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Amphiphilic-DNA platform for the design of crystalline frameworks with programmable structure and functionality

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Title: Amphiphilic-DNA platform for the design of crystalline frameworks with programmable structure and functionality
Authors: Brady, RA
Brooks, NJ
Foderà, V
Cicuta, P
Di Michele, L
Item Type: Journal Article
Abstract: The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer for many emerging technologies, from energy storage to nanomedicine. Underpinned by the excellent molecular recognition of nucleic acids, along with their facile synthesis and breadth of available functionalizations, DNA nanotechnology is widely acknowledged as a prime route for the rational design of nanostructured materials. Yet, the preparation of crystalline DNA frameworks with programmable structure and functionality remains a challenge. Here we demonstrate the potential of simple amphiphilic DNA motifs, dubbed "C-stars", as a versatile platform for the design of programmable DNA crystals. In contrast to all-DNA materials, in which structure depends on the precise molecular details of individual building blocks, the self-assembly of C-stars is controlled uniquely by their topology and symmetry. Exploiting this robust self-assembly principle, we design a range of topologically identical, but structurally and chemically distinct C-stars that following a one-pot reaction self-assemble into highly porous, functional, crystalline frameworks. Simple design variations allow us to fine-tune the lattice parameter and thus control the partitioning of macromolecules within the frameworks, embed responsive motifs that can induce isothermal disassembly, and include chemical moieties to capture target proteins specifically and reversibly.
Issue Date: 14-Nov-2018
Date of Acceptance: 23-Oct-2018
URI: http://hdl.handle.net/10044/1/65772
DOI: https://dx.doi.org/10.1021/jacs.8b09143
ISSN: 1520-5126
Publisher: American Chemical Society
Start Page: 15384
End Page: 15392
Journal / Book Title: Journal of the American Chemical Society
Volume: 140
Issue: 45
Copyright Statement: © 2018 American Chemical Society
Sponsor/Funder: Engineering & Physical Science Research Council (EPSRC)
Funder's Grant Number: EP/J017566/1
Keywords: Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
NUCLEIC-ACID JUNCTIONS
ENERGY-CONVERSION
ORIGAMI
PROTEIN
NANOSTRUCTURES
NANOPARTICLES
CONSTRUCTION
LIPOSOMES
SINGLE
SIZE
03 Chemical Sciences
General Chemistry
Publication Status: Published
Conference Place: United States
Online Publication Date: 2018-10-23
Appears in Collections:Chemistry
Biological and Biophysical Chemistry
Faculty of Natural Sciences