PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 5, 2026Journal of the Chinese Chemical Society0 citations

An advanced nanocarrier‐based drug delivery approach utilizing vancomycin‐loaded cerium oxide nanoparticles with dual antibiotic and anti‐inflammatory activities for the management of pulmonary‐associated sepsis

View Full Paper
WWWeiwei WangZTZhengyun TianPCPeifeng Chi

Key Points

  • To evaluate the efficacy of vancomycin-loaded cerium oxide nanoparticles for treating pulmonary sepsis.
  • Fabrication of vancomycin-loaded cerium oxide nanoparticles (V-CeO2 NPs)
  • Assessment of antibacterial activity against Staphylococcus aureus and Escherichia coli
  • In vitro analysis using cytoprotective assays on human pulmonary microvascular endothelial cells
  • In vivo testing in an LPS-induced septic animal model
  • V-CeO2 NPs exhibit strong antibacterial effects with MIC values of 40 μg/mL for Staphylococcus aureus and 50 μg/mL for Escherichia coli
  • Significant cytoprotective effects were observed in human pulmonary microvascular endothelial cells after LPS induction
  • In vivo studies demonstrate modulation of inflammatory mediators, confirming therapeutic potential

Abstract

Abstract Pulmonary sepsis remains a major clinical challenge, requiring innovative therapeutic approaches for treating lung infection and inflammation. In this work, vancomycin‐loaded cerium oxide nanoparticles (V‐CeO 2 NPs) were fabricated and their potential for antimicrobial applications was analyzed. The physicochemical properties of V‐CeO 2 NPs were confirmed by the formation of well‐distributed cubic NPs. The in vitro analysis shows the efficiency of the drug by antibacterial activity and anti‐biofilm assay. The V‐CeO 2 NPs show strong antibacterial activity against Staphylococcus aureus and Escherichia coli , with minimum inhibitory concentrations (MICs) of 40 and 50 μg/mL, respectively. Cytoprotective efficacy was analyzed by inducing lipopolysaccharide (LPS) in human pulmonary microvascular endothelial cells (HPMECs) using 3‐(4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyltetrazolium bromide (MTT), reactive oxygen species (ROS), and flow cytometry assays. In addition, in vivo studies in an LPS‐induced septic animal model confirm significant effects, largely attributed to modulation of inflammatory mediators. Overall, these findings suggest that the therapeutic potential of V‐CeO 2 NPs represents a promising strategy for the treatment of pulmonary sepsis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/698433a5f1d9ada3c1fb0fa4https://doi.org/10.1002/jccs.70161
Ask AI
Helpful
Bookmark
Share
View Full Paper