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Hierarchically Assembled Theranostic Nanostructures for siRNA Delivery and Imaging Applications

Research Authors
Ritu Shrestha, Mahmoud Elsabahy, Hannah Luehmann, Sandani Samarajeewa, Stephanie Florez-Malaver, Nam S. Lee, Michael J. Welch, Yongjian Liu, Karen L. Wooley
Research Department
Research Journal
J. Am. Chem. Soc., dx.doi.org/10.1021/ja306616n
Research Rank
1
Research Vol
Vol. 134
Research Year
2012
Research Member
Research Abstract

Dual functional hierarchically assembled nanostructures, with two unique functions of carrying therapeutic cargo electrostatically and maintaining radiolabeled imaging agents covalently within separate component building blocks, have been developed via the supramolecular assembly of several spherical cationic shell cross-linked nanoparticles clustered around a central anionic shell cross-linked cylinder. The shells of the cationic nanoparticles and the hydrophobic core domain of the anionic central cylindrical nanostructure of the assemblies were utilized to complex negatively charged nucleic acids (siRNA) and to undergo radiolabeling, respectively, for potential theranostic applications. The assemblies exhibited exceptional cell transfection and radiolabeling efficiencies, providing an overall advantage over the individual components, which could each facilitate only one or the other of the functions.