Pitt Shield

Safety evaluation of frequent application of microbubble-enhanced focused ultrasound blood-brain-barrier opening.

Authors: Tsai HC, Tsai CH, Chen WS, Inserra C, Wei KC, Liu HL

Focused ultrasound (FUS) with the presence of microbubbles induces blood brain barrier (BBB) opening in targeted areas and facilitates drug delivery. However, recent studies have indicated that FUS-BBB opening with excessive exposure levels may be associated with inflammatory response and cellular/tissue damage. Multiple weekly FUS exposures have been shown to be safe for human subjects. However the effect of more frequent FUS exposures is still unknown. This study examines whether frequent focused ultrasound blood brain barrier opening is associated with aggravated behavioral, histopathologic change or brain tissue damage. Two protocols of focused ultrasound blood brain barrier opening were devised using different microbubble doses (0.15 µl/kg and 0.4 µl/kg). Focused ultrasound exposure at a threshold level of BBB-opening, below-threshold level, or above level for intracerebral hemorrhage were delivered every 2 days. Animal behavioral and physiological changes were examined and recorded. Brain tissue was examined for hemorrhage and apoptosis. Results indicate that frequent exposure of excessive focused ultrasound (1.4 mechanical index) produced minor and short-term behavioral changes despite significant tissue damage, while frequent BBB opening with threshold or below-threshold FUS exposure (0.33-0.8 mechanical index) did not cause behavioral or histological change. Immunofluorescent examination of rat brain tissue indicated that excessive doses of microbubble administration induce an apparent cellular apoptotic response, which may be exacerbated by intracerebral hemorrhage. Experimental results suggest that frequent focused ultrasound blood brain barrier opening with sufficient ultrasound exposure level and a microbubble dose can be safe and pose minimal risk to brain tissue.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To determine whether frequent focused ultrasound–induced blood–brain barrier opening produces behavioral, histopathologic, or brain tissue damage and thus assess its safety.
Animal model / Human subject Rat; strain not reported; age not reported; sex not reported
Disease model Healthy

Outcomes and Safety

Summary of Outcomes Frequent (every 2 days) FUS-BBB opening at threshold or below-threshold acoustic pressures (0.33–0.8 MI) with a standard microbubble dose (≈0.15 mL/kg, ~4×10^7 MBs/kg) produced BBB opening with no detectable behavioral or histological damage; in contrast, excessive acoustic exposure (1.4 MI) or high microbubble doses (0.4 mL/kg, ≈2×10^8 MBs/kg; >1.2×10^8 MBs/kg) caused intracerebral hemorrhage, increased astroglial activation and neuronal apoptosis and transient hypoactivity/ataxia.
Duration of biological effect 7 days
Safety-related matter Frequent FUS-BBB opening at threshold or below-threshold exposures (≈0.33–0.8 MI) and with standard microbubble doses (≈4.5×10^7 MBs/kg, 0.15 mL/kg) caused no observable behavioral or histological injury and appeared safe, whereas excessive FUS (1.4 MI) and/or high microbubble doses (≥1.2×10^8 MBs/kg, 0.4 mL/kg) produced transient hypoactivity/ataxia, significant intracerebral hemorrhage, tissue necrosis, increased plasma fibrinogen, astroglial activation and dose- and cumulative-dependent neuronal apoptosis.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None, Focal length: None, Aperture size: None
Treatment frequency Multiple sessions

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