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Issue 14, 2014
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Gd-containing conjugated polymer nanoparticles: bimodal nanoparticles for fluorescence and MRI imaging

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Abstract

Aqueous bifunctional semiconductor polymer nanoparticles (SPNs), approximately 30 nm in diameter (as measured from electron microscopy), were synthesised using hydrophobic conjugated polymers, amphiphilic phospholipids and a gadolinium-containing lipid. Their fluorescence quantum yields and extinction coefficients were determined, and their MRI T1-weighted relaxation times in water were measured. The bimodal nanoparticles were readily taken up by HeLa and murine macrophage-like J774 cells as demonstrated by confocal laser scanning microscopy, and were found to be MRI-active, generating a linear relationship between T1-weighted relaxation rates and gadolinium concentrations The synthesis is relatively simple, and can easily result in milligrams of materials, although we fully expect scale-up to the gram level to be easily realised.

Graphical abstract: Gd-containing conjugated polymer nanoparticles: bimodal nanoparticles for fluorescence and MRI imaging

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Publication details

The article was received on 18 Mar 2014, accepted on 01 Jun 2014 and first published on 03 Jun 2014


Article type: Paper
DOI: 10.1039/C4NR01491J
Author version available: Download Author version (PDF)
Citation: Nanoscale, 2014,6, 8376-8386
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    Gd-containing conjugated polymer nanoparticles: bimodal nanoparticles for fluorescence and MRI imaging

    Z. Hashim, M. Green, P. H. Chung, K. Suhling, A. Protti, A. Phinikaridou, R. Botnar, R. A. Khanbeigi, M. Thanou, L. A. Dailey, N. J. Commander, C. Rowland, J. Scott and D. Jenner, Nanoscale, 2014, 6, 8376
    DOI: 10.1039/C4NR01491J

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