Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI

Iron oxide microparticles (MPIO) are better MRI contrast agents than nanoparticles, but are of limited clinical use as they are not degradable and so risk toxicity. Here the authors present an iron oxide microparticle MRI contrast agent with peptide linkers that enable degradation into non-toxic nan...

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Autores principales: Francisco Perez-Balderas, Sander I. van Kasteren, Alaa A. A. Aljabali, Kim Wals, Sébastien Serres, Andrew Jefferson, Manuel Sarmiento Soto, Alexandre A. Khrapitchev, James R Larkin, Claire Bristow, Seung Seo Lee, Guillaume Bort, Filippo De Simone, Sandra J. Campbell, Robin P. Choudhury, Daniel C. Anthony, Nicola R. Sibson, Benjamin G. Davis
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/d6193834fc8f46f68e4a4160e6d4d903
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spelling oai:doaj.org-article:d6193834fc8f46f68e4a4160e6d4d9032021-12-02T14:42:44ZCovalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI10.1038/ncomms142542041-1723https://doaj.org/article/d6193834fc8f46f68e4a4160e6d4d9032017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14254https://doaj.org/toc/2041-1723Iron oxide microparticles (MPIO) are better MRI contrast agents than nanoparticles, but are of limited clinical use as they are not degradable and so risk toxicity. Here the authors present an iron oxide microparticle MRI contrast agent with peptide linkers that enable degradation into non-toxic nanoparticlesin vivo.Francisco Perez-BalderasSander I. van KasterenAlaa A. A. AljabaliKim WalsSébastien SerresAndrew JeffersonManuel Sarmiento SotoAlexandre A. KhrapitchevJames R LarkinClaire BristowSeung Seo LeeGuillaume BortFilippo De SimoneSandra J. CampbellRobin P. ChoudhuryDaniel C. AnthonyNicola R. SibsonBenjamin G. DavisNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Francisco Perez-Balderas
Sander I. van Kasteren
Alaa A. A. Aljabali
Kim Wals
Sébastien Serres
Andrew Jefferson
Manuel Sarmiento Soto
Alexandre A. Khrapitchev
James R Larkin
Claire Bristow
Seung Seo Lee
Guillaume Bort
Filippo De Simone
Sandra J. Campbell
Robin P. Choudhury
Daniel C. Anthony
Nicola R. Sibson
Benjamin G. Davis
Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
description Iron oxide microparticles (MPIO) are better MRI contrast agents than nanoparticles, but are of limited clinical use as they are not degradable and so risk toxicity. Here the authors present an iron oxide microparticle MRI contrast agent with peptide linkers that enable degradation into non-toxic nanoparticlesin vivo.
format article
author Francisco Perez-Balderas
Sander I. van Kasteren
Alaa A. A. Aljabali
Kim Wals
Sébastien Serres
Andrew Jefferson
Manuel Sarmiento Soto
Alexandre A. Khrapitchev
James R Larkin
Claire Bristow
Seung Seo Lee
Guillaume Bort
Filippo De Simone
Sandra J. Campbell
Robin P. Choudhury
Daniel C. Anthony
Nicola R. Sibson
Benjamin G. Davis
author_facet Francisco Perez-Balderas
Sander I. van Kasteren
Alaa A. A. Aljabali
Kim Wals
Sébastien Serres
Andrew Jefferson
Manuel Sarmiento Soto
Alexandre A. Khrapitchev
James R Larkin
Claire Bristow
Seung Seo Lee
Guillaume Bort
Filippo De Simone
Sandra J. Campbell
Robin P. Choudhury
Daniel C. Anthony
Nicola R. Sibson
Benjamin G. Davis
author_sort Francisco Perez-Balderas
title Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
title_short Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
title_full Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
title_fullStr Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
title_full_unstemmed Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI
title_sort covalent assembly of nanoparticles as a peptidase-degradable platform for molecular mri
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/d6193834fc8f46f68e4a4160e6d4d903
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