Influence of Eugenol and Its Novel Methacrylated Derivative on the Polymerization Degree of Resin-Based Composites

Author:

Alrahlah Ali12ORCID,Al-Odayni Abdel-Basit2,Saeed Waseem Sharaf2ORCID,Abduh Naaser A. Y.3,Khan Rawaiz2,Alshabib Abdulrahman12,Almajhdi Faisal Fahad N.2,Alodeni Riad M.4,De Vera Merry Angelyn Tan5

Affiliation:

1. Restorative Dental Sciences Department, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia

2. Engineer Abdullah Bugshan Research Chair for Dental and Oral Rehabilitation, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia

3. Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

4. Division of Biochemistry, Chemistry Department, Faculty of Science, Ibb University, Ibb P. O. Box 70270, Yemen

5. Research Center, College of Dentistry, King Saud University, Riyadh 11451, Saudi Arabia

Abstract

The aim of this work was to assess the limiting rate of eugenol (Eg) and eugenyl-glycidyl methacrylate (EgGMA) at which the ideal degree of conversion (DC) of resin composites is achieved. For this, two series of experimental composites, containing, besides reinforcing silica and a photo-initiator system, either EgGMA or Eg molecules at 0–6.8 wt% per resin matrix, principally consisting of urethane dimethacrylate (50 wt% per composite), were prepared and denoted as UGx and UEx, where x refers to the EgGMA or Eg wt% in the composite, respectively. Disc-shaped specimens (5 × 1 mm) were fabricated, photocured for 60 s, and analyzed for their Fourier transform infrared spectra before and after curing. The results revealed concentration-dependent DC, increased from 56.70% (control; UG0 = UE0) to 63.87% and 65.06% for UG3.4 and UE0.4, respectively, then dramatically decreased with the concentration increase. The insufficiency in DC due to EgGMA and Eg incorporation, i.e., DC below the suggested clinical limit (>55%), was observed beyond UG3.4 and UE0.8. The mechanism behind such inhibition is still not fully determined; however, radicals generated by Eg may drive its free radical polymerization inhibitory activity, while the steric hindrance and reactivity of EgGMA express its traced effect at high percentages. Therefore, while Eg is a severe inhibitor for radical polymerization, EgGMA is safer and can be used to benefit resin-based composites when used at a low percentage per resin.

Funder

Research & Innovation, Ministry of Education in Saudi Arabia

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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