Simultaneous Blood–Brain Barrier Crossing and Protection for Stroke Treatment Based on Edaravone-Loaded Ceria Nanoparticles
Одновременное преодоление и защита гематоэнцефалического барьера для лечения инсульта на основе наночастиц диоксида церия, нагруженных эдаравоном
2018-06-22
SCID: 54.1/c76ewt7f
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blood–brain barrier crossingceria nanoparticlesedaravone-loaded nanoparticlesischemic stroke therapyreactive oxygen species scavenging
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Abstract (AI)
Cerebral vasculature and neuronal networks will be largely destroyed due to the oxidative damage by overproduced reactive oxygen species (ROS) during a stroke, accompanied by the symptoms of ischemic injury and blood–brain barrier (BBB) disruption. Ceria nanoparticles, acting as an effective and recyclable ROS scavenger, have been shown to be highly effective in neuroprotection. However, the brain access of nanoparticles can only be achieved by targeting the damaged area of BBB, leading to the disrupted BBB being unprotected and to turbulence of the microenvironment in the brain. Nevertheless, the integrity of the BBB will cause very limited accumulation of therapeutic nanoparticles in brain lesions. This dilemma is a great challenge in the development of efficient stroke nanotherapeutics. Herein, we have developed an effective stroke treatment agent based on monodisperse ceria nanoparticles, which are loaded with edaravone and modified with Angiopep-2 and poly(ethylene glycol) on their surface (E-A/P-CeO 2 ). The as-designed E-A/P-CeO 2 features highly effective BBB crossing via receptor-mediated transcytosis to access brain tissues and synergistic elimination of ROS by both the loaded edaravone and ceria nanoparticles. As a result, the E-A/P-CeO 2 with low toxicity and excellent hemo/histocompatibility can be used to effectively treat strokes due to great intracephalic uptake enhancement and, in the meantime, effectively protect the BBB, holding great potentials in stroke therapy with much mitigated harmful side effects and sequelae.
Key Findings
1
An edaravone-loaded ceria nanoparticle system was developed with Angiopep-2 and polyethylene glycol surface modification for stroke treatment.
2
E-A/P-CeO2 exhibits low toxicity and excellent hemocompatibility and histocompatibility, potentially reducing treatment-related side effects and sequelae.
3
Loaded edaravone and ceria nanoparticles provide synergistic reactive oxygen species scavenging to reduce oxidative damage after stroke.
4
The formulation effectively treats stroke while protecting blood–brain barrier integrity, addressing the trade-off between nanoparticle brain access and barrier preservation.
5
The nanoparticles cross the blood–brain barrier through receptor-mediated transcytosis, enabling enhanced accumulation in brain tissues and lesions.
Research Object
Edaravone-loaded ceria nanoparticles modified with Angiopep-2 and poly(ethylene glycol) for stroke treatment
Research Subject
Blood–brain barrier crossing, intracephalic uptake, synergistic ROS elimination, and BBB protection by the nanotherapeutic
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2018-06-22
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