobes with aggregation-induced emission characteristics for light-up sensing of heparin

Supplementary files

Article information

Article type
Paper
Submitted
05 Mar 2014
Accepted
22 Apr 2014
First published
28 Apr 2014

J. Mater. Chem. B, 2014,2, 4134-4141

Author version available

Water-soluble bioprobes with aggregation-induced emission characteristics for light-up sensing of heparin

R. T. K. Kwok, J. Geng, J. W. Y. Lam, E. Zhao, G. Wang, R. Zhan, B. Liu and B. Z. Tang, J. Mater. Chem. B, 2014, 2, 4134 DOI: 10.1039/C4TB00367E

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