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Native Zinc Catalyzes Selective and Traceless Release of Small Molecules in β-Cells.

Citation
Lee, M., et al. “Native Zinc Catalyzes Selective And Traceless Release Of Small Molecules In Β-Cells.”. Journal Of The American Chemical Society, pp. 6477-6482.
Center Joslin Diabetes Center
Author Miseon Lee, Basudeb Maji, Debasish Manna, Sevim Kahraman, Ruth M Elgamal, Jonnell Small, Praveen Kokkonda, Amedeo Vetere, Jacob M Goldberg, Stephen J Lippard, Rohit N Kulkarni, Bridget K Wagner, Amit Choudhary
Abstract

The loss of insulin-producing β-cells is the central pathological event in type 1 and 2 diabetes, which has led to efforts to identify molecules to promote β-cell proliferation, protection, and imaging. However, the lack of β-cell specificity of these molecules jeopardizes their therapeutic potential. A general platform for selective release of small-molecule cargoes in β-cells over other islet cells or other cell-types in an organismal context will be immensely valuable in advancing diabetes research and therapeutic development. Here, we leverage the unusually high Zn(II) concentration in β-cells to develop a Zn(II)-based prodrug system to selectively and tracelessly deliver bioactive small molecules and fluorophores to β-cells. The Zn(II)-targeting mechanism enriches the inactive cargo in β-cells as compared to other pancreatic cells; importantly, Zn(II)-mediated hydrolysis triggers cargo activation. This prodrug system, with modular components that allow for fine-tuning selectivity, should enable the safer and more effective targeting of β-cells.

Year of Publication
2020
Journal
Journal of the American Chemical Society
Volume
142
Issue
14
Number of Pages
6477-6482
Date Published
04/2020
ISSN Number
1520-5126
DOI
10.1021/jacs.0c00099
Alternate Journal
J. Am. Chem. Soc.
PMID
32175731
PMCID
PMC7146867
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