Facile engineering of silk fibroin capped AuPt bimetallic nanozyme responsive to tumor microenvironmental factors for enhanced nanocatalytic therapy

References

ref title DOI material type comment
3970 784 Facile engineering of silk fibroin capped AuPt bimetallic nanozyme responsive to tumor microenvironmental factors for enhanced nanocatalytic therapy https://doi.org/10.7150/thno.50486 Composite silk fibroin capped AuPt

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
7995 784 AuPt@SF (APS) In addition, the hydrodynamic size and polydispersity index (PDI) of the nanozyme were 120.3 nm and 0.259, respectively, which is within the valid size range (50-200 nm) for the enhanced permeation and retention (EPR) effect 97.254

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
6686 784 AuPt@SF (APS) OXD glucose 45.795 µg/mL 0.125 μM/s 784
6685 784 AuPt@SF (APS) POD H2O2 28.148 mM 6.756 μM/s 784

Applications

ref material application target method linear range linear ran unit LOD lod unit recovery comment
5710 784 AuPt@SF (APS) Antitumor