Small-Molecule Fluorescent Sensors for Investigating Zinc Metalloneurochemistry

被引:567
作者
Nolan, Elizabeth M. [1 ]
Lippard, Stephen J. [1 ]
机构
[1] MIT, Dept Chem, Cambridge, MA 02139 USA
关键词
ZINPYR FAMILY; BIOLOGICAL-SYSTEMS; HIPPOCAMPAL SLICES; NEURONAL ZINC; DYNAMIC-RANGE; RELEASE; BRAIN; ZN2+; PLATFORM; 2'; 7'-DICHLOROFLUORESCEIN;
D O I
10.1021/ar8001409
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The metalloneurochemistry of Zn(II) is of substantial current interest. Zinc is the second most abundant cl-block metal ion in the human brain, and its distribution varies with relatively high concentrations found in the hippocampus. Brain zinc is generally divided into two types, protein-bound and loosely bound, the latter also being termed histochemically observable, chelatable, labile, or mobile zinc. The neurophysiological and neuropathological significance of mobile Zn(II) remains enigmatic. Studies of Zn(II) distribution, translocation, and function in vivo require tools for its detection. Because Zn(II) has a closed-shell d(10) configuration and no convenient spectroscopic signature, fluorescence is a well-suited method for monitoring Zn(II) in biological contexts. This Account summarizes work by our laboratory addressing the design, preparation, characterization, and use of small-molecule fluorescent sensors for imaging Zn(II) in living cells and samples of brain tissue. These sensors provide "turn-on" or ratiometric Zn(II) detection in aqueous solution at neutral pH. By making alterations to the Zn(II)-binding unit and fluorophore platform, we have devised sensors with varied photophysical and metal-binding properties. Several of these probes have been applied to image Zn(II) distribution, uptake, and mobilization in a variety of cell types, including neuronal cultures.
引用
收藏
页码:193 / 203
页数:11
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