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Effects of cerium oxide nanoparticles on hemostasis: Coagulation, platelets, and vascular endothelial cells

Authors :
Angela Papa
Paola Parlanti
Valentina Cappello
Virgilio Mattoli
Serena Del Turco
Gianni Ciofani
Chiara Caselli
Laura Sabatino
Rosetta Ragusa
Debora Battaglia
Giuseppina Basta
Mauro Gemmi
Del Turco, Serena
Ciofani, Gianni
Cappello, Valentina
Parlanti, Paola
Gemmi, Mauro
Caselli, Chiara
Ragusa, Rosetta
Papa, Angela
Battaglia, Debora
Sabatino, Laura
Basta, Giuseppina
Mattoli, Virgilio
Source :
Journal of Biomedical Materials Research Part A. 107:1551-1562
Publication Year :
2019
Publisher :
Wiley, 2019.

Abstract

Cerium oxide nanoparticles (nanoceria [NC]) have attracted much attention in biomedicine due to their surface composition that confers interesting redox activities and regenerative properties. Studies have demonstrated that the application of NPs in biomedicine can influence components of hemostatic system, inducing blood clotting, alterations of blood cells, and endothelial cell functions. NC were tested in vitro to assess their hemocompatibility and anticoagulant, anti-inflammatory, and anti-senescence activity in human endothelial cells. Hemocompatibility has been evaluated in vitro looking at the impact of NC on coagulation times, fibrinogen, and platelet aggregation. The effect of NC on vascular endothelial cells were assayed by testing cell viability, antioxidant activity, anticoagulant (tissue factor [TF]-mRNA expression) and anti-inflammatory properties (VCAM-1 exposure, cytokine release), and senescence (telomere shortening). NC did not show significant effects on coagulation process, hemolysis, or platelet aggregation. In endothelial cells, NC did not affect cell viability, reduced oxidative stress, inhibited mRNA-TF expression, VCAM-1 expression, and cytokine release. Moreover, NC reduce telomere shortening, possibly counteracting premature senescence. The hemocompatibility combined with anticoagulant and anti-inflammatory phenotype and the ability of counteract the premature senescence in vascular cells make NC a promising therapeutic tool in oxidative stress-related conditions. © 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part A, 2019.

Details

ISSN :
15524965 and 15493296
Volume :
107
Database :
OpenAIRE
Journal :
Journal of Biomedical Materials Research Part A
Accession number :
edsair.doi.dedup.....a08357434d48cf8667b78b83b98fcacb