Publication date: February 2018
Source:Sensors and Actuators B: Chemical, Volume 255, Part 1
Author(s): Jiajia Wan, Wenxiu Duan, Kai Chen, Yanduo Tao, Jun Dang, Kehao Zeng, Yushu Ge, Jiang Wu, Dan Liu
The development of biocompatible chemosensors is becoming increasingly important for chemical analyses in environmental sampling, the food industry, and clinical medicine. Many current chemosensors have limited utility as they represent potential secondary pollutants. To circumvent this problem, researchers are evaluating peptide-based fluorescent chemosensors because of their well-established synthesis protocols, good biological compatibility, and generally low cytotoxicity, which makes them suitable for bioimaging. In this study, we report the development of a peptide-based fluorescent chemosensor HL (fluorophore-Cys-Pro-Gly-His) for divalent zinc ions (Zn2+). The objective of this study was to select a suitable peptide sequence and associated fluorophore exhibiting high selectivity and sensitivity to Zn2+-binding, and enhanced fluorescent response. Results of this study, both in vitro and in living cells, indicated that HL exhibited high selectivity and sensitivity for Zn2+, with a limit of detection (LOD) of about 82nM. The sensor also exhibited very low cell cytotoxicity and strong fluorescence emission in living cells, which indicates that it may find application as a novel chemosensor for selective Zn2+ detection in biological environments.
http://ift.tt/2hUws97
Medicine by Alexandros G. Sfakianakis,Anapafseos 5 Agios Nikolaos 72100 Crete Greece,00302841026182,00306932607174,alsfakia@gmail.com,
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Σάββατο 12 Αυγούστου 2017
Selective and sensitive detection of Zn(II) ion using a simple peptide-based sensor
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