The first inorganic mitogens: Cerium oxide and cerium fluoride nanoparticles stimulate planarian regeneration via neoblastic activation.
Clicks: 284
ID: 49281
2019
Article Quality & Performance Metrics
Overall Quality
Improving Quality
0.0
/100
Combines engagement data with AI-assessed academic quality
Reader Engagement
Steady Performance
64.8
/100
284 views
227 readers
Trending
AI Quality Assessment
Not analyzed
We report the first experimental evidence for the mitogenic action of cerium(IV) oxide and cerium(III) fluoride nanoparticles (CONs and CFNs) on the regeneration of a whole organism - freshwater flatworms Schmidtea mediterranea (planarian). Both types of cerium-containing nanoparticles are shown to be a highly potent mitogen for planaria. Both CONs and CFNs, in micro- and nanomolar concentrations, markedly accelerate planarian blastema growth, due to the enhancement of cellular proliferation, causing an increase in the mitotic index and in the quantity of blastema cells in regenerating planaria. CONs provided maximum activity at concentrations which were two orders of magnitude lower than those for CeF. The valence state of cerium in cerium-containing nanoparticles plays a significant role in the planarian regeneration mechanism: CeO nanoparticles containing predominantly Ce species presumably scavenge wound induced reactive oxygen species and moderately activate gene expression processes, while the regenerative action of CeF nanoparticles containing only Ce species is manifested in the pronounced expression of the genes involved in cell division, differentiation and migration. This is the first report on the effect of cerium-containing nanoparticles on tissue regeneration in vivo, further revealing the mechanisms of their biological action, which enhances the possibility of their use in cellular technologies.
Reference Key |
ermakov2019thematerials
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
---|---|
Authors | Ermakov, Artem;Popov, Anton;Ermakova, Olga;Ivanova, Olga;Baranchikov, Alexander;Kamenskikh, Kristina;Shekunova, Taisiya;Shcherbakov, Alexander;Popova, Nelli;Ivanov, Vladimir; |
Journal | materials science & engineering c, materials for biological applications |
Year | 2019 |
DOI | S0928-4931(19)30472-2 |
URL | |
Keywords |
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.