Antioxidant Cerium Oxide Nanoparticles in Biology and Medicine
Антиоксидантные наночастицы оксида церия в биологии и медицине
2016-05-17
SCID: 54.1/pvjakhkr
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antioxidant activityantioxidant enzyme mimeticscerium oxide nanoparticlesnanoceriareactive oxygen species scavenging
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Abstract (AI)
Previously, catalytic cerium oxide nanoparticles (CNPs, nanoceria, CeO2-x NPs) have been widely utilized for chemical mechanical planarization in the semiconductor industry and for reducing harmful emissions and improving fuel combustion efficiency in the automobile industry. Researchers are now harnessing the catalytic repertoire of CNPs to develop potential new treatment modalities for both oxidative- and nitrosative-stress induced disorders and diseases. In order to reach the point where our experimental understanding of the antioxidant activity of CNPs can be translated into useful therapeutics in the clinic, it is necessary to evaluate the most current evidence that supports CNP antioxidant activity in biological systems. Accordingly, the aims of this review are three-fold: (1) To describe the putative reaction mechanisms and physicochemical surface properties that enable CNPs to both scavenge reactive oxygen species (ROS) and to act as antioxidant enzyme-like mimetics in solution; (2) To provide an overview, with commentary, regarding the most robust design and synthesis pathways for preparing CNPs with catalytic antioxidant activity; (3) To provide the reader with the most up-to-date in vitro and in vivo experimental evidence supporting the ROS-scavenging potential of CNPs in biology and medicine.
Key Findings
1
CNPs can potentially scavenge reactive oxygen species and mimic antioxidant enzymes through physicochemical properties of their surfaces.
2
Cerium oxide nanoparticles are being investigated as catalytic antioxidants for treating disorders driven by oxidative and nitrosative stress.
3
Current in vitro and in vivo evidence supports the ROS-scavenging potential of CNPs in biology and medicine, while translation to clinical therapeutics remains necessary.
4
Robust design and synthesis strategies are important for producing CNPs with catalytic antioxidant activity.
5
The review identifies reaction mechanisms and surface characteristics underlying CNP antioxidant activity in solution.
Research Object
Antioxidant cerium oxide nanoparticles (CNPs, nanoceria, CeO2-x NPs) in biological and medical systems
Research Subject
The ROS-scavenging mechanisms, physicochemical surface properties, catalytic antioxidant activity, and therapeutic potential of CNPs against oxidative- and nitrosative-stress disorders
Publication Details
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2016-05-17
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