کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
6481407 | 1398100 | 2017 | 10 صفحه PDF | دانلود رایگان |
- Carbon fiber composite used to create dental implant framework was investigated.
- Biocompatibility was evaluated by cell count and MTT test.
- Porosity, static and dynamic elastic modulus of carbon fiber samples were analyzed.
- Carbon fiber samples showed optimal biocompatibility and mechanical characteristics.
- Manufacture technique strongly affects the material mechanical characteristics.
ObjectivesThe aim of the present study was to investigate the biocompatibility and mechanical characteristics of dental implant frameworks made of carbon fiber composite.MethodsThe biocompatibility of intact samples and fragments was evaluated by cell count and MTT test according to EN-ISO 10993-5:2009 directions.Destructive and non-destructive mechanical tests were performed in order to evaluate: porosity, static and dynamic elastic modulus of carbon fiber samples. These tests were conducted on different batches of samples manufactured by different dental technicians. The samples were evaluated by optical microscope and by SEM.A compression test was performed to compare complete implant-supported fixed dentures, provided with a metal or carbon fiber framework.ResultsCarbon fiber intact and fragmented samples showed optimal biocompatibility. Manufacture technique strongly influenced the mechanical characteristics of fiber-reinforced composite materials.The implant-supported full-arch fixed denture provided with a carbon fiber framework, showed a yield strength comparable to the implant-supported full-arch fixed denture, provided with a metal framework.SignificanceCarbon fiber-reinforced composites demonstrated optimal biocompatibility and mechanical characteristics. They appear suitable for the fabrication of frameworks for implant-supported full-arch dentures. Great attention must be paid to manufacture technique as it strongly affects the material mechanical characteristics.
Journal: Materials Science and Engineering: C - Volume 70, Part 1, 1 January 2017, Pages 646-655