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Subcellular analysis of blood-brain barrier function by micro-impalement of vessels in acute brain slices.


ABSTRACT: The blood-brain barrier (BBB) is a tightly and actively regulated vascular barrier. Answering fundamental biological and translational questions about the BBB with currently available approaches is hampered by a trade-off between accessibility and biological validity. We report an approach combining micropipette-based local perfusion of capillaries in acute brain slices with multiphoton microscopy. Micro-perfusion offers control over the luminal solution and allows application of molecules and drug delivery systems, whereas the bath solution defines the extracellular milieu in the brain parenchyma. Here we show, that this combination allows monitoring of BBB transport at the cellular level, visualization of BBB permeation of cells and molecules in real-time and resolves subcellular details of the neurovascular unit. In combination with electrophysiology, it permits comparison of drug effects on neuronal activity following luminal versus parenchymal application. We further apply micro-perfusion to the human and mouse BBB of epileptic hippocampi highlighting its utility for translational research and analysis of therapeutic strategies.

SUBMITTER: Hanafy AS 

PROVIDER: S-EPMC9886996 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Subcellular analysis of blood-brain barrier function by micro-impalement of vessels in acute brain slices.

Hanafy Amira Sayed AS   Steinlein Pia P   Pitsch Julika J   Silva Mariella Hurtado MH   Vana Natascha N   Becker Albert J AJ   Graham Mark Evan ME   Schoch Susanne S   Lamprecht Alf A   Dietrich Dirk D  

Nature communications 20230130 1


The blood-brain barrier (BBB) is a tightly and actively regulated vascular barrier. Answering fundamental biological and translational questions about the BBB with currently available approaches is hampered by a trade-off between accessibility and biological validity. We report an approach combining micropipette-based local perfusion of capillaries in acute brain slices with multiphoton microscopy. Micro-perfusion offers control over the luminal solution and allows application of molecules and d  ...[more]

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