| _version_ | 1866901058055307264 |
|---|---|
| author | Dr. Emily Carter |
| author_facet | Dr. Emily Carter |
| contents | This study investigates the interfacial bonding characteristics between glass ionomer cement (GIC) and composite resin restorations. The quality of the interface directly affects restoration durability, marginal adaptation, and resistance to microleakage. Factors influencing bond strength, including material composition, adhesive systems, surface conditioning, and curing protocols, are critically evaluated. Laboratory and clinical studies indicate that resin-modified GIC provides superior interfacial compatibility with composite resins compared to conventional GIC due to its hybrid chemical and polymeric structure. Surface treatment, such as mechanical roughening and chemical conditioning, significantly improves micromechanical interlocking. Additionally, appropriate adhesive selection and curing strategies further enhance interfacial adhesion. This review synthesizes current evidence to provide clinical recommendations for optimizing GIC–composite interfaces, aiming to improve restoration longevity, reduce failure rates, and ensure predictable, esthetic outcomes in restorative dentistry. |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19427220 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Interfacial Bonding Characteristics of Glass Ionomer Cement and Composite Resin Restorations Dr. Emily Carter Interfacial Bonding Resin Restorations This study investigates the interfacial bonding characteristics between glass ionomer cement (GIC) and composite resin restorations. The quality of the interface directly affects restoration durability, marginal adaptation, and resistance to microleakage. Factors influencing bond strength, including material composition, adhesive systems, surface conditioning, and curing protocols, are critically evaluated. Laboratory and clinical studies indicate that resin-modified GIC provides superior interfacial compatibility with composite resins compared to conventional GIC due to its hybrid chemical and polymeric structure. Surface treatment, such as mechanical roughening and chemical conditioning, significantly improves micromechanical interlocking. Additionally, appropriate adhesive selection and curing strategies further enhance interfacial adhesion. This review synthesizes current evidence to provide clinical recommendations for optimizing GIC–composite interfaces, aiming to improve restoration longevity, reduce failure rates, and ensure predictable, esthetic outcomes in restorative dentistry. |
| title | Interfacial Bonding Characteristics of Glass Ionomer Cement and Composite Resin Restorations |
| topic | Interfacial Bonding Resin Restorations |
| url | https://doi.org/10.5281/zenodo.19427220 |