Pitt Shield

Focused ultrasound enhances transgene expression of intranasal hGDNF DNA nanoparticles in the sonicated brain regions.

Authors: Aly AE, Sun T, Zhang Y, Li Z, Kyada M, Ma Q, Padegimas L, Sesenoglu-Laird O, Cooper MJ, McDannold NJ, Waszczak BL

The therapeutic potential of many gene therapies is limited by their inability to cross the blood brain barrier (BBB). While intranasal administration of plasmid DNA nanoparticles (NPs) offers a non-invasive approach to bypass the BBB, it is not targeted to disease-relevant brain regions. Here, our goal was to determine whether focused ultrasound (FUS) can enrich intranasal delivery of our plasmid DNA NPs to target deeper brain regions, in this case the regions most affected in Parkinson's disease. Combining FUS with intranasal administration resulted in enhanced delivery of DNA NPs to the rodent brain, by recruitment and transfection of microglia. FUS increased transgene expression by over 3-fold after intranasal administration compared to intravenous administration. Additionally, FUS with intranasal delivery increased transgene expression in the sonicated hemisphere by over 80%, altered cellular transfection patterns at the sonication sites, and improved penetration of plasmid NPs into the brain parenchyma (with a 1-fold and 3-fold increase in proximity of transgene expression to neurons in the forebrain and midbrain respectively, and a 40% increase in proximity of transgene expression to dopaminergic neurons in the substantia nigra). These results provide evidence in support of using FUS to improve transgene expression after intranasal delivery of non-viral gene therapies.

Introduction

Purpose Drug delivery WITHOUT BBB opening
Study Objective To determine whether focused ultrasound enhances transgene expression of intranasally delivered hGDNF DNA nanoparticles in sonicated brain regions.
Disease model Healthy
Cargo name and characteristics hGDNF DNA nanoparticles (plasmid DNA encoding human glial cell line-derived neurotrophic factor; non-viral DNA nanoparticles delivered intranasally for transgene expression)
Route of administration intranasal

Outcomes and Safety

Summary of Outcomes Focused ultrasound increased transgene expression of intranasally delivered human GDNF (hGDNF) DNA nanoparticles specifically in the sonicated brain regions.
Safety-related matter No safety concerns or adverse effects are mentioned in the provided text.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

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