In this study, a novel amidase- and redox-responsive codelivery nanosystem was developed by covalently linking salicylic acid (SA) to functionalized disulfide-doped mesoporous silica nanoparticles (MSNs-ss-NH 2 ) for the efficient delivery of SA and bioavailable silicon concurrently
To understand and control these risks, advanced analytical techniques such as HR-MS, LC-MS/MS, NMR, CD spectroscopy, and forced degradation studies provide valuable insights into peptide structure, impurities, degradation pathways, and stability
Quantitative analysis revealed dose-dependent telomere length increases in both normal and cancer cell lines
Droppelmann, C
Similar content being viewed by others Subjects Introduction Hyperuricemia is a metabolic disorder marked by elevated serum uric acid concentrations in both extracellular fluids and tissues, coupled with impaired uric acid excretion