Localized blood-brain barrier opening in infiltrating gliomas with MRI-guided acoustic emissions-controlled focused ultrasound.
Authors: Anastasiadis P, Gandhi D, Guo Y, Ahmed AK, Bentzen SM, Arvanitis C, Woodworth GF
Pharmacological treatment of gliomas and other brain-infiltrating tumors remains challenging due to limited delivery of most therapeutics across the blood-brain barrier (BBB). Transcranial MRI-guided focused ultrasound (FUS), an emerging technology for noninvasive brain treatments, enables transient opening of the BBB through acoustic activation of circulating microbubbles. Here, we evaluate the safety and utility of transcranial microbubble-enhanced FUS (MB-FUS) for spatially targeted BBB opening in patients with infiltrating gliomas. In this Phase 0 clinical trial (NCT03322813), we conducted comparative and quantitative analyses of FUS exposures (sonications) and their effects on gliomas using MRI, histopathology, microbubble acoustic emissions (harmonic dose [HD]), and fluorescence-guided surgery metrics. Contrast-enhanced MRI and histopathology indicated safe and reproducible BBB opening in all patients. These observations occurred using a power cycling closed feedback loop controller, with the power varying by nearly an order of magnitude on average. This range underscores the need for monitoring and titrating the exposure on a patient-by-patient basis. We found a positive correlation between microbubble acoustic emissions (HD) and MR-evident BBB opening (<i>P</i> = 0.07) and associated interstitial changes (<i>P</i> < 0.01), demonstrating the unique capability to titrate the MB-FUS effects in gliomas. Importantly, we identified a 2.2-fold increase of fluorescein accumulation in MB-FUS-treated compared to untreated nonenhancing tumor tissues (<i>P</i> < 0.01) while accounting for vascular density. Collectively, this study demonstrates the capabilities of MB-FUS for safe, localized, controlled BBB opening and highlights the potential of this technology to improve the surgical and pharmacologic treatment of brain tumors.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate the safety and utility of transcranial microbubble-enhanced focused ultrasound for controlled, spatially targeted blood–brain barrier opening in patients with infiltrating gliomas.
Animal model / Human subject
Homo sapiens (human patients with infiltrating gliomas); strain: N/A; age: not specified; sex: 3 male, 1 female
Disease model
glioma
MRI or image guidance method
MRI-guided (transcranial MRI-guided focused ultrasound) with real-time acoustic emissions monitoring (harmonic dose) using a closed-loop feedback controller
Targeted brain region(s)
Frontal Lobe, Temporal Lobe
Cargo name and characteristics
Sodium Fluorescein (small molecule fluorescent tracer)
Route of administration
Intravenous
Outcomes and Safety
Summary of Outcomes
Microbubble-enhanced transcranial focused ultrasound (MB-FUS) produced safe, localized, and reproducible transient BBB opening in patients with infiltrating gliomas and increased fluorescein accumulation 2.2-fold in treated nonenhancing tumor tissue (P < 0.01). Successful exposures were achieved using a power-cycling closed-loop controller with nearly an order-of-magnitude variation in power, titrated by microbubble acoustic emissions (harmonic dose), which positively correlated with MRI-evident BBB opening.
Safety-related matter
No adverse effects were reported; contrast-enhanced MRI and histopathology indicated safe and reproducible BBB opening in all patients. The study concludes that microbubble-enhanced focused ultrasound provides safe, localized, and controlled BBB opening.
Brain Region
Ultrasound Parameters
Ultrasound instrument
ExAblate Neuro Type 2 MRgFUS system; hemispherical 1024-element phased array transducer
FUS Frequency
230 kHz
FUS Mode
pulsed
Duration of a single FUS session
130-210 minutes
Focal Characteristics
Focal depth: None, Focal length: None, Aperture size: None
Treatment frequency
single
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