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Titel: Cyclodextrin Cationic Polymer-Based Nanoassemblies to Manage Inflammation by Intra-Articular Delivery Strategies
VerfasserIn: Cordaro, Annalaura
Zagami, Roberto
Malanga, Milo
Venkatesan, Jagadeesh Kumar
Alvarez-Lorenzo, Carmen
Cucchiarini, Magali
Piperno, Anna
Mazzaglia, Antonino
Sprache: Englisch
Titel: Nanomaterials
Bandnummer: 10
Heft: 9
Verlag/Plattform: MDPI
Erscheinungsjahr: 2020
Freie Schlagwörter: polymeric cyclodextrins
IL-1β
human marrow-derived mesenchymal stromal cells
rhodamine
DDC-Sachgruppe: 610 Medizin, Gesundheit
Dokumenttyp: Journalartikel / Zeitschriftenartikel
Abstract: Injectable nanobioplatforms capable of locally fighting the inflammation in osteoarticular diseases, by reducing the number of administrations and prolonging the therapeutic effect is highly challenging. β-Cyclodextrin cationic polymers are promising cartilage-penetrating candidates by intra-articular injection due to the high biocompatibility and ability to entrap multiple therapeutic and diagnostic agents, thus monitoring and mitigating inflammation. In this study, nanoassemblies based on poly-β-amino-cyclodextrin (PolyCD) loaded with the non-steroidal anti-inflammatory drug diclofenac (DCF) and linked by supramolecular interactions with a fluorescent probe (adamantanyl-Rhodamine conjugate, Ada-Rhod) were developed to manage inflammation in osteoarticular diseases. PolyCD@Ada-Rhod/DCF supramolecular nanoassemblies were characterized by complementary spectroscopic techniques including UV-Vis, steady-state and time-resolved fluorescence, DLS and ζ-potential measurement. Stability and DCF release kinetics were investigated in medium mimicking the physiological conditions to ensure control over time and efficacy. Biological experiments evidenced the efficient cellular internalization of PolyCD@Ada-Rhod/DCF (within two hours) without significant cytotoxicity in primary human bone marrow-derived mesenchymal stromal cells (hMSCs). Finally, polyCD@Ada-Rhod/DCF significantly suppressed IL-1β production in hMSCs, revealing the anti-inflammatory properties of these nanoassemblies. With these premises, this study might open novel routes to exploit original CD-based nanobiomaterials for the treatment of osteoarticular diseases.
DOI der Erstveröffentlichung: 10.3390/nano10091712
Link zu diesem Datensatz: urn:nbn:de:bsz:291--ds-323786
hdl:20.500.11880/30447
http://dx.doi.org/10.22028/D291-32378
ISSN: 2079-4991
Datum des Eintrags: 26-Jan-2021
Bezeichnung des in Beziehung stehenden Objekts: Supplementary Materials
In Beziehung stehendes Objekt: http://www.mdpi.com/2079-4991/10/9/1712/s1
Fakultät: M - Medizinische Fakultät
Fachrichtung: M - Orthopädie
Professur: M - Prof. Dr. Henning Madry
Sammlung:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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