Volumetric changes in root canal sealers in ex vivo and a novel animal model approach

Int Endod J. 2023 Sep;56(9):1108-1117. doi: 10.1111/iej.13940. Epub 2023 Jun 6.

Abstract

Aim: This study aimed to evaluate the volumetric change of root canal sealers through micro-computed tomographic analysis using a novel in vivo model and to compare the results with those obtained using an ex vivo test.

Methodology: Eighteen single-rooted teeth were cut to 5 mm length from the root apex. The root canals were uniformly enlarged and filled with EndoSequence BC Sealer or AH Plus Jet root canal sealers. Samples were stored at 37°C and 95% relative humidity for 24 h and then scanned with a micro-CT device. Twelve samples (n = 6 for each sealer) were implanted in the subcutaneous tissue of Wistar rats, while six samples (n = 3 for each sealer) were immersed in 20 mL of phosphate-buffered saline (PBS) at 37°C at neutral pH. After 7 and 30 days, teeth were removed from subcutaneous tissue or PBS and rescanned. Statistical analysis of volume changes was performed using Shapiro-Wilk's test and independent t-test (p < .05).

Results: AH Plus Jet had smaller volume changes (-2.2 to +0.77%) than EndoSequence BC Sealer (-2.0 to +4.0%) (p < .05), in the two tested models. The volume of the root canal sealers decreased over time (p < .05), in vivo. AH Plus Jet results varied between the in vivo and ex vivo results (p < .05), while EndoSequence BC Sealer presented similar volume losses for both experimental models (p > .05).

Conclusion: EndoSequence BC Sealer lost more volume than AH Plus Jet. The experimental conditions influenced the volumetric change of AH Plus Jet but not the EndoSequence BC Sealer. The ex vivo model should be further explored as a methodological alternative to assess the volumetric changes of root canal sealers without causing harm to animals.

Keywords: X-ray microtomography; animal model; calcium silicate; endodontics; physicochemical properties; root canal filling material.

MeSH terms

  • Animals
  • Dental Pulp Cavity
  • Epoxy Resins
  • Hydrogen-Ion Concentration
  • Materials Testing
  • Rats
  • Rats, Wistar
  • Root Canal Filling Materials*
  • Silicates

Substances

  • Root Canal Filling Materials
  • Epoxy Resins
  • Silicates