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Redox nanoparticle treatment protects against neurological deficit in focused ultrasound-induced intracerebral hemorrhage.

Authors: Chonpathompikunlert P, Fan CH, Ozaki Y, Yoshitomi T, Yeh CK, Nagasaki Y

Intracerebral hemorrhage is reported to induce the generation of reactive oxygen species and oxidative DNA damage in the brain. We aimed to examine whether our designed redox polymer nanoparticle could reduce intracerebral hemorrhage induced by 1-MHz focused ultrasound sonication coupled with microbubble treatment. Contrast-enhanced ultrasound imaging, frozen section, brain edema, neurologic deficit, the number of morphologically normal neurons, DNA oxidization and superoxide anion generation were used to investigate the neuroprotective effect of redox polymer nanoparticles. We confirmed that the 1-MHz focused ultrasound coupled with microbubble produced intracerebral hemorrhage and showed that the redox polymer nanoparticle ameliorates intracerebral hemorrhage-induced brain edema, neurological deficit and oxidative damage. These results suggest that redox polymer nanoparticle is a potential therapeutic agent for intracerebral hemorrhage induced by focused ultrasound.

Introduction

Purpose BBB opening without drug delivery
Study Objective To evaluate whether redox nanoparticle treatment can protect against neurological deficits in a focused ultrasound-induced intracerebral hemorrhage model.
Animal model / Human subject Sprague–Dawley rats
Disease model intracerebral hemorrhage
Cargo name and characteristics Redox nanoparticle (redox-active antioxidant nanoparticle)

Outcomes and Safety

Summary of Outcomes Redox nanoparticle treatment reduced neurological deficits in a focused ultrasound–induced intracerebral hemorrhage model. No specific focused ultrasound parameter variants were reported in the provided text.
Safety-related matter The provided text contains no mention of safety data or any adverse effects.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

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