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Ultrasound-Mediated Blood-Brain Barrier Disruption for Drug Delivery: A Systematic Review of Protocols, Efficacy, and Safety Outcomes from Preclinical and Clinical Studies.

Authors: Gandhi K, Barzegar-Fallah A, Banstola A, Rizwan SB, Reynolds JNJ

Ultrasound-mediated blood-brain barrier (BBB) disruption has garnered focus as a method of delivering normally impenetrable drugs into the brain. Numerous studies have investigated this approach, and a diverse set of ultrasound parameters appear to influence the efficacy and safety of this approach. An understanding of these findings is essential for safe and reproducible BBB disruption, as well as in identifying the limitations and gaps for further advancement of this drug delivery approach. We aimed to collate and summarise protocols and parameters for achieving ultrasound-mediated BBB disruption in animal and clinical studies, as well as the efficacy and safety methods and outcomes associated with each. A systematic search of electronic databases helped in identifying relevant, included studies. Reference lists of included studies were further screened to identify supplemental studies for inclusion. In total, 107 articles were included in this review, and the following parameters were identified as influencing efficacy and safety outcomes: microbubbles, transducer frequency, peak-negative pressure, pulse characteristics, and the dosing of ultrasound applications. Current protocols and parameters achieving ultrasound-mediated BBB disruption, as well as their associated efficacy and safety outcomes, are identified and summarised. Greater standardisation of protocols and parameters in future preclinical and clinical studies is required to inform robust clinical translation.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To collate and summarize protocols and parameters for ultrasound-mediated blood–brain barrier disruption in animal and clinical studies and to assess the associated efficacy and safety outcomes.

Outcomes and Safety

Summary of Outcomes Focused ultrasound produced transient blood–brain barrier disruption enabling delivery of drugs in animal and clinical studies, with efficacy and safety dependent on sonication settings. Parameters found to be successful included use of microbubbles, choice of transducer frequency, peak-negative pressure, pulse characteristics (e.g., pulse length/duty cycle/PRF), and ultrasound dosing (number/timing of applications).
Safety-related matter The review discusses safety and safety outcomes of ultrasound-mediated BBB disruption and identifies parameters that influence safety (microbubbles, transducer frequency, peak-negative pressure, pulse characteristics, dosing), but the provided excerpt does not report any specific adverse effects.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Mode pulsed
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

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