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      Relaxivity enhancement of aquated Tris(β-diketonate)gadolinium(III) chelates by confinement within ultrashort single-walled carbon nanotubes.

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          Abstract

          Ultrashort single-walled carbon nanotubes loaded with gadolinium ions (gadonanotubes) have been previously shown to exhibit extremely high T1 -weighted relaxivities (>100 mm(-1) s(-1) ). To further examine the effect of nanoconfinement on the relaxivity of gadolinium-based contrast agents for magnetic resonance imaging, a series of ultrashort single-walled carbon nanotube (US-tube) materials internally loaded with gadolinium chelates have been prepared and studied. US-tubes were loaded with Gd(acac)3  · 2H2 O, Gd(hfac)3  · 2H2 O, and Gd(thd)3 (acac = acetylacetone, hfac = hexafluoroacetylacetone, thd = tetramethylheptanedione). The longitudinal relaxivities of the prepared materials determined at 25°C in a 1.5 T field were 103 mm(-1) s(-1) for Gd(acac)3  · 2H2 O@US-tubes, 105 mm(-1) s(-1) for Gd(hfac)3  · 2H2 O@US-tubes and 26 mm(-1) s(-1) for Gd(thd)3 @US-tubes. Compared with the relaxivities obtained for the unloaded chelates (<10 mm(-1) s(-1) ) as well as accounting for the T1 reduction observed for the empty US-tubes, the boost in relaxivity for chelate-loaded US-tubes is attributed to confinement within the nanotube and depends on the number of coordinated water molecules.

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          Author and article information

          Journal
          Contrast Media Mol Imaging
          Contrast media & molecular imaging
          Wiley-Blackwell
          1555-4317
          1555-4309
          April 26 2014
          : 9
          : 6
          Affiliations
          [1 ] Department of Chemistry, Richard E. Smalley Center for Nanoscale Science and Technology, MS-60, Rice University, PO Box 1892, Houston, TX, 77251-1892, USA.
          Article
          10.1002/cmmi.1603
          24764189
          4731827b-23fa-4b4d-9937-1c49ecb3ac09
          History

          MRI,carbon nanotube,contrast agent,gadolinium,relaxivity
          MRI, carbon nanotube, contrast agent, gadolinium, relaxivity

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