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Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars

[Image: see text] We evaluate, by means of synchrotron small-angle X-ray scattering, the shape and mutual interactions of DNA tetravalent nanostars as a function of temperature in both the gas-like state and across the gel transition. To this end, we calculate the form factor from coarse-grained mol...

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Autores principales: Spinozzi, Francesco, Ortore, Maria Grazia, Nava, Giovanni, Bomboi, Francesca, Carducci, Federica, Amenitsch, Heinz, Bellini, Tommaso, Sciortino, Francesco, Mariani, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8010795/
https://www.ncbi.nlm.nih.gov/pubmed/32787014
http://dx.doi.org/10.1021/acs.langmuir.0c01520
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author Spinozzi, Francesco
Ortore, Maria Grazia
Nava, Giovanni
Bomboi, Francesca
Carducci, Federica
Amenitsch, Heinz
Bellini, Tommaso
Sciortino, Francesco
Mariani, Paolo
author_facet Spinozzi, Francesco
Ortore, Maria Grazia
Nava, Giovanni
Bomboi, Francesca
Carducci, Federica
Amenitsch, Heinz
Bellini, Tommaso
Sciortino, Francesco
Mariani, Paolo
author_sort Spinozzi, Francesco
collection PubMed
description [Image: see text] We evaluate, by means of synchrotron small-angle X-ray scattering, the shape and mutual interactions of DNA tetravalent nanostars as a function of temperature in both the gas-like state and across the gel transition. To this end, we calculate the form factor from coarse-grained molecular dynamics simulations with a novel method that includes hydration effects; we approximate the radial interaction of DNA nanostars as a hard-sphere potential complemented by a repulsive and an attractive Yukawa term; and we predict the structure factors by exploiting the perturbative random phase approximation of the Percus–Yevick equation. Our approach enables us to fit all the data by selecting the particle radius and the width and amplitude of the attractive potential as free parameters. We determine the evolution of the structure factor across gelation and detect subtle changes of the effective interparticle interactions, that we associate to the temperature and concentration dependence of the particle size. Despite the approximations, the approach here adopted offers new detailed insights into the structure and interparticle interactions of this fascinating system.
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spelling pubmed-80107952021-03-31 Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars Spinozzi, Francesco Ortore, Maria Grazia Nava, Giovanni Bomboi, Francesca Carducci, Federica Amenitsch, Heinz Bellini, Tommaso Sciortino, Francesco Mariani, Paolo Langmuir [Image: see text] We evaluate, by means of synchrotron small-angle X-ray scattering, the shape and mutual interactions of DNA tetravalent nanostars as a function of temperature in both the gas-like state and across the gel transition. To this end, we calculate the form factor from coarse-grained molecular dynamics simulations with a novel method that includes hydration effects; we approximate the radial interaction of DNA nanostars as a hard-sphere potential complemented by a repulsive and an attractive Yukawa term; and we predict the structure factors by exploiting the perturbative random phase approximation of the Percus–Yevick equation. Our approach enables us to fit all the data by selecting the particle radius and the width and amplitude of the attractive potential as free parameters. We determine the evolution of the structure factor across gelation and detect subtle changes of the effective interparticle interactions, that we associate to the temperature and concentration dependence of the particle size. Despite the approximations, the approach here adopted offers new detailed insights into the structure and interparticle interactions of this fascinating system. American Chemical Society 2020-08-10 2020-09-08 /pmc/articles/PMC8010795/ /pubmed/32787014 http://dx.doi.org/10.1021/acs.langmuir.0c01520 Text en Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Spinozzi, Francesco
Ortore, Maria Grazia
Nava, Giovanni
Bomboi, Francesca
Carducci, Federica
Amenitsch, Heinz
Bellini, Tommaso
Sciortino, Francesco
Mariani, Paolo
Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title_full Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title_fullStr Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title_full_unstemmed Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title_short Gelling without Structuring: A SAXS Study of the Interactions among DNA Nanostars
title_sort gelling without structuring: a saxs study of the interactions among dna nanostars
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8010795/
https://www.ncbi.nlm.nih.gov/pubmed/32787014
http://dx.doi.org/10.1021/acs.langmuir.0c01520
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