Title of article :
Ratiometric Optical PEBBLE Nanosensors for Real-Time Magnesium Ion Concentrations Inside Viable Cells
Author/Authors :
Park، Edwin J. نويسنده , , Brasuel، Murphy نويسنده , , Behrend، Caleb نويسنده , , Philbert، Martin A. نويسنده , , Kopelman، Raoul نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2003
Pages :
-3783
From page :
3784
To page :
0
Abstract :
This paper presents the development and characterization of a highly selective magnesium fluorescent optical nanosensor, made possible by PEBBLE (probe encapsulated by biologically localized embedding) technology. A ratiometric sensor has been developed by co-immobilizing a dye that is sensitive to and highly selective for magnesium, with a reference dye in a matrix. The sensors are prepared via a microemulsion polymerization process, which entraps the sensing components inside a polymer matrix. The resultant spherical sensors are ~40 nm in diameter. The Coumarin 343 (C343) dye, which by itself does not enter the cell, when immobilized in a PEBBLE is used as the magnesium-selective agent that provides the high and necessary selectivity over other intracellular ions, such as Ca^2+, Na+, and K+. The dynamic range of these sensors was 1-30 mM, with a linear range from 1 to 10 mM, with a response time of <4 s. In contrast to free dye, these nano-optodes are not perturbed by proteins. They are fully reversible and exhibit minimal leaching and photobleaching over extended periods of time. In vitro intracellular changes in Mg^2+ concentration were monitored in C6 glioma cells, which remained viable after PEBBLE delivery via gene gun injection. The selectivity for Mg^2+ along with the biocompatibility of the matrix provides a new and reliable tool for intracellular magnesium measurements.
Keywords :
gas_phase measurement , particle_phase measurement
Journal title :
Analytical Chemistry
Serial Year :
2003
Journal title :
Analytical Chemistry
Record number :
51488
Link To Document :
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