Mitochondria-Targeting Ceria Nanoparticles as Antioxidants for Alzheimer’s Disease

Наночастицы диоксида церия, направленные в митохондрии, в качестве антиоксидантов при болезни Альцгеймера
Dokyoon Kim, Taeghwan Hyeon, Dong‐Kyu Kim, Kwangsoo Shin, Min Soh, Inhee Mook‐Jung, Hyek Jin Kwon, Moon-Yong Cha
2016-02-04

5XFAD Alzheimer’s disease modelMitochondria-targeting ceria nanoparticlesMitochondrial oxidative stressReactive oxygen species scavengingTriphenylphosphonium-conjugated nanoparticles
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including Alzheimer's disease. Abnormal generation of reactive oxygen species (ROS), resulting from mitochondrial dysfunction, can lead to neuronal cell death. Ceria (CeO2) nanoparticles are known to function as strong and recyclable ROS scavengers by shuttling between Ce(3+) and Ce(4+) oxidation states. Consequently, targeting ceria nanoparticles selectively to mitochondria might be a promising therapeutic approach for neurodegenerative diseases. Here, we report the design and synthesis of triphenylphosphonium-conjugated ceria nanoparticles that localize to mitochondria and suppress neuronal death in a 5XFAD transgenic Alzheimer's disease mouse model. The triphenylphosphonium-conjugated ceria nanoparticles mitigate reactive gliosis and morphological mitochondria damage observed in these mice. Altogether, our data indicate that the triphenylphosphonium-conjugated ceria nanoparticles are a potential therapeutic candidate for mitochondrial oxidative stress in Alzheimer's disease.
1
The findings identify mitochondria-targeting ceria nanoparticles as a potential therapy for mitochondrial oxidative stress in Alzheimer’s disease.
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The mitochondria-targeting ceria nanoparticles suppressed neuronal death in the 5XFAD transgenic mouse model of Alzheimer’s disease.
3
Treatment mitigated reactive gliosis and morphological mitochondrial damage observed in 5XFAD mice.
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Triphenylphosphonium-conjugated ceria nanoparticles were designed to selectively localize to mitochondria as recyclable reactive oxygen species scavengers.

triphenylphosphonium-conjugated ceria (CeO2) nanoparticles localized to mitochondria in a 5XFAD transgenic Alzheimer’s disease mouse model

mitochondrial ROS scavenging and its effects on neuronal death, reactive gliosis, and mitochondrial morphological damage

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2016-02-04
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Dokyoon Kim
Taeghwan Hyeon
Dong‐Kyu Kim
Kwangsoo Shin
Min Soh
Inhee Mook‐Jung
Hyek Jin Kwon
Moon-Yong Cha
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