Javascript must be enabled to continue!
Selective cadmium fluorescence probe based on bis-heterocyclic molecule and its imaging in cells
View through CrossRef
Abstract
Fluorescence probes that selectively image cadmium are useful for detecting and tracking the amount of Cd2+ in cells and tissues. In this study, we designed and synthesized a novel Cd2+ fluorescence probe based on the pyridine-pyrimidine structure, 4-(methylsulfanyl)-6-(pyridin-2-yl)pyrimidin-2-amine (3), as a low-molecular-weight fluorescence probe for Cd2+. Compound 3 could successfully discriminate between Cd2+ and Zn2+ and exhibited a highly selective turn-on response toward Cd2+ over biologically related metal ions. The dissociation constant and detection limit of 5.4 x 10− 6 mol L− 1 and 4.4 × 10− 7 mol L− 1, respectively, were calculated using fluorescence titration experiments. Studies with closely related analogs showed that the bis-heterocyclic moiety of 3 acted as both a coordination site for Cd2+ and a fluorophore. Further, the methylsulfanyl group of compound 3 is essential for achieving selective and sensitive Cd2+ detection. Fluorescence microscopy studies using living cells revealed that the cell membrane permeability of compound 3 is sufficient to detect intracellular Cd2+. These results indicate that novel bis-heterocyclic molecule 3 has considerable potential as a fluorescence probe for Cd2+ in biological applications.
Springer Science and Business Media LLC
Title: Selective cadmium fluorescence probe based on bis-heterocyclic molecule and its imaging in cells
Description:
Abstract
Fluorescence probes that selectively image cadmium are useful for detecting and tracking the amount of Cd2+ in cells and tissues.
In this study, we designed and synthesized a novel Cd2+ fluorescence probe based on the pyridine-pyrimidine structure, 4-(methylsulfanyl)-6-(pyridin-2-yl)pyrimidin-2-amine (3), as a low-molecular-weight fluorescence probe for Cd2+.
Compound 3 could successfully discriminate between Cd2+ and Zn2+ and exhibited a highly selective turn-on response toward Cd2+ over biologically related metal ions.
The dissociation constant and detection limit of 5.
4 x 10− 6 mol L− 1 and 4.
4 × 10− 7 mol L− 1, respectively, were calculated using fluorescence titration experiments.
Studies with closely related analogs showed that the bis-heterocyclic moiety of 3 acted as both a coordination site for Cd2+ and a fluorophore.
Further, the methylsulfanyl group of compound 3 is essential for achieving selective and sensitive Cd2+ detection.
Fluorescence microscopy studies using living cells revealed that the cell membrane permeability of compound 3 is sufficient to detect intracellular Cd2+.
These results indicate that novel bis-heterocyclic molecule 3 has considerable potential as a fluorescence probe for Cd2+ in biological applications.
Related Results
Proteomics and bioinformatics analysis reveal potential roles of cadmium-binding proteins in cadmium tolerance and accumulation of
Enterobacter cloacae
Proteomics and bioinformatics analysis reveal potential roles of cadmium-binding proteins in cadmium tolerance and accumulation of
Enterobacter cloacae
Background
Enterobacter cloacae
(EC) is a Gram-negative bacterium that has been utilized extensively in biotechnolo...
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
EnvironmentalSurveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) This comprehensive protocol suite enables systematic environmental surveillance for avian influenza...
Kolaviron, A Flavonoid From Garcinia Kola Seeds, Ameliorates Experimental Colitis In Rats Exposed To Cadmium
Kolaviron, A Flavonoid From Garcinia Kola Seeds, Ameliorates Experimental Colitis In Rats Exposed To Cadmium
Cadmium has been shown to potentiate experimental ulcers in laboratory animals. Its ability to predispose humans to ulcerative colitis has also been postulated. Polyphenols and fla...
Cadmium Contamination, Bioavailability, Uptake Mechanism and Remediation Strategies in Soil-Plant-Environment System: a Critical Review
Cadmium Contamination, Bioavailability, Uptake Mechanism and Remediation Strategies in Soil-Plant-Environment System: a Critical Review
Background:
Cadmium contamination is becoming an important issue globally due to its
high toxicity and carcinogenicity, leading to detrimental effects on both environmental and hum...
Electrochemistry of Cadmium
Electrochemistry of Cadmium
Abstract
The sections in this article are
Double‐layer Properties of Cadmium Electrodes
Electroche...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Applications of Total Scanning Fluorescence to Exploration Geochemistry
Applications of Total Scanning Fluorescence to Exploration Geochemistry
ABSTRACT
A total scanning fluorescence technique is described for correlation (oil/oil and oil/source rock) and surface geochemical prospecting studies. The fluor...
Detection and Imaging Application of miRNA in Cells and Living Organisms with Nano-Fluorescent Probes Made by Novel Synthesis Materials
Detection and Imaging Application of miRNA in Cells and Living Organisms with Nano-Fluorescent Probes Made by Novel Synthesis Materials
As a kind of rare earth fluorescent material, the rare earth upconversion nanomaterial can be applied in various fields such as biological detection and imaging, solar cells, and s...

