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Cellular Delivery and Photochemical Activation of Antisense Agents through a Nucleobase Caging Strategy.

ACS Chem Biol.. 2013-8; 
Jeane M. Govan, Rajendra Uprety, Meryl Thomas, Hrvoje Lusic, Mark O. Lively, Alexander Deiters. North Carolina State University, Department of Chemistry, Raleigh, NC 27695.
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Abstract

Antisense oligonucleotides are powerful tools to regulate gene expression in cells and model organisms. However, a transfection or microinjection is needed for efficient delivery of the antisense agent. We report the conjugation of multiple HIV TAT peptides to a hairpin-protected antisense agent through a light-cleavable nucleobase caging group. This conjugation allows for the facile delivery of the antisense agent without a transfection reagent and photochemical activation offers precise control over gene expression. The developed approach is highly modular, as demonstrated by the conjugation of folic acid to the caged antisense agent. This enabled targeted cell delivery through cell-surface folate receptors f... More

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