Aromatic oligomers that form hetero duplexes in aqueous solution. 2002

Gregory J Gabriel, and Brent L Iverson
Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas, USA.

The electron-deficient 1,4,5,8-naphthalenetetracarboxylic diimide (Ndi) and electron-rich 1,5-dialkoxynaphthalene (Dan) have been shown to complex strongly with each other in water due to the hydrophobic effect as modulated through the electrostatic complementarity of the stacked dimer. Previously, oligomers of alternating Ndi and Dan units, termed aedamers, were the first foldamers to employ intramolecular aromatic stacking to effect the formation of secondary structure of nonnatural chains in aqueous solution. Described here is the use of this aromatic-aromatic (or pi-pi) interaction, this time in an intermolecular format, to demonstrate the self-assembly of stable hetero duplexes from a set of molecular strands (1a-4a) and (1b-4b) incorporating Ndi and Dan units, respectively. A 1-to-1 binding stoichiometry was determined from NMR and isothermal titration calorimetry (ITC) investigations, and these experiments indicated that association is enthalpically favored with the tetra-Ndi (4a) and tetra-Dan (4b) strands forming hetero duplexes (4a:4b) with a stability constant of 350 000 M-1 at T = 318 K. Polyacrylamide gel electrophoresis (PAGE) also illustrated the strong interaction between 4a and 4b and support a 1-to-1 binding mode even when one component is in slight excess. Overall, this system is the first to utilize complementary aromatic units to drive discrete self-assembly in aqueous solution. This new approach for designing assemblies is encouraging for future development of duplex systems with highly programmable modes of binding in solution or on surfaces.

UI MeSH Term Description Entries
D007094 Imides Organic compounds containing two acyl groups bound to NITROGEN. Imide
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008968 Molecular Conformation The characteristic three-dimensional shape of a molecule. Molecular Configuration,3D Molecular Structure,Configuration, Molecular,Molecular Structure, Three Dimensional,Three Dimensional Molecular Structure,3D Molecular Structures,Configurations, Molecular,Conformation, Molecular,Conformations, Molecular,Molecular Configurations,Molecular Conformations,Molecular Structure, 3D,Molecular Structures, 3D,Structure, 3D Molecular,Structures, 3D Molecular
D009281 Naphthalenes Two-ring crystalline hydrocarbons isolated from coal tar. They are used as intermediates in chemical synthesis, as insect repellents, fungicides, lubricants, preservatives, and, formerly, as topical antiseptics.
D000577 Amides Organic compounds containing the -CO-NH2 radical. Amides are derived from acids by replacement of -OH by -NH2 or from ammonia by the replacement of H by an acyl group. (From Grant & Hackh's Chemical Dictionary, 5th ed) Amide
D013816 Thermodynamics A rigorously mathematical analysis of energy relationships (heat, work, temperature, and equilibrium). It describes systems whose states are determined by thermal parameters, such as temperature, in addition to mechanical and electromagnetic parameters. (From Hawley's Condensed Chemical Dictionary, 12th ed) Thermodynamic
D040761 Biomimetic Materials Materials fabricated by BIOMIMETICS techniques, i.e., based on natural processes found in biological systems. Bio-Inspired Devices,Bio-Inspired Materials,Bioinspired Devices,Bioinspired Materials,Biomimetic Devices,Biomimicry Devices,Biomimicry Materials,Bio Inspired Devices,Bio Inspired Materials,Bio-Inspired Device,Bio-Inspired Material,Bioinspired Device,Bioinspired Material,Biomimetic Device,Biomimetic Material,Biomimicry Device,Biomimicry Material,Device, Bio-Inspired,Device, Bioinspired,Device, Biomimetic,Device, Biomimicry,Devices, Bio-Inspired,Devices, Bioinspired,Devices, Biomimetic,Devices, Biomimicry,Material, Bio-Inspired,Material, Bioinspired,Material, Biomimetic,Material, Biomimicry,Materials, Bio-Inspired,Materials, Bioinspired,Materials, Biomimetic,Materials, Biomimicry

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