In vivo targeting and multimodal imaging of cerebral amyloid-β aggregates using hybrid GdF3nanoparticles

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Abstract

Aim: To propose a new multimodal imaging agent targeting amyloid-β (Aβ) plaques in Alzheimer's disease. Materials & methods: A new generation of hybrid contrast agents, based on gadolinium fluoride nanoparticles grafted with a pentameric luminescent-conjugated polythiophene, was designed, extensively characterized and evaluated in animal models of Alzheimer's disease through MRI, two-photon microscopy and synchrotron x-ray phase-contrast imaging. Results & conclusion: Two different grafting densities of luminescent-conjugated polythiophene were achieved while preserving colloidal stability and fluorescent properties, and without affecting biodistribution. In vivo brain uptake was dependent on the blood-brain barrier status. Nevertheless, multimodal imaging showed successful Aβ targeting in both transgenic mice and Aβ fibril-injected rats.

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Lerouge, F., Ong, E., Rositi, H., Mpambani, F., Berner, L. P., Bolbos, R., … Parola, S. (2022). In vivo targeting and multimodal imaging of cerebral amyloid-β aggregates using hybrid GdF3nanoparticles. Nanomedicine, 17(29), 2173–2187. https://doi.org/10.2217/nnm-2022-0252

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