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<dc:title xml:lang="fr">Conception de biomatériaux protéiques et polymères innovants à visée anti-inflammatoire</dc:title>
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<dcterms:abstract xml:lang="fr">Les maladies inflammatoires chroniques nécessitent de nouvelles stratégies thérapeutiques. Dans ce contexte des biomatériaux à base d’albumine, chargés en dexaméthasone et infliximab, ont été développés sous formes de membranes, micro- et nanoparticules. Ces matériaux biocompatibles ont démontré une réduction de plusieurs marqueurs inflammatoires dans différents modèles in vitro. De plus, divers polymères ont été examinés pour leurs propriétés anti-inflammatoires ou pro-apoptotiques, révélant un rôle intéressant du polyéthylèneimine et de la polyarginine.Ces nouvelles stratégies offrent une méthode innovante et biocompatible de délivrance de molécules anti-inflammatoires. Elles explorent également le potentiel de polymères bien connus dans la régulation de l’inflammation. En combinant divers mécanismes anti-inflammatoires complémentaires, ces approches montrent un grand potentiel thérapeutique.</dcterms:abstract>
<dcterms:abstract xml:lang="en">Chronic inflammatory diseases require new therapeutic strategies. In this context, albumin-based biomaterials, loaded with dexamethasone and infliximab, have been developed in the form of membranes, micro-, and nanoparticles. These biocompatible materials have demonstrated a reduction in several inflammatory markers in various in vitro models. Additionally, different polymers have been examined for their anti-inflammatory or pro-apoptotic properties, revealing an interesting role for polyethyleneimine and polyarginine. These new strategies offer an innovative and biocompatible method for delivering anti-inflammatory molecules. They also explore the potential of well-known polymers in regulating inflammation. By combining various complementary anti-inflammatory mechanisms, these approaches show great therapeutic potential.</dcterms:abstract>
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