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Biologically Relevant Micellar Nanocarrier Systems for Drug Encapsulation and Functionalization of Metallic Nanoparticles. | LitMetric

AI Article Synopsis

  • The scientific community has focused on creating new functional nanostructures, with micelles being particularly notable for their potential in biomedical applications due to their similarity to cell membranes.
  • This study introduced micellar nanocarrier systems made from surfactants derived from oleic acid and tetraethylene glycol, successfully encapsulating and releasing the drug dexamethasone in vitro.
  • Additionally, new micelle precursors were created to effectively functionalize gold and iron oxide nanoparticles, leading to stable hybrid nanomaterials that could be used for drug delivery and advanced imaging techniques.

Article Abstract

The preparation of new and functional nanostructures has received more attention in the scientific community in the past decade due to their wide application versatility. Among these nanostructures, micelles appear to be one of the most interesting supramolecular organizations for biomedical applications because of their ease of synthesis and reproducibility and their biocompatibility since they present an organization similar to the cell membrane. In this work, we developed micellar nanocarrier systems from surfactant molecules derived from oleic acid and tetraethylene glycol that were able to encapsulate and in vitro release the drug dexamethasone. In addition, the designed micelle precursors were able to functionalize metallic NPs, such as gold NPs and iron oxide NPs, resulting in monodispersed hybrid nanomaterials with high stability in aqueous media. Therefore, a new triazole-derived micelle precursor was developed as a versatile encapsulation system, opening the way for the preparation of new micellar nanocarrier platforms for drug delivery, magnetic resonance imaging, or computed tomography contrast agents for therapeutic and diagnostic applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9145561PMC
http://dx.doi.org/10.3390/nano12101753DOI Listing

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