Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation

The instability of DNA nanostructures in physiological environments has hampered their use as therapeutics and diagnostic agents inin vivoapplications. Here, the authors show that coating DNA origami with oligolysine-PEG moieties improves their pharmacokinetic properties in mouse models.

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Autores principales: Nandhini Ponnuswamy, Maartje M. C. Bastings, Bhavik Nathwani, Ju Hee Ryu, Leo Y. T. Chou, Mathias Vinther, Weiwei Aileen Li, Frances M. Anastassacos, David J. Mooney, William M. Shih
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/50a682a815284a8485d185a430fa9b97
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spelling oai:doaj.org-article:50a682a815284a8485d185a430fa9b972021-12-02T14:40:33ZOligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation10.1038/ncomms156542041-1723https://doaj.org/article/50a682a815284a8485d185a430fa9b972017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15654https://doaj.org/toc/2041-1723The instability of DNA nanostructures in physiological environments has hampered their use as therapeutics and diagnostic agents inin vivoapplications. Here, the authors show that coating DNA origami with oligolysine-PEG moieties improves their pharmacokinetic properties in mouse models.Nandhini PonnuswamyMaartje M. C. BastingsBhavik NathwaniJu Hee RyuLeo Y. T. ChouMathias VintherWeiwei Aileen LiFrances M. AnastassacosDavid J. MooneyWilliam M. ShihNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nandhini Ponnuswamy
Maartje M. C. Bastings
Bhavik Nathwani
Ju Hee Ryu
Leo Y. T. Chou
Mathias Vinther
Weiwei Aileen Li
Frances M. Anastassacos
David J. Mooney
William M. Shih
Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
description The instability of DNA nanostructures in physiological environments has hampered their use as therapeutics and diagnostic agents inin vivoapplications. Here, the authors show that coating DNA origami with oligolysine-PEG moieties improves their pharmacokinetic properties in mouse models.
format article
author Nandhini Ponnuswamy
Maartje M. C. Bastings
Bhavik Nathwani
Ju Hee Ryu
Leo Y. T. Chou
Mathias Vinther
Weiwei Aileen Li
Frances M. Anastassacos
David J. Mooney
William M. Shih
author_facet Nandhini Ponnuswamy
Maartje M. C. Bastings
Bhavik Nathwani
Ju Hee Ryu
Leo Y. T. Chou
Mathias Vinther
Weiwei Aileen Li
Frances M. Anastassacos
David J. Mooney
William M. Shih
author_sort Nandhini Ponnuswamy
title Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
title_short Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
title_full Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
title_fullStr Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
title_full_unstemmed Oligolysine-based coating protects DNA nanostructures from low-salt denaturation and nuclease degradation
title_sort oligolysine-based coating protects dna nanostructures from low-salt denaturation and nuclease degradation
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/50a682a815284a8485d185a430fa9b97
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AT davidjmooney oligolysinebasedcoatingprotectsdnananostructuresfromlowsaltdenaturationandnucleasedegradation
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