Pitt Shield

Acoustic feedback enables safe and reliable carboplatin delivery across the blood-brain barrier with a clinical focused ultrasound system and improves survival in a rat glioma model.

Authors: McDannold N, Zhang Y, Supko JG, Power C, Sun T, Peng C, Vykhodtseva N, Golby AJ, Reardon DA

The blood-brain barrier (BBB) restricts delivery of most chemotherapy agents to brain tumors. Here, we investigated a clinical focused ultrasound (FUS) device to disrupt the BBB in rats and enhance carboplatin delivery to the brain using the F98 glioma model. <b>Methods</b>: In each rat, 2-3 volumetric sonications (5 ms bursts at 1.1 Hz for 75s) targeted 18-27 locations in one hemisphere. Sonication was combined with Definity microbubbles (10 µl/kg) and followed by intravenous carboplatin (50 mg/kg). Closed-loop feedback control was performed based on acoustic emissions analysis. <b>Results</b>: Safety and reliability were established in healthy rats after three sessions with carboplatin; BBB disruption was induced in every target without significant damage evident in MRI or histology. In tumor-bearing rats, concentrations of MRI contrast agent (Gadavist) were 1.7 and 3.3 times higher in the tumor center and margin, respectively, than non-sonicated tumors (P<0.001). Tissue-to-plasma ratios of intact carboplatin concentrations were increased by 7.3 and 2.9 times in brain and tumor respectively, at one hour after FUS and 4.2 and 2.4 times at four hours. Tumor volume doubling time in rats receiving FUS and carboplatin increased by 96% and 126% compared to rats that received carboplatin alone and non-sonicated controls, respectively (P<0.05); corresponding increases in median survival were 48% and 66% (P<0.01). <b>Conclusion</b>: Overall, this work demonstrates that actively-controlled BBB disruption with a clinical device can enhance carboplatin delivery without neurotoxicity at level that reduces tumor growth and improves survival in an aggressive and infiltrative rat glioma model.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate whether a clinical low-frequency MRI-guided focused ultrasound system can safely and reliably disrupt the blood-brain barrier in rats to enhance carboplatin delivery and improve survival in an aggressive glioma model.
Animal model / Human subject Rattus norvegicus (rat); strains: Sprague-Dawley (safety study: 4 male, 3 female) and Fischer CDF (tumor studies: 11 male, 12 female); age not reported
Disease model glioma (F98 rat glioma model)
MRI or image guidance method MRI guidance (3T clinical MRI integrated TcMRgFUS; targets selected from pre‑FUS T2*-weighted images with manual registration to a template) plus use of an in‑house acrylic stereotactic frame.
Targeted brain region(s) Striatum
Target coordinates (AP: not specified, ML: not specified, DV: 3.5 mm from dura)
Cargo name and characteristics Carboplatin — small-molecule platinum-based chemotherapeutic agent; administered intravenously at 50 mg/kg (≈300 mg/m² human equivalent) over ~90 s; used therapeutically in F98 glioma-bearing rats with tissue and plasma intact-carboplatin concentrations measured.
Route of administration intravenous

Outcomes and Safety

Summary of Outcomes Closed-loop BBB disruption safely increased carboplatin delivery to normal brain and glioma tissue, slowed tumor growth and increased median survival in F98 rats.
Duration of biological effect 4 hours
Safety-related matter Repeated, actively-controlled FUS BBB disruption with carboplatin produced no significant neurotoxicity or vascular damage by MRI or histology; the only adverse finding was a tiny (<1 mm) striatal scar in one animal and no edema or delayed tissue loss was observed. Wideband/subharmonic emissions (indicators of inertial cavitation) occurred in <10% of sonicated locations but were managed by the closed-loop controller and were not associated with detectable damage.

Brain Region

Ultrasound Parameters

Ultrasound instrument ExAblate Neuro low-frequency TcMRgFUS system (InSightec); 1024-element hemispherical transducer (diameter: 30 cm)
FUS Frequency 230 kHz
FUS Pressure 0.119-0.186 MPa
FUS Mode pulsed
Pulse duration 5 ms
Duration of a single FUS session 330–555 s (5.5–9.25 min)
Focal Characteristics Focal depth: 1 cm; Focal length: None; Aperture size: 30 cm
Treatment frequency Multiple

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