Zirconia-reinforced lithium silicate (ZLS) mechanical and biological properties: A literature review

J Dent. 2021 Jun:109:103661. doi: 10.1016/j.jdent.2021.103661. Epub 2021 Apr 14.

Abstract

Objectives: This paper aimed to provide a literature review of the mechanical and biological properties of zirconia-reinforced lithium silicate glass-ceramics (ZLS) in Computer-aided design / Computer-aided manufacturing (CAD/CAM) systems.

Data/sources: An extensive search of the literature for papers related to ZLS was made on the databases of PubMed/Medline, Scopus, Embase, Google Scholar, Dynamed, and Open Grey. The papers were selected by 3 independent calibrated reviewers.

Study selection: The search strategy produced 937 records. After the removal of duplicates and the exclusion of papers that did not meet the inclusion criteria, 71 papers were included.

Conclusions: After reviewing the included records, it was found that two types of ZLS (Vita Suprinity PC; Vita Zahnfabrik and Celtra Duo; Dentsply Sirona) are nowadays available on the market for CAD/CAM systems, similar in their chemical composition, microstructure, and biological-mechanical properties. ZLS is reported to be a biocompatible material, whose fracture resistance can withstand physiological chewing loads. The firing process influences the improvements of strength and fatigue failure load, with a volumetric shrinkage. To date, ZLS can be considered a viable alternative to other glass-ceramics for fixed single restorations.

Clinical significance: . As to biocompatibility and mechanical properties of ZLS, data are still scarce, often controversial and limited to short-term observational periods. These promising ceramics require further in vitro/in vivo studies to accurately define mechanical and biological properties, mainly in the long-term performance of restorations produced with such materials.

Keywords: CAD-CAM; Ceramics; Dental materials; ZLS; Zirconia; Zirconia-reinforced lithium silicate.

Publication types

  • Review

MeSH terms

  • Ceramics*
  • Computer-Aided Design
  • Dental Porcelain
  • Dental Stress Analysis
  • Lithium*
  • Materials Testing
  • Silicates
  • Surface Properties
  • Zirconium

Substances

  • Silicates
  • Dental Porcelain
  • Lithium
  • Zirconium
  • zirconium oxide