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Vasculotide restores the blood-brain barrier after focused ultrasound-induced permeability in a mouse model of Alzheimer's disease.

Authors: Lynch M, Heinen S, Markham-Coultes K, O'Reilly M, Van Slyke P, Dumont DJ, Hynynen K, Aubert I

Focused ultrasound (FUS) is used to locally and transiently induce blood-brain barrier (BBB) permeability, allowing targeted drug delivery to the brain. The purpose of the current study is to evaluate the potential of Vasculotide to accelerate the recovery of the BBB following FUS disruption in the TgCRND8 mouse model of amyloidosis, characteristic of Alzheimer's disease (AD). Accelerating the restoration of the BBB post-FUS would represent an additional safety procedure, which could be beneficial for clinical applications. <b>Methods:</b> TgCRND8 mice and their non-transgenic littermates were treated with Vasculotide (250 ng, intraperitoneal) every 48 hours for 3 months. BBB permeability was induced using FUS, in presence of intravenously injected microbubbles, in TgCRND8 and non-transgenic mice, and confirmed at time 0 by MRI enhancement using the contrast agent gadolinium. BBB closure was assessed at 6, 12 and 20 hours by MRI. In a separate cohort of animals, BBB closure was assessed at 24-hours post-FUS using Evans blue injected intravenously and followed by histological evaluation. <b>Results:</b> Chronic Vasculotide administration significantly reduces the ultra-harmonic threshold required for FUS-induced BBB permeability in the TgCRND8 mice. In addition, Vasculotide treatment led to a faster restoration of the BBB following FUS in TgCRND8 mice. BBB closure after FUS is not significantly different between TgCRND8 and non-transgenic mice. BBB permeability was assessed by gadolinium up to 20-hours post-FUS, demonstrating 87% closure in Vasculotide treated TgCRND8 mice, as opposed to 52% in PBS treated TgCRND8 mice, 58% in PBS treated non-transgenic mice, and 74% in Vasculotide treated non-transgenic mice. In both TgCRND8 mice and non-transgenic littermates the BBB was impermeable to Evans blue dye at 24-hours post-FUS. <b>Conclusion:</b> Vasculotide reduces the pressure required for microbubble ultra-harmonic onset for FUS-induced BBB permeability and it accelerates BBB restoration in a mouse model of amyloidosis, suggesting its potential clinical utility to promote vascular health, plasticity and repair in AD.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate whether Vasculotide accelerates restoration of the blood-brain barrier after focused ultrasound-induced disruption in the TgCRND8 mouse model of amyloidosis.
Animal model / Human subject mouse, TgCRND8, not reported, not reported
Disease model Alzheimer's disease
MRI or image guidance method MRI (contrast-enhanced gadolinium MRI used to confirm BBB opening and assess closure)
Targeted brain region(s) Hippocampus

Outcomes and Safety

Summary of Outcomes Vasculotide treatment lowered the FUS pressure threshold for BBB opening and accelerated BBB restoration in TgCRND8 mice.
Duration of biological effect 24 h
Safety-related matter No overt edema or tissue injury reported.

Brain Region

Ultrasound Parameters

Ultrasound instrument single-element focused ultrasound transducer
FUS Frequency 1.68 MHz
FUS Intensity not reported
FUS Pressure 0.41 MPa
FUS Mode not reported
Pulse duration 10 ms
Duration of a single FUS session 120 s
Treatment frequency multiple

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