Vollständiger Abstract
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<b>Background:</b> CAD/CAM dental ceramics are widely used for indirect restorations because of their favorable esthetic properties, biocompatibility, and mechanical performance. However, long-term exposure to thermal fluctuations, moisture, and cyclic loading may compromise their structural integrity. This systematic review and meta-analysis evaluated the effect of artificial aging protocols on the mechanical properties of CAD/CAM dental ceramics. <b>Methods:</b> A systematic search was conducted in PubMed, Embase, Scopus, Web of Science, LILACS, Google Scholar, and ProQuest from inception to June 2026. In vitro studies evaluating CAD/CAM ceramics subjected to thermocycling and/or artificial aging protocols were included. The primary outcomes were flexural strength and fracture resistance. Random-effects meta-analyses were performed using standardized mean differences (SMDs) or pooled means with 95% confidence intervals (CIs). Subgroup analyses were conducted according to ceramic category, and sensitivity analyses were performed using a leave-one-out approach. <b>Results:</b> Five studies comprising 16 independent comparisons were included in the flexural strength meta-analysis, while five studies contributed 11 comparisons to the fracture resistance analysis. Artificial aging protocols significantly reduced the flexural strength of CAD/CAM ceramics (SMD = -1.68; 95% CI: -2.28 to -1.08; <i>p</i> < 0.00001). The greatest reduction was observed in zirconia-based ceramics (SMD = -3.31), followed by hybrid/PICN ceramics (SMD = -1.37) and lithium disilicate/lithium silicate ceramics (SMD = -1.25). Feldspathic and glass-based ceramics showed no significant reduction. The pooled fracture resistance after aging was 1312.85 N (95% CI: 1131.59-1494.10 N), indicating that most CAD/CAM ceramics maintained clinically relevant fracture resistance despite aging. <b>Conclusions:</b> Artificial aging protocols adversely affect the flexural strength of CAD/CAM dental ceramics, particularly zirconia-based materials. Nevertheless, fracture resistance generally remains within clinically acceptable ranges. Material composition plays a critical role in determining susceptibility to aging-related degradation, highlighting the importance of ceramic selection for long-term restorative performance.
Abstract: PubMed · Datensatz
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- 2000-01-01
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- 0849-6757
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(2000). 10.3390/polym8030084. CrossRef Listing of Deleted DOIs. https://doi.org/10.3390/dj14080513