Safe and stable noninvasive focal gene delivery to the mammalian brain following focused ultrasound.
Authors: Stavarache MA, Petersen N, Jurgens EM, Milstein ER, Rosenfeld ZB, Ballon DJ, Kaplitt MG
Surgical infusion of gene therapy vectors has provided opportunities for biological manipulation of specific brain circuits in both animal models and human patients. Transient focal opening of the blood-brain barrier (BBB) by MR-guided focused ultrasound (MRgFUS) raises the possibility of noninvasive CNS gene therapy to target precise brain regions. However, variable efficiency and short follow-up of studies to date, along with recent suggestions of the potential for immune reactions following MRgFUS BBB disruption, all raise questions regarding the viability of this approach for clinical translation. The objective of the current study was to evaluate the efficiency, safety, and long-term stability of MRgFUS-mediated noninvasive gene therapy in the mammalian brain. Focused ultrasound under the control of MRI, in combination with microbubbles consisting of albumin-coated gas microspheres, was applied to rat striatum, followed by intravenous infusion of an adeno-associated virus serotype 1/2 (AAV1/2) vector expressing green fluorescent protein (GFP) as a marker. Following recovery, animals were followed from several hours up to 15 months. Immunostaining for GFP quantified transduction efficiency and stability of expression. Quantification of neuronal markers was used to determine histological safety over time, while inflammatory markers were examined for evidence of immune responses. Transitory disruption of the BBB by MRgFUS resulted in efficient delivery of the AAV1/2 vector to the targeted rodent striatum, with 50%-75% of striatal neurons transduced on average. GFP transgene expression appeared to be stable over extended periods of time, from 2 weeks to 6 months, with evidence of ongoing stable expression as long as 16 months in a smaller cohort of animals. No evidence of substantial toxicity, tissue injury, or neuronal loss was observed. While transient inflammation from BBB disruption alone was noted for the first few days, consistent with prior observations, no evidence of brain inflammation was observed from 2 weeks to 6 months following MRgFUS BBB opening, despite delivery of a virus and expression of a foreign protein in target neurons. This study demonstrates that transitory BBB disruption using MRgFUS can be a safe and efficient method for site-specific delivery of viral vectors to the brain, raising the potential for noninvasive focal human gene therapy for neurological disorders.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To develop and demonstrate a safe, stable, noninvasive method for focal gene delivery to the mammalian brain using focused ultrasound.
Animal model / Human subject
Rat
Disease model
Healthy
MRI or image guidance method
MRI guided
Targeted brain region(s)
Striatum
Cargo name and characteristics
Recombinant adeno-associated virus (AAV) vectors carrying a transgene for focal gene delivery to the brain
Route of administration
Intravenous
Outcomes and Safety
Summary of Outcomes
Focused ultrasound-mediated blood–brain barrier opening enabled safe, stable, noninvasive focal gene delivery to the mammalian brain with localized transgene expression. The provided text does not list specific focused ultrasound parameters or which parameter sets were tested/successful.
Duration of biological effect
16 months
Safety-related matter
The title claims the method is "safe and stable" for noninvasive focal gene delivery to the mammalian brain following focused ultrasound. No adverse effects are mentioned in the provided text.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
Treatment frequency
single session
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