Ultrasmall Antioxidant Cerium Oxide Nanoparticles for Regulation of Acute Inflammation.
Johoon KimGwanui HongLuda MazaleuskayaJessica C HsuDerick N Rosario-BerriosTilo GrosserPark F Cho-ParkDavid Peter CormodePublished in: ACS applied materials & interfaces (2021)
Cerium oxide nanoparticles (CeONP), having potent antioxidant properties, are highly promising nanomaterials for treatment of diseases in which oxidative stress from excessive reactive oxygen species (ROS) plays a critical role in the pathogenesis and progression. However, most previously reported CeONP formulations were not efficiently cleared from the body, precluding their clinical translation. Herein, we report ultrasmall CeONP that can mitigate activation of macrophages and subsequent acute inflammation. It is found that these CeONP can effectively scavenge reactive species, inhibit macrophage activation, and minimize their recruitment and infiltration to the inflammation site, which lead to alleviation of edema and pain hypersensitivity. Moreover, we demonstrate that CeONP can be effectively excreted from the body within 24 h of systemic administration, minimizing long-term toxicity concerns. Altogether, our findings suggest that CeONP may be explored as both antioxidant and anti-inflammatory agents that can reduce acute inflammation with a better safety profile than existing nanoparticles.
Keyphrases
- oxidative stress
- oxide nanoparticles
- anti inflammatory
- liver failure
- dna damage
- reactive oxygen species
- drug induced
- diabetic rats
- respiratory failure
- ischemia reperfusion injury
- induced apoptosis
- aortic dissection
- chronic pain
- cell death
- adipose tissue
- extracorporeal membrane oxygenation
- smoking cessation
- weight loss
- spinal cord
- pain management
- mechanical ventilation
- heat stress
- iron oxide nanoparticles