Bond Strength of Reline Materials to 3D-Printed Provisional Crown Resins

Author:

Palavicini Jorge1,Quin Sherrod L.2,Zakkour Wael3,Zakkour Karim4,Manafi Varkiani Safa5,Xu Xiaoming6,Lawson Nathaniel C.7ORCID,Nejat Amir Hossein1

Affiliation:

1. Department of Prosthodontics, Louisiana State University Health Science Center, School of Dentistry, New Orleans, LA 70119, USA

2. Department of Comprehensive Dentistry, Louisiana State University Health Science Center, School of Dentistry, New Orleans, LA 70119, USA

3. Private Practice, Lynchburg, VA 24501, USA

4. Department of General Surgery, Saint George University of Beirut, Beirut 1100-2807, Lebanon

5. Henry M. Goldman School of Dental Medicine, Boston University, Boston, MA 02118, USA

6. Department of Oral and Craniofacial Biology, Louisiana State University Health Science Center, School of Dentistry, New Orleans, LA 70119, USA

7. Division of Dental Materials, University of Alabama at Birmingham School of Dentistry, Birmingham, AL 35233, USA

Abstract

(1) Purpose: The aim of the present study was to compare the bond strength between two 3D-printed resins designed for long-term provisional crowns and three different reline materials. (2) Materials and Methods: Rectangular specimens were prepared from two 3D-printed resins (Envision Tech and NextDent C&B) and a conventional self-cure PMMA. Transparent tubes filled with three different reline materials including composite resin, Bis-acryl, and PMMA were bonded to the 3D-printed specimens (n = 11 per group, total of 6 study groups). Tubes filled with PMMA were bonded to the prepared PMMA specimens which served as the control group (n = 11, control group). The specimens were subjected to a shear bond strength (SBS) test, and mode of failure was recorded using light microscopy. Statistical analysis was performed using a one-way ANOVA and post hoc Tukey’s tests (alpha = 0.05). (3) Results: The highest SBS value was achieved to both 3D-printed materials with the PMMA reline material. The bond to both 3D-printed materials was lower with Bis-acrylic or composite resin relines in comparison to that with PMMA (p-value < 0.05). No significant difference was found between the control PMMA group and either 3D-printed material when relined with PMMA (p-value > 0.05). (4) Conclusion: The tested 3D-printed resins achieved a clinically acceptable bond strength when relined with PMMA.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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