Post-Space Disinfectants With Sodium Hypochlorite and Methylene Blue Loaded in Silver and Quartz Nanoparticles

Fahad Alkhudhairy1, Yasser F AlFawaz1

  • 1Restorative Dental Sciences Department, College of Dentistry, King Saud University, Riyadh, Saudi Arabia.

PubMed

Insights

Silver nanoparticles combined with methylene blue and photodynamic therapy (PDT) offer superior disinfection and smear layer removal for root canals. This novel approach significantly enhanced fiber post bond strength compared to traditional methods.

Area of Science:

  • Endodontics
  • Materials Science
  • Nanotechnology
  • Photodynamic Therapy

Background:

  • Effective disinfection and smear layer removal are crucial for successful root canal treatment and fiber post adhesion.
  • Traditional disinfectants like sodium hypochlorite (NaOCl) and EDTA have limitations in complete bacterial eradication and smear layer removal.
  • Photodynamic therapy (PDT) using methylene blue (MB) shows promise, but its efficacy can be enhanced with nanoparticle carriers.

Purpose of the Study:

  • To evaluate the efficacy of methylene blue loaded with silver nanoparticles (MB@AgNP-PDT) and quartz nanoparticles (MB@QP-PDT) activated by PDT as root canal disinfectants.
  • To compare their effects on Enterococcus faecalis survival, smear layer removal, and fiber post extrusion bond strength (EBS) against conventional disinfectants.

Main Methods:

  • Root canals of 100 mandibular premolars were treated and disinfected with four groups: NaOCl+EDTA, MB-PDT, MB@QP-PDT, and MB@AgNP-PDT.
  • Scanning Electron Microscopy (SEM) assessed smear layer removal.
  • Bacterial survival rates of Enterococcus faecalis were quantified.
  • Glass fiber posts were cemented, followed by artificial aging, and extrusion bond strength was measured.

Main Results:

  • MB@AgNP-PDT demonstrated the lowest Enterococcus faecalis survival rate (0.30 ± 0.04 CFU/mL) and the highest extrusion bond strength.
  • The MB@AgNP-PDT group also showed the most effective smear layer removal, particularly in the coronal third.
  • Conventional NaOCl+EDTA and MB-PDT groups exhibited higher bacterial survival and/or lower bond strength and smear layer removal.

Conclusions:

  • Silver nanoparticles serve as effective nano-carriers, significantly enhancing methylene blue's photodynamic therapy efficacy.
  • MB@AgNP-PDT offers superior antimicrobial activity, improved smear layer removal, and enhanced fiber post bond strength in root canal disinfection.
  • This nanoparticle-enhanced PDT approach presents a promising alternative for improved endodontic treatment outcomes.