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Monitoring the Opening and Recovery of the Blood-Brain Barrier with Noninvasive Molecular Imaging by Biodegradable Ultrasmall Cu<sub>2- x</sub>Se Nanoparticles.

Authors: Zhang H, Wang T, Qiu W, Han Y, Sun Q, Zeng J, Yan F, Zheng H, Li Z, Gao M

The reversible and controllable opening and recovery of the blood-brain barrier (BBB) is crucial for the treatment of brain diseases, and it is a big challenge to noninvasively monitor these processes. In this article, dual-modal photoacoustic imaging and single-photon-emission computed tomography imaging based on ultrasmall Cu<sub>2- x</sub>Se nanoparticles (3.0 nm) were used to noninvasively monitor the opening and recovery of the BBB induced by focused ultrasound in living mice. The ultrasmall Cu<sub>2- x</sub>Se nanoparticles were modified with poly(ethylene glycol) to exhibit a long blood circulation time. Both small size and long blood circulation time enable them to efficiently penetrate into the brain with the assistance of ultrasound, which resulted in a strong signal at the sonicated site and allowed for photoacoustic and single-photon emission computed tomography imaging monitoring the recovery of the opened BBB. The results of biodistribution, blood routine examination, and histological staining indicate that the accumulated Cu<sub>2- x</sub>Se nanoparticles could be excreted from the brain and other major organs after 15 days without causing side effects. By the combination of the advantages of noninvasive molecular imaging and focused ultrasound, the ultrasmall biocompatible Cu<sub>2- x</sub>Se nanoparticles holds great potential for the diagnosis and therapeutic treatment of brain diseases.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To develop and apply biodegradable ultrasmall Cu2-xSe nanoparticles for noninvasive molecular imaging to monitor the opening and recovery of the blood–brain barrier.
Animal model / Human subject BALB/c mice
Disease model Healthy
Cargo name and characteristics Biodegradable ultrasmall Cu2-xSe nanoparticles (copper-deficient copper selenide), nanoparticle imaging agent

Outcomes and Safety

Summary of Outcomes Biodegradable ultrasmall Cu2−xSe nanoparticles enabled noninvasive molecular imaging to monitor focused‑ultrasound‑induced opening of the blood–brain barrier and its subsequent recovery, indicating the particles are suitable for temporal tracking of BBB permeability; no focused ultrasound parameters were provided in the text supplied.
Safety-related matter No safety or adverse effects are mentioned in the provided excerpt of the paper.

Brain Region

Visualization unavailable

Ultrasound Parameters

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

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