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Surface-Functionalized Nanoparticles by Olefin Metathesis: A Chemoselective Approach for In Vivo Characterization of Atherosclerosis Plaque.
Salinas, Beatriz; Ruiz-Cabello, Jesús; Lechuga-Vieco, Ana V; Benito, Marina; Herranz, Fernando.
Affiliation
  • Salinas B; Advanced Imaging Unit, Fundación Centro Nacional de Investigaciones Cardiovasculares (CNIC) and CIBER de enfermedades respiratorias(CIBERES), C/Melchor Fernández-Almagro 3. 28029 Madrid (Spain).
  • Ruiz-Cabello J; Universidad Complutense de Madrid, Plaza Ramón y Cajal, 28040 Madrid (Spain).
  • Lechuga-Vieco AV; Advanced Imaging Unit, Fundación Centro Nacional de Investigaciones Cardiovasculares (CNIC) and CIBER de enfermedades respiratorias(CIBERES), C/Melchor Fernández-Almagro 3. 28029 Madrid (Spain).
  • Benito M; Universidad Complutense de Madrid, Plaza Ramón y Cajal, 28040 Madrid (Spain).
  • Herranz F; Advanced Imaging Unit, Fundación Centro Nacional de Investigaciones Cardiovasculares (CNIC) and CIBER de enfermedades respiratorias(CIBERES), C/Melchor Fernández-Almagro 3. 28029 Madrid (Spain).
Chemistry ; 21(29): 10450-6, 2015 Jul 13.
Article de En | MEDLINE | ID: mdl-26096657
The use of click chemistry reactions for the functionalization of nanoparticles is particularly useful to modify the surface in a well-defined manner and to enhance the targeting properties, thus facilitating clinical translation. Here it is demonstrated that olefin metathesis can be used for the chemoselective functionalization of iron oxide nanoparticles with three different examples. This approach enables, in one step, the synthesis and functionalization of different water-stable magnetite-based particles from oleic acid-coated counterparts. The surface of the nanoparticles was completely characterized showing how the metathesis approach introduces a large number of hydrophilic molecules on their coating layer. As an example of the possible applications of these new nanocomposites, a focus was taken on atherosclerosis plaques. It is also demonstrated how the in vitro properties of one of the probes, particularly its Ca(2+) -binding properties, mediate their final in vivo use; that is, the selective accumulation in atherosclerotic plaques. This opens promising new applications to detect possible microcalcifications associated with plaque vulnerability. The accumulation of the new imaging tracers is demonstrated by in vivo magnetic resonance imaging of carotids and aorta in the ApoE(-/-) mouse model and the results were confirmed by histology.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Aorte / Composés du fer III / Alcènes / Athérosclérose / Nanoparticules / Plaque d'athérosclérose Type d'étude: Diagnostic_studies / Prognostic_studies Limites: Animals Langue: En Journal: Chemistry Sujet du journal: QUIMICA Année: 2015 Type de document: Article Pays de publication: Allemagne

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Aorte / Composés du fer III / Alcènes / Athérosclérose / Nanoparticules / Plaque d'athérosclérose Type d'étude: Diagnostic_studies / Prognostic_studies Limites: Animals Langue: En Journal: Chemistry Sujet du journal: QUIMICA Année: 2015 Type de document: Article Pays de publication: Allemagne