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The effects of different surface contaminators on the shear bond strength of a universal adhesive system to dentin: an experimental study. | LitMetric

AI Article Synopsis

  • The study explored how surface contamination affects the shear bond strength (SBS) of a universal adhesive system (UAS) on dentin in restorative dentistry.
  • One hundred forty-four healthy human teeth were tested against different contaminants including blood, saliva, and chemical agents, while a control group had no contaminants.
  • Results showed that all contaminants, except a caries disclosing agent (CDA), significantly reduced the SBS in both etch-and-rinse (ER) and self-etch (SE) strategies, with ER and SE showing a notable difference only in the group contaminated with ferric sulphate (FS).

Article Abstract

Contamination of dentin surface is one of the common problems in restorative dentistry. The aim was to investigate the effects of different surface contaminators on the dentin shear bond strength (SBS) of universal adhesive system (UAS) applied in etch-and-rinse (ER) and self-etch (SE) strategies. One hundred forty-four maxillary anterior sound human teeth were divided into six groups based on the types of surface contaminators: no surface contaminator (control) and experimental groups contaminated with blood, saliva, aluminium chloride (ALC), ferric sulphate (FS), and caries disclosing agent (CDA). Then, each group was further subdivided into two, based on the application strategy of UAS (ER and SE). After applying the adhesive according to the manufacturer's instructions, and bonding cylindrical composite samples, the SBS was measured. The data were analysed using two-way ANOVA, Tukey's HSD test and test ( < 0.05). The SBS in all contaminated groups, except for CDA, was significantly lower in both ER and SE strategies compared to control group ( < 0.05). A comparison between the application strategies revealed that ER and SE were only significantly different in the FS contaminated group ( < 0.05). All tested contaminators, except CDA, significantly decreased SBS of UAS in both ER and SE strategies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8346715PMC
http://dx.doi.org/10.34172/joddd.2021.014DOI Listing

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