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Published on: March 7, 2014
Cyclic mechanical loading promotes bacterial penetration along composite restoration marginal gaps
D Khvostenko1, S Salehi2, S E Naleway1
1Materials Science, School of Mechanical, Industrial, and Manufacturing Engineering, Oregon State University, Corvallis, OR, USA.
Cyclic loading significantly increases bacterial penetration into small gaps at the dentin-composite interface, potentially accelerating secondary caries formation. This study highlights the impact of mechanical stress on restorative material integrity and bacterial invasion.
Area of Science:
- Dental Materials Science
- Microbiology
- Biomechanical Engineering
Background:
- Secondary caries is a primary cause for replacing composite restorations.
- Bacterial infiltration at the dentin-restoration interface is a key factor in secondary caries development.
Purpose of the Study:
- To evaluate the combined effects of cyclic loading and bacterial exposure on bacterial penetration into marginal gaps.
- To assess bacterial invasion at the dentin-resin composite interface using a novel bioreactor system.
Main Methods:
- Human molars with standardized cavity preparations received resin composite restorations with introduced marginal gaps (15-30 μm or ~300 μm).
- Samples with Streptococcus mutans biofilms were subjected to 2 weeks of testing in a novel bioreactor, with and without cyclic loading.
- Bacterial penetration depth was analyzed after cross-sectioning the restored samples.
Main Results:
- Bacteria readily penetrated large gaps regardless of loading conditions.
- Cyclic loading significantly enhanced bacterial penetration in small marginal gaps, reaching 100% of the gap depth.
- Non-loaded samples with small gaps showed an average bacterial penetration of only 67%.
Conclusions:
- A novel bioreactor system effectively simulates combined mechanical loading and bacterial challenges on dental restorations.
- Cyclic loading exacerbates bacterial penetration into narrow marginal gaps, suggesting a mechanism for accelerated secondary caries.
- Findings underscore the importance of mechanical factors in the longevity of dental restorations.
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