Pitt Shield

Noninvasive and targeted gene delivery into the brain using microbubble-facilitated focused ultrasound.

Authors: Hsu PH, Wei KC, Huang CY, Wen CJ, Yen TC, Liu CL, Lin YT, Chen JC, Shen CR, Liu HL

Recombinant adeno-associated viral (rAAV) vectors are potentially powerful tools for gene therapy of CNS diseases, but their penetration into brain parenchyma is severely limited by the blood-brain barrier (BBB) and current delivery relies on invasive stereotactic injection. Here we evaluate the local, targeted delivery of rAAV vectors into the brains of mice by noninvasive, reversible, microbubble-facilitated focused ultrasound (FUS), resulting in BBB opening that can be monitored and controlled by magnetic resonance imaging (MRI). Using this method, we found that IV-administered AAV2-GFP (green fluorescence protein) with a low viral vector titer (1×10(9) vg/g) can successfully penetrate the BBB-opened brain regions to express GFP. We show that MRI monitoring of BBB-opening could serve as an indicator of the scale and distribution of AAV transduction. Transduction peaked at 3 weeks and neurons and astrocytes were affected. This novel, noninvasive delivery approach could significantly broaden the application of AAV-viral-vector-based genes for treatment of CNS diseases.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate whether noninvasive, MRI-monitored microbubble-facilitated focused ultrasound can transiently open the blood-brain barrier to enable intravenous AAV vector delivery and stable gene expression in mouse brain.
Animal model / Human subject mice, not specified, not specified, not specified
Disease model healthy
MRI or image guidance method MRI-guided focused ultrasound (MRI monitoring of BBB opening)
Cargo name and characteristics AAV
Route of administration intravenous

Outcomes and Safety

Summary of Outcomes FUS-mediated BBB opening enabled delivery of AAV vectors and localized gene expression in the mouse brain.
Duration of biological effect 6 weeks
Safety-related matter No tissue damage reported.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Pressure 0.7 MPa

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