Protocol to Induce the Temporary Opening of the Blood-Brain Barrier with Short-Time Focused Ultrasound in Rats.
Authors: Rodríguez JA, Gutiérrez MI, Vera A, Hernández DA, Gutiérrez JM, Martínez-Fong D, Leija L
Brain neurodegenerative diseases are central nervous system (CNS) affections typically common in older adults. A new therapeutic approach for them consists of providing specific drugs to the CNS through blood circulation; however, the Blood-Brain Barrier (BBB) prevents almost 100% of neurotherapeutics from reaching the brain. There are indications that Focused Ultrasound (FUS), temporarily placed in the BBB, can achieve a controlled increase in temperature at its focus, allowing temporary, localized, and reversible opening of this barrier, which facilitates the temporary delivery of specific drugs. This work presents a FUS-based protocol for the local, temporary, and reversible opening of the BBB in Wistar rats. The proposed protocol specifies certain power, treatment times, and duty cycle to controllably increase the temperature at the region of interest, i.e., the substantia nigra. Numerical simulations using commercial software based on the finite element method were carried out to determine the optimal size of the craniotomies for nearly full-acoustic transmission. Experiments in rats were performed with the parameters used during computational simulations to determine the adequate opening of the BBB. For this, craniotomies of different sizes were made at coordinates of the substantia nigra, and FUS was applied from the exterior. The opening of the BBB was evaluated using Evans Blue (EB) as an indicator of the crossing of the dye from the blood vessels to brain tissue. Numerical simulations demonstrated a major distance reached by the ultrasound focus with a bigger diameter. Experimental results show the local, temporary, and reversible opening of the BBB through a 10 mm diameter craniotomy, which effectively allowed placing the ultrasound focus over the substantia nigra, unlike a 6 mm diameter craniotomy in which there is a deviation of the focus through that window. Moreover, from these results, it was also determined that the disruption of the BBB was reversible, with an opening duration of 6 h after FUS application. The experimental work developed in this study resulted in a minimally invasive method for the temporary opening of the BBB.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To develop and validate a focused ultrasound protocol that produces a local, temporary, and reversible opening of the blood–brain barrier at the substantia nigra in Wistar rats.
Animal model / Human subject
Wistar rat (Rattus norvegicus), strain: Wistar; age: not reported; sex: not reported
Disease model
Healthy
MRI or image guidance method
Stereotactic coordinates-based targeting (craniotomies made at coordinates of the substantia nigra)
Targeted brain region(s)
Substantia Nigra
Cargo name and characteristics
Evans Blue (EB) — a small-molecule, albumin-binding dye tracer used to assess blood–brain barrier permeability
Outcomes and Safety
Summary of Outcomes
Focused ultrasound produced a local, temporary and reversible opening of the blood–brain barrier at the substantia nigra in Wistar rats (Evans Blue extravasation), with the opening lasting about 6 hours. Successful conditions required applying the protocol-specified FUS (power, treatment time and duty cycle as used in the study) through a 10 mm craniotomy (10 mm allowed correct focus placement and BBB opening; a 6 mm craniotomy caused focus deviation and failed to open the BBB).
Safety-related matter
The study reports a minimally invasive, local, temporary, and reversible opening of the BBB (lasting about 6 hours) and does not mention any adverse effects or safety concerns.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Focused Ultrasound (FUS); manufacturer: None; transducer aperture/diameter: None
FUS Mode
pulsed
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: 10 mm, 6 mm
Treatment frequency
Single
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