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Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity

[Image: see text] Nature-inspired nanosized formulations based on an imageable, small-sized inorganic core scaffold, on which biomolecules are assembled to form nanobiomimetics, hold great promise for both early diagnostics and developed therapeutics. Nevertheless, the fabrication of nanobiomimetics...

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Autores principales: Cohen, Dana, Mashiach, Reut, Houben, Lothar, Galisova, Andrea, Addadi, Yoseph, Kain, David, Lubart, Alisa, Blinder, Pablo, Allouche-Arnon, Hyla, Bar-Shir, Amnon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155386/
https://www.ncbi.nlm.nih.gov/pubmed/33872494
http://dx.doi.org/10.1021/acsnano.1c01040
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author Cohen, Dana
Mashiach, Reut
Houben, Lothar
Galisova, Andrea
Addadi, Yoseph
Kain, David
Lubart, Alisa
Blinder, Pablo
Allouche-Arnon, Hyla
Bar-Shir, Amnon
author_facet Cohen, Dana
Mashiach, Reut
Houben, Lothar
Galisova, Andrea
Addadi, Yoseph
Kain, David
Lubart, Alisa
Blinder, Pablo
Allouche-Arnon, Hyla
Bar-Shir, Amnon
author_sort Cohen, Dana
collection PubMed
description [Image: see text] Nature-inspired nanosized formulations based on an imageable, small-sized inorganic core scaffold, on which biomolecules are assembled to form nanobiomimetics, hold great promise for both early diagnostics and developed therapeutics. Nevertheless, the fabrication of nanobiomimetics that allow noninvasive background-free mapping of pathological events with improved sensitivity, enhanced specificity, and multiplexed capabilities remains a major challenge. Here, we introduce paramagnetic glyconanofluorides as small-sized (<10 nm) glycomimetics for immunotargeting and sensitive noninvasive in vivo(19)F magnetic resonance imaging (MRI) mapping of inflammation. A very short T(1) relaxation time (70 ms) of the fluorides was achieved by doping the nanofluorides’ solid crystal core with paramagnetic Sm(3+), resulting in a significant 8-fold enhancement in their (19)F MRI sensitivity, allowing faster acquisition and improved detectability levels. The fabricated nanosized glycomimetics exhibit significantly enhanced uptake within activated immune cells, providing background-free in vivo mapping of inflammatory activity, demonstrated in both locally induced inflammation and clinically related neuropathology animal models. Fabricating two types of nanofluorides, each with a distinct chemical shift, allowed us to exploit the color-like features of (19)F MRI to map, in real time, immune specificity and preferred targetability of the paramagnetic glyconanofluorides, demonstrating the approach’s potential extension to noninvasive multitarget imaging scenarios that are not yet applicable for nanobiomimetics based on other nanocrystal cores.
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spelling pubmed-81553862021-05-28 Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity Cohen, Dana Mashiach, Reut Houben, Lothar Galisova, Andrea Addadi, Yoseph Kain, David Lubart, Alisa Blinder, Pablo Allouche-Arnon, Hyla Bar-Shir, Amnon ACS Nano [Image: see text] Nature-inspired nanosized formulations based on an imageable, small-sized inorganic core scaffold, on which biomolecules are assembled to form nanobiomimetics, hold great promise for both early diagnostics and developed therapeutics. Nevertheless, the fabrication of nanobiomimetics that allow noninvasive background-free mapping of pathological events with improved sensitivity, enhanced specificity, and multiplexed capabilities remains a major challenge. Here, we introduce paramagnetic glyconanofluorides as small-sized (<10 nm) glycomimetics for immunotargeting and sensitive noninvasive in vivo(19)F magnetic resonance imaging (MRI) mapping of inflammation. A very short T(1) relaxation time (70 ms) of the fluorides was achieved by doping the nanofluorides’ solid crystal core with paramagnetic Sm(3+), resulting in a significant 8-fold enhancement in their (19)F MRI sensitivity, allowing faster acquisition and improved detectability levels. The fabricated nanosized glycomimetics exhibit significantly enhanced uptake within activated immune cells, providing background-free in vivo mapping of inflammatory activity, demonstrated in both locally induced inflammation and clinically related neuropathology animal models. Fabricating two types of nanofluorides, each with a distinct chemical shift, allowed us to exploit the color-like features of (19)F MRI to map, in real time, immune specificity and preferred targetability of the paramagnetic glyconanofluorides, demonstrating the approach’s potential extension to noninvasive multitarget imaging scenarios that are not yet applicable for nanobiomimetics based on other nanocrystal cores. American Chemical Society 2021-04-19 2021-04-27 /pmc/articles/PMC8155386/ /pubmed/33872494 http://dx.doi.org/10.1021/acsnano.1c01040 Text en © 2021 The Authors. Published by American Chemical Society 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 Cohen, Dana
Mashiach, Reut
Houben, Lothar
Galisova, Andrea
Addadi, Yoseph
Kain, David
Lubart, Alisa
Blinder, Pablo
Allouche-Arnon, Hyla
Bar-Shir, Amnon
Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title_full Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title_fullStr Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title_full_unstemmed Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title_short Glyconanofluorides as Immunotracers with a Tunable Core Composition for Sensitive Hotspot Magnetic Resonance Imaging of Inflammatory Activity
title_sort glyconanofluorides as immunotracers with a tunable core composition for sensitive hotspot magnetic resonance imaging of inflammatory activity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155386/
https://www.ncbi.nlm.nih.gov/pubmed/33872494
http://dx.doi.org/10.1021/acsnano.1c01040
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