Pitt Shield

Noninvasive and localized blood-brain barrier disruption using focused ultrasound can be achieved at short pulse lengths and low pulse repetition frequencies.

Authors: Choi JJ, Selert K, Gao Z, Samiotaki G, Baseri B, Konofagou EE

Ultrasound methods in conjunction with microbubbles have been used for brain drug delivery, treatment of stroke, and imaging of cerebral blood flow. Despite advances in these areas, questions remain regarding the range of ultrasound parameters that disrupt the blood-brain barrier (BBB). In this study, several conditions were investigated to either enhance or reduce the likelihood of BBB disruption. Pulsed focused ultrasound (frequency: 1.5 MHz, pressure: 0.46 MPa, pulse repetition frequency (PRF): 0.1 to 25 Hz, pulse length (PL): 0.03 to 30 milliseconds) was noninvasively and locally administered to a predetermined region in the left hemisphere in the presence of circulating preformed microbubbles (Definity, Lantheus Medical Imaging, N. Billerica, MA, USA; 0.01, 0.05, 0.25 μL/g). Trans-BBB delivery of 3-kDa dextran was observed at PRFs as low as 1 Hz, whereas consistent delivery was observed at 5 Hz and above. Delivery was demonstrated at a PL as low as 33 microseconds. Although the delivered dextran concentration increased with the PL, this also increased the heterogeneity of the resulting distribution. In conclusion, key parameters that disrupt the BBB were identified out of a wide range of conditions. Reducing the total number of emitted acoustic cycles by shortening the PL, or decreasing the PRF, was also found to facilitate a more spatially uniform distribution of delivered dextran.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To identify which pulsed focused ultrasound parameters and microbubble doses disrupt the blood–brain barrier and affect trans-BBB delivery and spatial distribution of dextran.
Disease model Healthy
Targeted brain region(s) Hemisphere
Cargo name and characteristics 3-kDa dextran (small polysaccharide tracer; ~3 kDa molecular weight)

Outcomes and Safety

Summary of Outcomes Pulsed focused ultrasound (1.5 MHz, 0.46 MPa) administered with circulating microbubbles transiently disrupted the blood–brain barrier and enabled trans-BBB delivery of 3-kDa dextran. Successful parameters included pulse repetition frequencies (PRF) as low as 1 Hz (consistent delivery at >=5 Hz) and pulse lengths (PL) as short as 33 μs, with longer PLs increasing delivered concentration but causing greater heterogeneity, and shortening PL or decreasing PRF improving spatial uniformity.
Duration of biological effect 33 microseconds
Safety-related matter No adverse effects or safety issues are mentioned in the provided text; the study reports identification of ultrasound parameters that disrupt the BBB and notes increased heterogeneity with longer pulse lengths but does not report harm.

Brain Region

Ultrasound Parameters

FUS Frequency 1.5 MHz
FUS Pressure 0.46 MPa
FUS Mode pulsed
Pulse duration 0.03 to 30 milliseconds
Focal Characteristics focal depth: None, focal length: None, aperture size: None
Treatment frequency Single

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