Enhancement of Vancomycin Potential against Pathogenic Bacterial Strains via Gold Nano-Formulations: A Nano-Antibiotic Approach

Faculty Pharmacy Year: 2022
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Materials MDPI Volume:
Keywords : Enhancement , Vancomycin Potential against Pathogenic Bacterial Strains    
Abstract:
The remarkable rise of antibiotic resistance among pathogenic bacteria poses a significant threat to human health. Nanoparticles (NPs) have recently emerged as novel strategies for conquering fatal bacterial diseases. Furthermore, antibiotic-functionalized metallic NPs represent a viable nano-platform for combating bacterial resistance. In this study, we present the use of vancomycinfunctionalized gold nanoparticles (V-GNPs) to battle pathogenic bacterial strains. A facile one-pot method was adopted to synthesize vancomycin-loaded GNPs in which the reducing properties of vancomycin were exploited to produce V-GNPs from gold ions. UV–Visible spectroscopy verified the production of V-GNPs via the existence of a surface plasmon resonance peak at 524 nm, whereas transmission electron microscopy depicted a size of ~24 nm. Further, dynamic light scattering (DLS) estimated the hydrodynamic diameter as 77 nm. The stability of V-GNPs was investigated using zeta-potential measurements, and the zeta potential of V-GNPs was found to be 􀀀18 mV. Fourier transform infrared spectroscopy confirmed the efficient loading of vancomycin onto GNP surfaces; however, the loading efficiency of vancomycin onto V-GNPs was 86.2%. Finally, in vitro antibacterial studies revealed that V-GNPs were much more effective, even at lower concentrations, than pure vancomycin. The observed antibacterial activities of V-GNPs were 1.4-, 1.6-, 1.8-, and 1.6-fold higher against Gram-negative Escherichia coli, Klebsiella oxytoca, and Pseudomonas aeruginosa and Gram-positive Staphylococcus aureus, respectively, compared to pure vancomycin. Collectively, V-GNPs represented a more viable alternative to pure vancomycin, even at a lower antibiotic dose, in conquering pathogenic bacteria. Keywords: gold nanoparticles; antib
   
     
 
       

Author Related Publications

  • Amr Selim Ahmed Ali Abu Lila, "Activation of TLR9 by incorporated pDNA within PEG-coated lipoplex enhances anti-PEG IgM production", nature, 2014 More
  • Amr Selim Ahmed Ali Abu Lila, "Treatment of pulmonary arterial hypertension by vardenafil-solid dispersion lozenges as a potential alternative drug delivery system", Elsevier, 2020 More
  • Amr Selim Ahmed Ali Abu Lila, "Doxorubicin Embedded into Nanofibrillated Bacterial Cellulose (NFBC) Produces a Promising Therapeutic Outcome for Peritoneally Metastatic Gastric Cancer in Mice Models via Intraperitoneal Direct Injection", MDPI, 2021 More
  • Amr Selim Ahmed Ali Abu Lila, "Efficacy of SPG-ODN 1826 Nanovehicles in Inducing M1 Phenotype through TLR-9 Activation in Murine Alveolar J774A.1 Cells: Plausible Nano-Immunotherapy for Lung Carcinoma", MDPI, 2021 More
  • Amr Selim Ahmed Ali Abu Lila, "Not Only Antimicrobial: Metronidazole Mitigates the Virulence of Proteus mirabilis Isolated from Macerated Diabetic Foot Ulcer", MDPI, 2021 More

Department Related Publications

  • Ahmed Samer Zedan, "Physicochemical characterization and dissolution properties of rofecoxib complexes with cyclodextrins", لايوجد, 1900 More
  • Ahmed Samer Zedan, "Preparation and characterization of rofecoxib solid dispersions with polyethylene glycols and urea", لايوجد, 1900 More
  • Mahmoud Mokhtar AhmedIbrahiem, "Effect of some formulation parameters on flurbiprofen encapsulation and release rates of niosomes prepared from proniosomes", لايوجد, 1900 More
  • Amr Selim Ahmed Ali Abu Lila, "Use of polyglycerol (PG), instead of polyethylene glycol (PEG), prevents induction of the accelerated blood clearance phenomenon against long-circulating liposomes upon repeated administration", Elsevier, 2013 More
  • Amr Selim Ahmed Ali Abu Lila, "Tumor-type-dependent vascular permeability constitutes a potential impediment to the therapeutic efficacy of liposomal oxaliplatin", Elsevier, 2012 More
Tweet