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FUS-mediated blood-brain barrier disruption for delivering anti-Aβ antibodies in 5XFAD Alzheimer's disease mice.

Authors: Antoniou A, Stavrou M, Evripidou N, Georgiou E, Kousiappa I, Koupparis A, Papacostas SS, Kleopa KA, Damianou C

Amyloid-β (Aβ) peptides, the main component of amyloid plaques found in the Alzheimer's disease (AD) brain, are implicated in its pathogenesis, and are considered a key target in AD therapeutics. We herein propose a reliable strategy for non-invasively delivering a specific anti-Aβ antibody in a mouse model of AD by microbubbles-enhanced Focused Ultrasound (FUS)-mediated Blood-brain barrier disruption (BBBD), using a simple single stage MR-compatible positioning device. The initial experimental work involved wild-type mice and was devoted to selecting the sonication protocol for efficient and safe BBBD. Pulsed FUS was applied using a single-element FUS transducer of 1 MHz (80 mm radius of curvature and 50 mm diameter). The success and extent of BBBD were assessed by Evans Blue extravasation and brain damage by hematoxylin and eosin staining. 5XFAD mice were divided into different subgroups; control (n = 1), FUS + MBs alone (n = 5), antibody alone (n = 5), and FUS + antibody combined (n = 10). The changes in antibody deposition among groups were determined by immunohistochemistry. It was confirmed that the antibody could not normally enter the brain parenchyma. A single treatment with MBs-enhanced pulsed FUS using the optimized protocol (1 MHz, 0.5 MPa in-situ pressure, 10 ms bursts, 1% duty factor, 100 s duration) transiently disrupted the BBB allowing for non-invasive antibody delivery to amyloid plaques within the sonicated brain regions. This was consistently reproduced in ten mice. These preliminary findings should be confirmed by longer-term studies examining the antibody effects on plaque clearance and cognitive benefit to hold promise for developing disease-modifying anti-Aβ therapeutics for clinical use.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate whether microbubbles-enhanced focused ultrasound can noninvasively deliver an anti-Aβ (1–40) antibody across the blood–brain barrier into the brains of 5XFAD transgenic mice.
Animal model / Human subject Mouse (Mus musculus), 5XFAD transgenic and wild-type (wild-type strain not specified), age not specified, sex not specified
Disease model Alzheimer's
MRI or image guidance method MR-compatible positioning device
Cargo name and characteristics Specific anti-amyloid-β (Aβ) antibody — protein therapeutic (monoclonal antibody targeting Aβ peptides)

Outcomes and Safety

Summary of Outcomes A single session of pulsed focused ultrasound (FUS) combined with microbubbles transiently opened the BBB and enabled non‑invasive delivery and specific binding of an anti‑Aβ (1–40) antibody to amyloid plaques in 5XFAD mice without histological damage (reproduced in n=10). Successful sonication parameters: 1 MHz frequency; ~16 W acoustic power (~0.5 MPa in‑situ, tested range 6.5–22.8 W / 0.3–0.6 MPa); 10 ms burst length; 1% duty factor (~1 Hz PRF); 100 s duration; 5 μL microbubbles (~1×10^6); antibody 50 μL (2.85 mg) delivered retro‑orbitally.
Duration of biological effect 4 hours
Safety-related matter No adverse effects were observed: the optimized sonication protocol (1 MHz, 0.5 MPa/in‑situ pressure ≈16 W, 10 ms bursts, 1% duty, 100 s) produced BBB opening without structural tissue damage or hemorrhage (H&E) in the tested animals, and none of the focal pressures tested (0.3–0.6 MPa) showed evidence of FUS-related tissue integrity effects; findings were consistently reproduced in the treated mice.

Brain Region

Visualization unavailable

Ultrasound Parameters

Ultrasound instrument Single-element FUS transducer (1 MHz); 80 mm radius of curvature; 50 mm diameter; manufacturer: None
FUS Frequency 1 MHz
FUS Pressure 0.5 MPa
FUS Mode pulsed
Pulse duration 10 ms
Duration of a single FUS session 100 s
Focal Characteristics Focal depth: None; Focal length: 80 mm (radius of curvature); Aperture size: 50 mm (diameter)
Treatment frequency single

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