Theranostic Strategy of Focused Ultrasound Induced Blood-Brain Barrier Opening for CNS Disease Treatment.
Authors: Chen KT, Wei KC, Liu HL
Focused Ultrasound (FUS) in combination with gaseous microbubbles has emerged as a potential new means of effective drug delivery to the brain. Recent research has shown that, under burst-type energy exposure with the presence of microbubbles, this modality can transiently permeate the blood-brain barrier (BBB). The bioavailability of therapeutic agents is site-specifically augmented only in the zone where the FUS energy is targeted. The non-invasiveness of this approach makes FUS-induced BBB opening a novel and attractive means to perform localized CNS therapeutic agent delivery. Over the past decade, FUS-BBB opening has been preclinically confirmed to successfully enhance CNS penetration of therapeutic agents including chemotherapeutic agents, therapeutic peptides, monoclonal antibodies, and nanoparticles. Recently, a number of clinical human trials have begun to explore clinical utility. This review article, explores this technology through its physical mechanisms, summarizes the existing preclinical findings (including current medical device designs and technical approaches), and summarizes current ongoing clinical trials.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To review and summarize focused ultrasound–induced blood–brain barrier opening as a noninvasive method for targeted CNS drug delivery, including its physical mechanisms, preclinical findings, device designs, technical approaches, and ongoing clinical trials.
Cargo name and characteristics
Chemotherapeutic agents (small-molecule drugs), therapeutic peptides (peptide/protein therapeutics), monoclonal antibodies (protein biologics), nanoparticles (nanoparticle formulations)
Outcomes and Safety
Summary of Outcomes
Focused ultrasound with co-administered gaseous microbubbles transiently and reversibly opens the blood–brain barrier, increasing site-specific CNS delivery and bioavailability of chemotherapeutics, therapeutic peptides, monoclonal antibodies and nanoparticles, with preliminary clinical trials demonstrating safety and efficacy (notably for brain tumors) and promise for Alzheimer's disease, ALS and Parkinson's disease. Successful parameters reported: burst-type (pulsed) FUS energy exposure targeted to the focal zone in the presence of microbubbles.
Safety-related matter
Preliminary results have confirmed safety and efficacy for brain tumor treatment; the text does not report any adverse effects.
Brain Region
Ultrasound Parameters
FUS Mode
pulsed
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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