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Use of ultrasound pulses combined with Definity for targeted blood-brain barrier disruption: a feasibility study.

Authors: McDannold N, Vykhodtseva N, Hynynen K

We have developed a method to use low-intensity focused ultrasound pulses combined with an ultrasound contrast agent to produce temporary blood-brain barrier disruption (BBBD). This method could provide a means for the targeted delivery of drugs or imaging agents into the brain. In all our previous work, we used Optison as the ultrasound contrast agent. The purpose of this study was to test the feasibility of using the contrast agent Definity for BBBD. A total of 36 non-overlapping locations were sonicated through a craniotomy in experiments in the brains of nine rabbits (four locations per rabbit; ultrasound [US] frequency: 0.69 MHz; burst: 10 ms; pulse repetition frequency (PRF): 1 Hz; duration: 20 s). The peak negative pressure amplitude ranged from 0.2 to 1.5 MPa. An additional 11 locations were sonicated using Optison at pressure amplitude of 0.5 MPa. Definity and Optison dosages were the same as those used clinically for ultrasound imaging: 10 and 50 microl/kg, respectively. The probability for BBBD (determined using MRI contrast agent enhancement) as a function of pressure amplitude was similar to that found earlier with Optison. For both agents, the probability was estimated to be 50% at 0.4 MPa using probit regression. Histologic examination revealed small, isolated areas of extravasated erythrocytes in some locations. At 0.8 MPa and higher, these areas were sometimes accompanied by tiny (dimensions of 100 microm or less) regions of damaged brain parenchyma. The magnitude of the BBBD was larger with Optison than with Definity at 0.5 MPa (signal enhancement: 13.3% +/- 4.4% vs. 8.4% +/- 4.9%; p = 0.04). In addition, more areas with extravasated erythrocytes were observed with Optison (5.0 +/- 3.5 vs. 1.4 +/- 1.9 areas with extravasation in histology section with largest effect; p = 0.03). We concluded that BBBD is possible using Definity at the dosage of contrast agent and the acoustic parameters tested in this study. The probability for BBBD as a function of pressure amplitude and the type of acute tissue effects were similar to what has been observed using Optison. However, under the experimental conditions used in this study, Optison produced a larger effect for the same acoustic pressure amplitude.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To test whether the ultrasound contrast agent Definity can be used with low-intensity focused ultrasound to produce temporary blood-brain barrier disruption.
Animal model / Human subject Rabbit (n=9); strain None; age None; sex None
Cargo name and characteristics MRI contrast agent (gadolinium-based small-molecule imaging agent used to detect blood-brain barrier disruption; specific agent and dose None)

Outcomes and Safety

Summary of Outcomes Low‑intensity focused ultrasound (0.69 MHz, 10 ms bursts, 1 Hz PRF, 20 s) with Definity (10 μl/kg) or Optison (50 μl/kg) produced temporary blood–brain barrier disruption in rabbit brain with ~50% probability at 0.4 MPa and measurable enhancement at 0.5 MPa (Optison > Definity), while pressures ≥0.8 MPa sometimes caused small regions of parenchymal damage.
Safety-related matter Small isolated areas of extravasated erythrocytes were observed, and at pressures ≥0.8 MPa this was sometimes accompanied by tiny (≤100 μm) regions of damaged brain parenchyma. Optison produced a larger BBBD effect and more areas with erythrocyte extravasation than Definity at the same acoustic pressure.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Frequency 0.69 MHz
FUS Pressure 0.2-1.5 MPa (applied range); 0.5 MPa (Optison locations); 0.4 MPa (50% BBBD probability estimate); ≥0.8 MPa (tissue damage observed)
FUS Mode pulsed
Pulse duration 10 ms
Duration of a single FUS session 20 s
Focal Characteristics focal depth: None; focal length: None; aperture size: None
Treatment frequency Single session

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