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Magnetic conjugated polymer nanoparticles as bimodal imaging agents.

Journal of the American Chemical Society (2010-06-25)
Philip Howes, Mark Green, Alex Bowers, David Parker, Gopal Varma, Mathew Kallumadil, Mary Hughes, Alice Warley, Anthony Brain, Rene Botnar
ABSTRACT

Hybrid nanoparticles which incorporate multiple functionalities, such as fluorescence and magnetism, can exhibit enhanced efficiency and versatility by performing several tasks in parallel. In this study, magnetic-fluorescent semiconductor polymer nanospheres (MF-SPNs) have been synthesized by encapsulation of hydrophobic conjugated polymers and iron oxide nanoparticles in phospholipid micelles. Four fluorescent conjugated polymers were used, yielding aqueous dispersions of nanoparticles which emit across the visible spectrum. The MF-SPNs were shown to be magnetically responsive and simultaneously fluorescent. In MRI studies, they were seen to have a shortening effect on the transverse T(2)* relaxation time, which demonstrates their potential as an MR contrast agent. Finally, successful uptake of the MF-SPNs by SH-SY5Y neuroblastoma cells was demonstrated, and they were seen to behave as bright and stable fluorescent markers. There was no evidence of toxicity or adverse affect on cell growth.

MATERIALS
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Product Description

Sigma-Aldrich
Conjugated Polymer Nanoparticle (CPN), fluorescence λem 770 nm (IR-I), carboxy-NHS-amine functionalized, 1 ea of 100 μg antibody kit
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Conjugated Polymer Nanoparticle (CPN), fluorescence λem 820 nm (IR-I), maleimide-thiol functionalized, 1 ea of 30 μg antibody kit
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Conjugated Polymer Nanoparticle (CPN), fluorescence λem 475 nm (blue), maleimide-thiol functionalized, 1 ea of 60 nmol oligonucleotide kit
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Conjugated Polymer Nanoparticle (CPN), fluorescence λem 770 nm (IR-I), carboxy-NHS-amine functionalized, 1 ea of 10 μg antibody kit