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Diffusive drug delivery in the brain extracellular space from a cellular scale microtube.


ABSTRACT: The effectiveness of state-of-the-art systemic treatments for neurological disorders is hampered not only by the difficulty in crossing the blood brain barrier but also off-target drug interactions. In this study, a delivery method is simulated for a novel U-shaped microtube locally infusing drugs directly into the extracellular space of the brain and relying on diffusion as a transport mechanism. The influence of flow rate, drug properties and device geometry are investigated. It is anticipated that these findings will accelerate progress on both developmental and applied drug delivery and materials research.

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Supplementary information

The online version contains supplementary material available at 10.1557/s43579-022-00247-9.

SUBMITTER: Stori MJ 

PROVIDER: S-EPMC9596563 | biostudies-literature | 2022

REPOSITORIES: biostudies-literature

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Diffusive drug delivery in the brain extracellular space from a cellular scale microtube.

Störi Marie-Joe MJ   Oluwasanya Pelumi W PW   Proctor Christopher M CM  

MRS communications 20220919 5


The effectiveness of state-of-the-art systemic treatments for neurological disorders is hampered not only by the difficulty in crossing the blood brain barrier but also off-target drug interactions. In this study, a delivery method is simulated for a novel U-shaped microtube locally infusing drugs directly into the extracellular space of the brain and relying on diffusion as a transport mechanism. The influence of flow rate, drug properties and device geometry are investigated. It is anticipated  ...[more]

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