| Literature DB >> 34754615 |
Milad Hammal1, Zdeněk Chlup2, Tomáš Ingr3, Ján Staněk1, Radek Mounajjed1,4.
Abstract
STATEMENT OF PROBLEM: It has been shown that selective etching improves the bond strength of some self-adhesive resin cements to enamel. The same has yet to be determined with dentin pre-treatment.Entities:
Keywords: Adhesion; Bond strength; Dentin surface pre-treatment; Lithium disilicate; Self-adhesive resin cements
Year: 2021 PMID: 34754615 PMCID: PMC8555495 DOI: 10.7717/peerj.11736
Source DB: PubMed Journal: PeerJ ISSN: 2167-8359 Impact factor: 2.984
Shows the composition, batch number, and manufacturer of materials used in this study.
| Material | Manufacturer Lot number | Composition | Application |
|---|---|---|---|
| Relyx U200 | (3M ESPE, Neuss, Germany) 4957491 | Base paste: glass powder treated with silane, 2- propenoic acid, 2-methyl 1,10- (1-[hydroxymetil]-1,2- ethanodlyl) ester dimethacrylate, triethylene glycol dimethacrylate (TEGDMA), silica treated silane, glass fiber, sodium persulfate and per-3,5,5-trimethyl hexanoate t-butyl; catalyst paste: glass powder treated with silane, substitute dimethacrylate, silica-treated silane, sodium ptoluenesulfonate, 1-benzyl-5- phenyl-acid barium, calcium, 1,12-dodecane dimethacrylate, calcium hydroxide, and titanium dioxide | Apply the cement after mixing on the ceramic surface; seat the restoration gently onto the preparation allowing the cement to flow from all sides, then press. All samples were put under a static load, waiting for 60 s; during this time we clean the excess cement, then light cure for 20 s from each side (60 s in total) |
| Maxcem Elite Chroma | (Kerr, Scafati, Italy) | HEMA, GDM, UDMA, 1,1,3,3- tetramethylbutyl hydroperoxide TEGDMA, fluoroaluminosilicate glass, GPDM, barium glass filler, fumed silica (69 wt %)) | Apply the cement after mixing on the ceramic surface; seat the restoration gently onto the preparation allowing the cement to flow from all sides, then press. All samples were put under a static load, waiting for 60 s; during this time we clean the excess cement, then light cure for 20 s from each side (60 s in total) |
| Nexus NX3 dual-cure | (Kerr, Scafati, Italy) | Uncured methacrylate ester monomers, HEMA, PTU, CHPO, free tertiary amines and benzoyl peroxide, inert mineral fillers, titanium dioxide, radiopaque agent, and pigments | Apply the cement after mixing on the ceramic surface; seat the restoration gently onto the preparation allowing the cement to flow from all sides, then press. All samples were put under a static load, waiting for 60 s; during this time we clean the excess cement, then light cure for 20 s from each side (60 s in total) |
Mean, Median TBS with (SD) for each luting agent after different dentin surface treatments.
Upper letters indicate significant differences between the different groups (p < 0.05).
| Group | N | Mean (MPa) | Median(MPa) | |
|---|---|---|---|---|
| NX3 | 13 | 9.66 ±4.53a,b | 10.88 | |
| RLX-no | 13 | 5.40 ±2.83a,c | 5.62 | |
| RLX-PAA | 13 | 5.73 ±3.01e | 6.47 | |
| RLX-HPO | 13 | 7.87 ±4.48f | 7.20 | |
| MAX-no | 13 | 5.36 ±3.25f | 6.28 | |
| MAX-PAA | 13 | 1.94 ±1.35b−g | 1.98 | |
| MAX-HPO | 13 | 7.58 ±4.81g | 8.45 |
Figure 1SEM observation (x6000 magnification).
(A) Maxcem no-treatment, (B) Relyx no-treatment. SEM observations demonstrate no resin infiltration into dentin tubules when both self-adhesive cements were applied following manufacturer’s instructions.
Figure 2SEM observation (x6000 magnification).
(A) MAX-PAA, (B) RLX-PAA. MAX-PAA demonstrated no-infiltration into dentinal tubules (A), whilst RLX-PAA presented a few short resin tag formation (B).
Figure 3SEM observation (x6000 magnification).
(A) Maxcem H3PO4, (B) Relyx H3PO4, (C) NX3. H3PO4-conditioned dentin interfaces showed well defined resin infiltration into dentin’s tubules and visible resin tags for all tested cements.
Percentage of the failure mode: A- adhesive, M- mixed, C- cohesive.
| Relyx U200 | Maxcem Elite Chroma | Nexus NX3 dual-cure | |
|---|---|---|---|
| No pre-treatment | 100% A | 100% A | 53.84% A, 46.15% M |
| H3PO4 | 69.24% A, 30.76% M | 61.53% A, 38.46%M | |
| PAA | 84.61% A, 15.38% M | 100% A |