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      A magnetically drivable nanovehicle for curcumin with antioxidant capacity and MRI relaxation properties.

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          Abstract

          Curcumin possesses wide-ranging anti-inflammatory and anti-cancer properties and its biological activity can be linked to its potent antioxidant capacity. Superparamagnetic maghemite (γ-Fe2 O3 ), called surface-active maghemite nanoparticles (SAMNs) were surface-modified with curcumin molecules, due to the presence of under-coordinated Fe(III) atoms on the nanoparticle surface. The so-obtained curcumin-modified SAMNs (SAMN@curcumin) had a mean size of 13±4 nm. SAMN@curcumin was characterized by transmission and scanning electron microscopy, UV/Vis, FTIR, and Mössbauer spectroscopy, X-ray powder diffraction, bulk susceptibility (SQUID), and relaxometry measurements (MRI imaging). The high negative contrast proclivity of SAMN@curcumin to act as potential contrast agent in MRI screenings was also tested. Moreover, the redox properties of bound curcumin were probed by electrochemistry. SAMN@curcumin was studied in the presence of different electroactive molecules, namely hydroquinone, NADH and ferrocyanide, to assess its redox behavior. Finally, SAMN@curcumin was electrochemically probed in the presence of hydrogen peroxide, demonstrating the stability and reactivity of bound curcumin.

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          Author and article information

          Journal
          Chemistry
          Chemistry (Weinheim an der Bergstrasse, Germany)
          Wiley
          1521-3765
          0947-6539
          Sep 08 2014
          : 20
          : 37
          Affiliations
          [1 ] Department of Comparative Biomedicine and Food Safety, Agripolis - University of Padua, Legnaro, 35020 Padua (Italy).
          Article
          10.1002/chem.201402820
          25079005
          18bdfd41-760c-44e8-b72e-9916ea6785e9
          History

          electrocatalysis,curcumin,MRI contrast agents,antioxidants,magnetic nanoparticles

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