Herein, we present a generalizable and versatile strategy to engineer synthetic DNA ligand-binding devices that can be programmed to load and release a specific ligand at a defined temperature. We do so by re-engineering two model DNA-based receptors: a triplex-forming bivalent DNA-based receptor that recognizes a specific DNA sequence and an ATP-binding aptamer. The temperature at which these receptors load/release their ligands can be finely modulated by controlling the entropy associated with the linker connecting the two ligand-binding domains. The availability of a set of receptors with tunable and reversible temperature dependence allows achieving complex load/release behavior such as sustained ligand release over a wide temperature range. Similar programmable thermo-responsive synthetic ligand-binding devices can be of utility in applications such as drug delivery and production of smart materials.

Mariottini, D., Idili, A., Ercolani, G., Ricci, F. (2023). Thermo-programmed synthetic DNA-based receptors. ACS NANO, 17(3), 1998-2006 [10.1021/acsnano.2c07039].

Thermo-programmed synthetic DNA-based receptors

D. Mariottini;A. Idili
;
G. Ercolani;F. Ricci
2023-01-23

Abstract

Herein, we present a generalizable and versatile strategy to engineer synthetic DNA ligand-binding devices that can be programmed to load and release a specific ligand at a defined temperature. We do so by re-engineering two model DNA-based receptors: a triplex-forming bivalent DNA-based receptor that recognizes a specific DNA sequence and an ATP-binding aptamer. The temperature at which these receptors load/release their ligands can be finely modulated by controlling the entropy associated with the linker connecting the two ligand-binding domains. The availability of a set of receptors with tunable and reversible temperature dependence allows achieving complex load/release behavior such as sustained ligand release over a wide temperature range. Similar programmable thermo-responsive synthetic ligand-binding devices can be of utility in applications such as drug delivery and production of smart materials.
23-gen-2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/01 - CHIMICA ANALITICA
English
Con Impact Factor ISI
temperature-responsive nanocarriers; intrinsic disorder; entropy; molecular switches; DNA nanotechnology
Mariottini, D., Idili, A., Ercolani, G., Ricci, F. (2023). Thermo-programmed synthetic DNA-based receptors. ACS NANO, 17(3), 1998-2006 [10.1021/acsnano.2c07039].
Mariottini, D; Idili, A; Ercolani, G; Ricci, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/313479
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