Nazlı Zeynep Kuzu, Cengiz Sevil, Erkut Kahramanoğlu, Dilek Türkaydın, Ayşe Aslı Şenol, Bilge Tarçın, Pınar Yılmaz Atalı
Although all materials demonstrated clinically acceptable marginal adaptation, the additively manufactured restorations exhibited significantly narrower marginal gaps compared to the milled counterparts, suggesting a potential advantage for endocrown longevity.
AIM: The aim of this in vitro study was to evaluate the effect of materials on the marginal adaptation of endocrowns.
MATERIALS AND METHODS: Ninety-six extracted mandibular molars were prepared and divided into three groups (n=32) based on the restorative materials used. Endocrowns were fabricated using an additive manufacturing technique with a 3D-printed ceramic-filled hybrid resin (VarseoSmile® TriniQ®, [VST], BEGO) and a subtractive manufacturing technique using either glass-ceramic (Initial LiSi Block, [LDS], GC) or nano-ceramic hybrid blocks (Grandio Blocs, [GB], Voco). The marginal gap (MG) was evaluated using the digital replica technique. Dimensional discrepancies were evaluated by digitally aligning the master and silicone replica scans using the best-fit algorithm of the analysis software (OraCheck, Dentsply Sirona). The measurements were repeated three times, and the values were averaged. Data were statistically evaluated using two-way analysis of variance (ANOVA) and the Bonferroni test, with a significance level of p<0.05.
RESULTS: Among all groups, VST exhibited the lowest MG values, differing significantly from the two milling groups (p<0.001), whereas no significant difference was observed between GB and LDS (p>0.05).
CONCLUSION: Although all materials demonstrated clinically acceptable marginal adaptation, the additively manufactured restorations exhibited significantly narrower marginal gaps compared to the milled counterparts, suggesting a potential advantage for endocrown longevity.