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- W2085761998 abstract "In both pharmaceutical and toxicological fields, one of major issues has been the possibility of nanoparticle uptake to central nerve system. For the safe use of nanoparticles, it is integral to evaluate the permeability of nanoparticles through BBB. In our collaborative research group reported that a few nanoparticles accumulated in brain in animal experiment, as an in vitro model, we applied commercially available cell-based BBB model for establishing evaluation method, which is quick, quantitative and equivalent to in vivo assay. We assayed 30–1500 nm silica and surface charge dependent Qdots. Our results showed the size-dependency and the surface modification dependency. We compared our assay to several animal experiments. There are both equivalence and discrepancy with animal experiments. Our BBB model can be useful tools for evaluating size-dependent permeability, but not for surface modification-dependent permeability. Our BBB assay is non-serum assay and we have not adequately reflected the serum-related interaction between nanoparticles and cell surfaces. To clear up the discrepancy of our BBB model, serum-based assay and low-concentration detection will be needed." @default.
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- W2085761998 date "2013-04-10" @default.
- W2085761998 modified "2023-09-25" @default.
- W2085761998 title "Application of in vitro BBB model to measure permeability of nanoparticles" @default.
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- W2085761998 doi "https://doi.org/10.1088/1742-6596/429/1/012028" @default.
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