Transcranial focused ultrasound-induced blood‒brain barrier opening in mice without shaving hairs.
Authors: Xu L, Gong Y, Chien CY, Leuthardt E, Chen H
Acoustic coupling through hairs remains a challenge to performing transcranial-focused ultrasound procedures. Here, we demonstrated that this challenge could be addressed by using oil as the coupling medium, leveraging oil's high affinity to hairs due to their inherent hydrophobicity. We compared focused ultrasound-induced blood-brain barrier opening (FUS-BBBO) outcomes in mice under three coupling conditions: oil with hairs ("oil + hairs"), ultrasound gel with hair shaving ("ultrasound gel + no hair"), and ultrasound gel with hairs ("ultrasound gel + hairs"). The quality of the coupling was evaluated by [Formula: see text]-weighted magnetic resonance imaging (MRI) and passive cavitation detection (PCD). The outcome of FUS-BBBO was assessed by MRI contrast agent extravasation using in vivo [Formula: see text]-weighted contrast-enhanced MRI. It was also evaluated by ex vivo fluorescence imaging of the mouse brain after intravenous injection of a model drug, Evans blue. The results showed that "oil + hairs" consistently achieved high-quality acoustic coupling without trapping air bubbles. The FUS-BBBO outcome was not significantly different between the "oil + hairs" and the "ultrasound gel + no hair" groups. These two groups had significantly higher levels of BBB opening than the "ultrasound gel + hairs" group. This study demonstrated that oil could be a coupling medium for transcranial FUS procedures without shaving hairs.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate whether oil can serve as an effective acoustic coupling medium for transcranial focused ultrasound (tFUS) procedures without shaving hairs by comparing FUS-BBBO outcomes under oil-with-hairs, ultrasound-gel-without-hair, and ultrasound-gel-with-hairs conditions.
Animal model / Human subject
Mouse (Mus musculus), Swiss strain, 6–8 weeks old, female
Disease model
healthy
MRI or image guidance method
MR-guided targeting: an MR-compatible FUS system integrated into a 9.4 T small-animal MRI was used; T2-weighted MRI scans were acquired to determine the relative position of the transducer to the brain and guide sonication (target = left striatum).
Targeted brain region(s)
Striatum
Target coordinates
None (targeted region: left striatum)
Cargo name and characteristics
Evans blue — small‑molecule albumin‑binding dye used as a model drug (4% solution) administered intravenously for ex vivo fluorescence assessment; Gadobenate dimeglumine (Gd‑BOPTA, MultiHance) — a gadolinium‑based small‑molecule MRI contrast agent used for in vivo T1‑weighted contrast‑enhanced imaging to evaluate BBB opening.
Route of administration
intravenous
Outcomes and Safety
Summary of Outcomes
Applying oil to unshaved hairs produced bubble-free acoustic coupling and achieved focused ultrasound–induced blood–brain barrier opening and drug delivery comparable to the conventional shaved‑gel method and significantly better than ultrasound gel applied to hairs.
Safety-related matter
The authors state that oil can be conveniently applied to patients without causing any skin irritation.
Brain Region
Ultrasound Parameters
Ultrasound instrument
MR-guided FUS system (Image Guided Therapy, Pessac, France); MRI-compatible FUS transducer (Imasonic, Voray-sur-l'Ognon, France) — seven-element annular array, center frequency 1.5 MHz, aperture 25 mm, radius of curvature 20 mm.
FUS Frequency
1.5 MHz (FUS transducer center frequency); 1.6 MHz (PCD center frequency); 3.0 MHz (second harmonic assessed); 754 kHz (PCD −6 dB bandwidth); ±0.02 MHz (bandwidth around 3.0 MHz used for SC assessment)
FUS Intensity
Spatial-peak pulse-average (ISPPA) ≈ 12 W/cm^2; Spatial-peak temporal-average (ISPTA, 3.3% duty cycle) ≈ 0.396 W/cm^2
FUS Pressure
0.6 MPa
FUS Mode
pulsed
Pulse duration
6.67 ms (0.00667 s)
Duration of a single FUS session
3 minutes
Focal Characteristics
20 mm
Treatment frequency
single session
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