Non-invasive delivery of stealth, brain-penetrating nanoparticles across the blood-brain barrier using MRI-guided focused ultrasound.
Authors: Nance E, Timbie K, Miller GW, Song J, Louttit C, Klibanov AL, Shih TY, Swaminathan G, Tamargo RJ, Woodworth GF, Hanes J, Price RJ
The blood-brain barrier (BBB) presents a significant obstacle for the treatment of many central nervous system (CNS) disorders, including invasive brain tumors, Alzheimer's, Parkinson's and stroke. Therapeutics must be capable of bypassing the BBB and also penetrate the brain parenchyma to achieve a desired effect within the brain. In this study, we test the unique combination of a non-invasive approach to BBB permeabilization with a therapeutically relevant polymeric nanoparticle platform capable of rapidly penetrating within the brain microenvironment. MR-guided focused ultrasound (FUS) with intravascular microbubbles (MBs) is able to locally and reversibly disrupt the BBB with submillimeter spatial accuracy. Densely poly(ethylene-co-glycol) (PEG) coated, brain-penetrating nanoparticles (BPNs) are long-circulating and diffuse 10-fold slower in normal rat brain tissue compared to diffusion in water. Following intravenous administration of model and biodegradable BPNs in normal healthy rats, we demonstrate safe, pressure-dependent delivery of 60nm BPNs to the brain parenchyma in regions where the BBB is disrupted by FUS and MBs. Delivery of BPNs with MR-guided FUS has the potential to improve efficacy of treatments for many CNS diseases, while reducing systemic side effects by providing sustained, well-dispersed drug delivery into select regions of the brain.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate whether MR-guided focused ultrasound with microbubbles can safely and pressure-dependently deliver PEG-coated brain-penetrating polymeric nanoparticles into the brain parenchyma of rats.
Animal model / Human subject
Rat (Rattus norvegicus), strain None, age None, sex None
Disease model
Healthy
MRI or image guidance method
MR-guided (MRI-guided) focused ultrasound with intravascular microbubbles
Cargo name and characteristics
Densely poly(ethylene-co-glycol) (PEG)-coated biodegradable polymeric brain-penetrating nanoparticles (BPNs); ~60 nm, long-circulating, model/biodegradable nanoparticle platform
Route of administration
intravenous
Outcomes and Safety
Summary of Outcomes
MR-guided focused ultrasound (FUS) with intravascular microbubbles safely and reversibly disrupted the blood–brain barrier with submillimeter spatial accuracy and enabled pressure-dependent delivery of 60 nm densely PEG‑coated brain‑penetrating nanoparticles into rat brain parenchyma. Successful FUS parameters were acoustic exposures that induced BBB disruption in the presence of microbubbles (delivery was pressure-dependent).
Safety-related matter
The authors report safe, pressure-dependent delivery of 60 nm brain-penetrating nanoparticles to the brain parenchyma using MR-guided focused ultrasound with microbubbles in normal healthy rats, and they do not report any adverse effects.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Single
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