Dual-Emission Carbonized Polymer Dots Combined with Metal Ions as a Single-Component Fluorescence Sensor Array for Pattern Recognition of Glycosaminoglycans

被引:0
作者
Ziyang Lin
Wenbang Yu
Rong Hu
Ruixuan Hu
Zihan Wei
Min Zhang
机构
[1] Jinhua Polytechnic,School of Chemistry and Molecular Engineering, Shanghai Key Laboratory for Urban Ecological Processes and Eco
[2] Rizhao Polytechnic,Restoration
[3] East China Normal University,undefined
来源
Journal of Analysis and Testing | 2023年 / 7卷
关键词
CPDs; GAGs; Single-component; Dual-emission; Sensor array; Biological fluids;
D O I
暂无
中图分类号
学科分类号
摘要
Herein, a novel dual-emission fluorescence sensor array of carbonized polymer dots (CPDs)-Cu2+ has been proposed, in which CPDs were prepared by one-pot hydrothermal method and Cu2+ acting as a quencher was combined with CPDs by electrostatic interaction. Four negatively charged glycosaminoglycans (GAGs) bearing different hydrophilic groups showed variable binding affinities towards CPDs-Cu2+. Upon reacting with these GAGs, the different fluorescence response signals of CPDs-Cu2+ can be further differentiated by principal component analysis (PCA). The CPDs-Cu2+ sensor array, not only allows the identification of four similarly structured GAGs, but also realizes the discrimination of different concentrations of the same GAGs and their mixtures. Remarkably, the identification of GAGs in biological fluids can also be achieved using our proposed single-component sensor array, validating its application potential. This new strategy avoids multiple sensing probes, broadens the application of tongue-mimic sensor arrays and provides a viable idea for the development of single component sensing platforms.
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页码:285 / 294
页数:9
相关论文
共 199 条
[1]  
Raman R(2005)Structural insights into biological roles of protein-glycosaminoglycan interactions Chem Biol 12 267-277
[2]  
Sasisekharan V(2019)AIE nanoassemblies for discrimination of glycosaminoglycans and heparin quality control Anal Chem 91 10295-10301
[3]  
Sasisekharan R(2018)Differential calixarene receptors create patterns that discriminate glycosaminoglycans Org Chem Front 5 2685-2691
[4]  
Yang ZY(1999)Glycosaminoglycans interact selectively with chemokines and modulate receptor binding and cellular responses Biochemistry 38 12959-12968
[5]  
Fan X(2007)Selectin blocking activity of a fucosylated chondroitin sulfate glycosaminoglycan from sea cucumber: effect on tumor metastasis and neutrophil recruitment Biol Chem 282 14984-14991
[6]  
Cheng WJ(2003)Glycosaminoglycan binding and oligomerization are essential for the in vivo activity of certain chemokines Proc Natl Acad Sci USA 100 1885-1890
[7]  
Ding YB(2011)Fluorescent liposomes for differential interactions with glycosaminoglycans Anal Chem 83 5989-5995
[8]  
Zhang WH(2002)Novel drug development opportunities for heparin Nat Rev Drug Discov 1 140-148
[9]  
Zhang Z(2021)Preparation of low molecular weight heparin from a remodeled bovine intestinal heparin J Med Chem 64 2242-2253
[10]  
Geng WC(2010)Pattern-based sensing of sulfated glycosaminoglycans with a dynamic mixture of iron complexes Org Biomol Chem 8 2327-2331