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Self-assembled cationic #-cyclodextrin nanostructures for siRNA delivery

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journal contribution
posted on 2022-08-24, 13:58 authored by Raghvendra Pratap Singh, Tania Hidalgo, Pierre-André Cazade, Raphael Darcy, Michael Cronin, Irina Dorin, Caitrionia M. O'Driscoll, Damien ThompsonDamien Thompson
Functionalized cyclodextrin molecules assemble into a wide variety of superstructures in solution, which are of interest for drug delivery and other nanomaterial and biomaterial applications. Here we use a combined simulation and experimental approach to probe the coassembly of siRNA and cationic cyclodextrin (c-CD) derivatives into a highly stable gene delivery nanostructure. The c-CD form supramolecular structures via interdigitation of their aliphatic tails, analogous to the formation of lipid bilayers and micelles. The native conformation of siRNA is preserved by the encapsulating c-CD superstructure in an extensive hydrogen-bonding network between the positively charged side arms of c-CD and the negatively charged siRNA backbone. The stability of the complexation is confirmed using isothermal titration calorimetry, and the experimental/simulation codesign methodology opens new avenues for creation of highly engineerable gene delivery vectors.

Funding

Study on Aerodynamic Characteristics Control of Slender Body Using Active Flow Control Technique

Japan Society for the Promotion of Science

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History

Publication

Molecular Pharmaceutics;16 (3), pp. 1358-1366

Publisher

American Chemical Society

Note

peer-reviewed

Other Funding information

SFI, HEA, EI, ERC

Rights

© 2019 ACS This document is the Accepted Manuscript version of a Published Work that appeared in final form in Molecular Pharmaceutics, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see

Language

English

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