Safe focused ultrasound-mediated blood-brain barrier opening is driven primarily by transient reorganization of tight junctions.
Authors: Konofagou E, Noel R, Kugelman T, Karakatsani M, Shahriar S, Willner M, Choi C, Niimi Y, Ji R, Agalliu D
Focused ultrasound (FUS) with microbubbles opens the blood-brain barrier (BBB) for targeted drug delivery into the brain. How brain endothelial cells (BECs) respond to either low acoustic pressures known to open the BBB transiently, or high pressures that cause brain damage, is incompletely characterized. Here, we apply FUS at low (450 kPa) and high (750 kPa) pressures in mice where BBB tight junctions are labelled with eGFP and find that arteriole and capillary BECs respond to low pressure by a transient reorganization of tight junctions associated with BBB opening. Moreover, this process does not depend on caveolae. In contrast, BBB opening at high pressure is associated with tight junction obliteration even after 72 hours, allowing persistent fibrinogen passage and microglial activation. Single-cell RNA-sequencing of BECs from FUS-BBBO mice shows that the transcriptomic responses of BECs exposed to high pressure are dominated by the stress response and cell junction disassembly, whereas lower pressure induces primarily genes responsible for intracellular repair. Therefore, transient reorganization of tight junctions and repair responses mediate safe BBB opening for therapeutic delivery.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To characterize how brain endothelial cells respond structurally and transcriptionally to low versus high pressure focused ultrasound–induced blood–brain barrier opening.
Animal model / Human subject
Mouse (strain not specified; age not specified; sex not specified)
Disease model
Healthy
Cargo name and characteristics
eGFP (enhanced green fluorescent protein) — protein fluorescent reporter expressed in mice to label BBB tight junctions (transgenic/expressed reporter), used for imaging/tracking tight junctions
Outcomes and Safety
Summary of Outcomes
Focused ultrasound with microbubbles at low pressure (450 kPa) produced transient, reversible BBB opening driven by tight‑junction reorganization and repair by 72 hours, whereas high pressure (750 kPa) caused persistent tight‑junction obliteration, sustained BBB leakage, fibrinogen extravasation and microglial activation. Successful parameter for safe, transient BBB opening: 450 kPa; 750 kPa caused damaging, non‑recovering BBB disruption.
Duration of biological effect
1 hour
Safety-related matter
Low (450 kPa) FUS produced transient, apparently safe BBB opening with tight-junction reorganization and recovery by 72 hours, whereas high (750 kPa) FUS caused adverse effects including persistent tight-junction obliteration, sustained BBB permeability, fibrinogen extravasation, microglial activation and BEC transcriptomic signatures of stress and cell death; fibrinogen leakage was detected at 1 hour for both pressures but was undetectable by 72 hours.
Brain Region
Ultrasound Parameters
FUS Pressure
0.45 MPa, 0.75 MPa
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
single session
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