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May 29, 2026Journal of Esthetic and Restorative Dentistry0 citationsOpen Access

Effects of Acidic Media on the Mechanical and Optical Properties of Digitally Designed Restorative Materials

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IPIsmini PapoulidouPMPetros MourouzisABA Baldi

Key Points

  • The aim is to assess how acidic environments impact the optical and mechanical properties of various restorative materials.
  • Materials tested included lithium disilicate, polymer-infiltrated ceramic network, nanoceramic resin block, and 3D-printed composite.
  • Specimens were immersed in hydrochloric acid, Coca-Cola, and distilled water as control.
  • Optical behavior, surface roughness, and hardness were measured before and after immersion using R (v4.5) for data analysis.
  • Lithium disilicate exhibited the highest resistance to acidic conditions, showing minimal changes in optical and mechanical properties.
  • The polymer-infiltrated ceramic network and other materials displayed intermediate stability under acidic exposure.
  • The 3D-printed resin was the least stable, with gastric acid causing more degradation compared to Coca-Cola.

Abstract

OBJECTIVE: This investigation assessed how acidic environments affect the optical behavior, surface roughness, and hardness of a newly developed 3D-printed permanent resin compared with commonly used computer-aided design/computer-aided manufacturing restorative blocks. MATERIALS AND METHODS: The materials tested were lithium disilicate, a polymer-infiltrated ceramic network, a nanoceramic resin block, and a 3D-printed composite. Specimens were stored in hydrochloric acid and Coca-Cola, with distilled water as the control medium. Changes in color, translucency, roughness, and hardness were measured before and after immersion. Data were analyzed using R (v4.5) with a significance level of p < 0.05. RESULTS: Lithium disilicate showed the greatest resistance to acidic conditions in both optical and mechanical properties. The polymer-infiltrated ceramic network and filler press and monomer infiltration materials showed intermediate stability under acidic challenges across all measured parameters. The 3D-printed resin was the least stable material. Gastric acid caused more pronounced deterioration than Coca-Cola, while water produced minimal changes. CONCLUSIONS: Acidic exposure negatively affected the performance of all tested restorative materials. Lithium disilicate remained largely unaffected, whereas the 3D-printed permanent resin showed significant vulnerability. These findings emphasize that material choice is critical for patients prone to erosive challenges such as reflux or frequent soft drink intake.

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Cite This Study

Papoulidou et al. (2026) studied this question.

synapsesocial.com/papers/6a192d7efab5b468c4416667https://doi.org/10.1111/jerd.70197
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