Literature DB >> 19347834

Surface-functionalized ultrasmall superparamagnetic nanoparticles as magnetic delivery vectors for camptothecin.

Feride Cengelli1, Justyna A Grzyb, Auxia Montoro, Heinrich Hofmann, Stephen Hanessian, Lucienne Juillerat-Jeanneret.   

Abstract

Drug-nanoparticle conjugates: The anticancer drug camptothecin (CPT) was covalently linked at the surface of ultrasmall superparamagnetic iron oxide nanoparticles (USPIOs) via a linker, allowing drug release by cellular esterases. Nanoparticles were hierarchically built to achieve magnetically-enhanced drug delivery to human cancer cells and antiproliferative activity.The linking of therapeutic drugs to ultrasmall superparamagnetic iron oxide nanoparticles (USPIOs) allowing intracellular release of the active drug via cell-specific mechanisms would achieve tumor-selective magnetically-enhanced drug delivery. To validate this concept, we covalently attached the anticancer drug camptothecin (CPT) to biocompatible USPIOs (iron oxide core, 9-10 nm; hydrodynamic diameter, 52 nm) coated with polyvinylalcohol/polyvinylamine (PVA/aminoPVA). A bifunctional, end-differentiated dicarboxylic acid linker allowed the attachment of CPT to the aminoPVA as a biologically labile ester substrate for cellular esterases at one end, and as an amide at the other end. These CPT-USPIO conjugates exhibited antiproliferative activity in vitro against human melanoma cells. The intracellular localization of CPT-USPIOs was confirmed by transmission electron microscopy (iron oxide core), suggesting localization in lipid vesicles, and by fluorescence microscopy (CPT). An external static magnetic field applied during exposure increased melanoma cell uptake of the CPT-USPIOs.

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Year:  2009        PMID: 19347834     DOI: 10.1002/cmdc.200800424

Source DB:  PubMed          Journal:  ChemMedChem        ISSN: 1860-7179            Impact factor:   3.466


  12 in total

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9.  PEGylated versus non-PEGylated magnetic nanoparticles as camptothecin delivery system.

Authors:  Paula M Castillo; Mario de la Mata; Maria F Casula; José A Sánchez-Alcázar; Ana P Zaderenko
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10.  Differential stress reaction of human colon cells to oleic-acid-stabilized and unstabilized ultrasmall iron oxide nanoparticles.

Authors:  Catherine A Schütz; Davide Staedler; Kieran Crosbie-Staunton; Dania Movia; Catherine Chapuis Bernasconi; Blanka Halamoda Kenzaoui; Adriele Prina-Mello; Lucienne Juillerat-Jeanneret
Journal:  Int J Nanomedicine       Date:  2014-07-23
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