RRC ID 59766
Author Umapathi A, Nagaraju NP, Madhyastha H, Jain D, Srinivas SP, Rotello VM, Daima HK.
Title Highly efficient and selective antimicrobial isonicotinylhydrazide-coated polyoxometalate-functionalized silver nanoparticles.
Journal Colloids Surf B Biointerfaces
Abstract With the rapidly approaching post-antibiotic era, new and effective combinations of antibiotics are imperative to combat multiple drug resistance (MDR). We have synthesized multimodal antimicrobials that integrate the antibiotic isonicotinylhydrazide (INH), silver nanoparticles (AgNPsINH), and two different polyoxometalates (POMs) namely, phosphotungstic acid (PTA) and phosphomolybdic acid (PMA) to prepare AgNPsINH@PTA and AgNPsINH@PMA, respectively. AgNPsINH have peroxidase-like (nanozyme) activity and very high antibacterial potential toward S. aureus, which was further enhanced upon modification with POMs. The selectivity of these functional nanozymes was evaluated with m5S mouse fibroblasts using WST-8, LDH viability, in vitro reactive oxygen species (ROS) generation assays, and crystal violet morphological studies. These investigations showed very low cytotoxicity for the nanoparticles compared to free metal ions (Ag+), pristine POMs and INH, demonstrating the ability of multifunctional materials to provide efficient and selective antimicrobials.
Volume 184
Pages 110522
Published 2019-12-1
DOI 10.1016/j.colsurfb.2019.110522
PII S0927-7765(19)30666-6
PMID 31586898
MeSH Animals Anti-Bacterial Agents / chemical synthesis Anti-Bacterial Agents / chemistry Anti-Bacterial Agents / pharmacology* Isoniazid / chemistry Isoniazid / pharmacology* Metal Nanoparticles / chemistry* Mice Microbial Sensitivity Tests Molecular Structure Particle Size Silver / chemistry Silver / pharmacology* Staphylococcus aureus / drug effects* Surface Properties Tungsten Compounds / chemistry Tungsten Compounds / pharmacology*
IF 3.973
Times Cited 1
Resource
Human and Animal Cells MS-5(RCB4680)