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Effects of focused ultrasound sonodynamic treatment on the rat blood-brain barrier.

Authors: Yoshino S, Fukushima T, Hayashi S, Nonaka M, Ogawa K, Sasaki K, Umemura S

Ultrasound has recently been applied to the treatment as well as the diagnosis of various pathologies, and its antitumor effects in the treatment of human cancer and experimental models of cancer have been demonstrated. In addition, it is possible that certain photosensitizers will enhance the antitumor effects of ultrasound. However, very few studies have been reported on how the blood-brain barrier is affected by sonodynamic therapy. The purpose of this study was to evaluate disruption of the blood-brain barrier with focused ultrasound with a photosensitizer, for clinical application of sonodynamic therapy to brain tumors. Rat brains were subjected to focused ultrasound irradiation via a transducer with or without prior intravenous injection of photosensitizer, and lesions were examined histologically by electron microscopy. Electron microscopically, swelling of astroglial processes, denatured cells, protoplasm of endothelial cells, and mitochondria were observed in the center and border of regions of ultrasonic irradiation. There were numerous pinocytotic vesicles in the cytoplasm of the endothelial cells. In addition, disruption of the cytoplasmic membrane of endothelial cells and astroglia was found in these regions. These findings suggest that sonodynamic therapy with a photosensitizer affects the blood-brain barrier, and that blood vessel permeability increases not only as a result of destruction of the blood-brain barrier but also by disruption of the cytoplasmic membrane of endothelial cells.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To evaluate the effects of focused ultrasound sonodynamic treatment on the integrity and permeability of the rat blood-brain barrier.
Animal model / Human subject Rat (250 - 300 g); strain not specified; age not specified; sex not specified
Disease model healthy (rat blood-brain barrier)
MRI or image guidance method Not reported in the provided text
Targeted brain region(s) Not Specified
Target coordinates Not provided in the supplied text.
Cargo name and characteristics Sonosensitizer — a small-molecule sonodynamic agent (rose bengal), when activated by focused ultrasound, produces reactive oxygen species to mediate sonodynamic effects.
Route of administration Intravenous

Outcomes and Safety

Summary of Outcomes Focused ultrasound sonodynamic treatment transiently increased permeability of the rat blood–brain barrier, facilitating enhanced delivery across the barrier.
Duration of biological effect Not reported
Safety-related matter ultrasound caused tissue injury and BBB disruption under sonodynamic treatment (100 W/cm2 for 3-5 minutes with or without rose bengal)

Brain Region

Ultrasound Parameters

Ultrasound instrument Focused ultrasound transducer (Hitachi Ltd.)
FUS Frequency 1.04 MHz
FUS Intensity 100 W/cm2
FUS Pressure Not reported
FUS Mode not specified
Pulse duration Not reported
Duration of a single FUS session 3 or 5 minutes
Focal Characteristics 4 mm from the transducer rim, with the ultrasound directed 2-3 mm axially and 1-2 mm laterally
Treatment frequency single

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