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Effects of ionizing radiation on surface properties of current restorative dental materials. | LitMetric

AI Article Synopsis

  • The study aimed to analyze how radiotherapy affects different dental materials, including two types of resin composites and two types of glass ionomer cements.
  • Various properties like surface wettability, microhardness, and micromorphology were measured before and after exposing the materials to ionizing radiation (60 Gy).
  • Results showed that radiation decreased the surface wettability and microhardness of the conventional glass ionomer cement but did not significantly affect the resin composites or the resin-modified glass ionomer cement.

Article Abstract

To investigate the impact of radiotherapy on surface properties of restorative dental materials. A conventional resin composite-CRC (Aura Enamel), a bulk-fill resin composite-BFRC (Aura Bulk-fill), a conventional glass ionomer cement-CGIC (Riva self cure), and a resin-modified glass ionomer cement-RMGIC (Riva light cure) were tested. Forty disc-shaped samples from each material (8 mm diameter × 2 mm thickness) (n = 10) were produced according to manufacturer directions and then stored in water distilled for 24 h. Surface wettability (water contact angle), Vickers microhardness, and micromorphology through scanning electron microscopy (SEM) before and after exposition to ionizing radiation (60 Gy) were obtained. The data were statistically evaluated using the two-way ANOVA and Tukey posthoc test (p < 0.05). Baseline and post-radiation values of contact angles were statistically similar for CRC, BFRC, and RMGIC, whilst post-radiation values of contact angles were statistically lower than baseline ones for CGIC. Exposition to ionizing radiation statistically increased the microhardness of CRC, and statistically decreased the microhardness of CGIC. The surface micromorphology of all materials was changed post-radiation. Exposure to ionizing radiation negatively affected the conventional glass ionomer tested, while did not alter or improved surface properties testing of the resin composites and the resin-modified glass ionomer cement tested.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197703PMC
http://dx.doi.org/10.1007/s10856-021-06543-5DOI Listing

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