Nanoceria: Metabolic interactions and delivery through PLGA-encapsulation

References

ref title DOI material type comment
3853 667 Nanoceria: Metabolic interactions and delivery through PLGA-encapsulation https://doi.org/10.1016/j.msec.2020.111003 Metal oxide The biocompatibility and tunable degradation of poly(lactic-co-glycolic acid) (PLGA) made it a candidate material for encapsulating both nanoceria and SOD.

Materials

ref material size size err size unit size type size comment BET b nanozyme b 10n b unit specific act sa 10n sa unit comment
7884 667 nanoceria 3 nm TEM Both TEM images and DLS (images in SI) indicated that the proposed synthetic approach yielded nanoparticles with an average size of 3 nm.

Kinetics

ref material enzyme type substrate pH T km km err km 10n km unit vmax vmax err vmax 10n vmax unit kcat kcat err kcat 10n kcat unit kcat/km kcat/km 10n kcat/km unit comment
6550 667 nanoceria CAT 667

Applications

ref material application target method linear range linear ran unit LOD lod unit recovery comment
5597 667 nanoceria ROS elimination