Pitt Shield

Blood-brain barrier opening of the default mode network in Alzheimer's disease with magnetic resonance-guided focused ultrasound.

Authors: Meng Y, Goubran M, Rabin JS, McSweeney M, Ottoy J, Pople CB, Huang Y, Storace A, Ozzoude M, Bethune A, Lam B, Swardfager W, Heyn C, Abrahao A, Davidson B, Hamani C, Aubert I, Zetterberg H, Ashton NJ, Karikari TK, Blennow K, Black SE, Hynynen K, Lipsman N

The blood-brain barrier (BBB) protects the brain but is also an important obstacle for the effective delivery of therapeutics in Alzheimer's disease and other neurodegenerative disorders. Transcranial magnetic resonance-guided focused ultrasound (MRgFUS) has been shown to reversibly disrupt the BBB. However, treatment of diffuse regions across the brain along with the effect on Alzheimer's disease relevant pathology need to be better characterized. This study is an open-labelled single-arm trial (NCT04118764) to investigate the feasibility of modulating BBB permeability in the default mode network and the impact on cognition, amyloid and tau pathology as well as BBB integrity. Nine participants [mean age 70.2 ± 7.2 years, mean Mini-Mental State Examination (MMSE) 21.9] underwent three biweekly procedures with follow-up visits up to 6 months. The BBB permeability of the bilateral hippocampi, anterior cingulate cortex and precuneus was transiently increased without grade 3 or higher adverse events. Participants did not experience worsening trajectory of cognitive decline (ADAS-cog11, MMSE). Whole brain vertex-based analysis of the 18F-florbetaben PET imaging demonstrated clusters of modest SUVR reduction in the right parahippocampal and inferior temporal lobe. However, CSF and blood biomarkers did not demonstrate any amelioration of Alzheimer's disease pathology (P-tau181, amyloid-β42/40 ratio), nor did it show persistent BBB dysfunction (plasma PDGFRbeta and CSF-to-plasma albumin ratio). This study provides neuroimaging and fluid biomarker data to characterize the safety profile of MRgFUS BBB modulation in neurodegeneration as a potential strategy for enhanced therapeutic delivery.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate the feasibility and safety of MR-guided focused ultrasound to transiently open the blood–brain barrier in default mode network regions of patients with Alzheimer’s disease and to assess its effects on cognition, amyloid and tau pathology, and BBB integrity.
Animal model / Human subject Homo sapiens (human), strain: N/A, age: mean 70.2 ± 7.2 years, sex: 5 female, 4 male
Disease model Alzheimer's disease
MRI or image guidance method Magnetic resonance-guided focused ultrasound (MRgFUS); subject-specific T1-weighted MRI with automated atlas segmentation (FreeSurfer)
Targeted brain region(s) Bilateral Hippocampi, Anterior Cingulate Cortex, Precuneus

Outcomes and Safety

Summary of Outcomes Transcranial MR-guided focused ultrasound transiently and safely increased BBB permeability in targeted default mode network regions (bilateral hippocampi, anterior cingulate cortex, precuneus) and produced modest local reductions in amyloid PET SUVR in right parahippocampal and inferior temporal regions, without cognitive worsening or changes in CSF/plasma AD biomarkers (P-tau181, Aβ42/40) or evidence of persistent BBB dysfunction.
Duration of biological effect 24 h
Safety-related matter No grade 3 or higher adverse effects, serious neurological deficits, vasogenic edema, or large hemorrhage observed. Mild transient confusion occurred after 2 procedures and resolved, and BBB integrity biomarkers showed no evidence of persistent BBB dysfunction.

Brain Region

Ultrasound Parameters

Ultrasound instrument MRgFUS ExAblate Neuro 4000 220 kHz system (Insightec)
FUS Frequency 220 kHz
FUS Mode pulsed
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency multiple sessions

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