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<dc:title xml:lang="fr">Les nanoparticules de MnFe2O4 superparamagnétiques pour la nano-médecine</dc:title>
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<dc:subject xml:lang="fr">Nanoparticules d’oxyde de fer</dc:subject>
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<dc:subject xml:lang="fr">Coprecipitation</dc:subject>
<dc:subject xml:lang="fr">Décomposition thermique</dc:subject>
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<dcterms:abstract xml:lang="fr">L’utilisation des nanoparticules d’oxyde de fer dans la nanomédecine connaît de grands progrès et devrait permettre d’améliorer la détection précoce et le traitement de nombreuses pathologies, en particulier pour l’oncologie qui constitue un enjeu majeur de santé publique. En effet, la lutte contre le cancer est aujourd’hui élevée au rang de cause nationale pour remplacer les principales voies thérapeutiques qui sont la chirurgie, la radiothérapie et la chimiothérapie. Dans le cadre de cette thèse, nous nous sommes intéressés au volet diagnostic en développant des procédés de synthèse de ces nanoparticules, à savoir la coprecipitation et la décomposition thermique, permettant d'améliorer significativement les propriétés structurales et magnétiques de la ferrite, d'abord, en les substituant par des éléments alcalino-terreux et biocompatibles, ensuite, en synthétisant des nanoparticules en core-shell et enfin en fonctionnalisant leurs surfaces pour qu'elles s'intègrent efficacement dans l'organisme.</dcterms:abstract>
<dcterms:abstract xml:lang="en">Résumé en anglais suivi des mots-clés en anglaisThe use of iron oxide nanoparticles in nanomedicine is making great progress and should make it possible to improve the early detection and treatment of numerous pathologies, in particular for oncology, which constitutes a major public health issue. In fact, the fight against cancer is now elevated to the rank of national cause to replace the main therapeutic pathways, which are surgery, radiotherapy and chemotherapy. In this thesis, we focused on the diagnostic part by developing methods for synthesizing these nanoparticles, namely coprecipitation and thermal decomposition, to significantly improve the structural and magnetic properties of ferrite, firstly by substituting them with alkaline-earth and biocompatible elements, then synthesizing core-shell nanoparticles and finally functionalizing their surfaces so that they integrate effectively into the body.</dcterms:abstract>
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