4.6 Article

Optimization of Titanium Dental Mesh Surfaces for Biological Sealing and Prevention of Bacterial Colonization

期刊

MATERIALS
卷 15, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/ma15072651

关键词

dental meshes; titanium; sealing; bacteria; roughness; wettability

资金

  1. Spanish Government
  2. Ministry of Science and Innovation of Spain [RTI2018-098075-B-C21, RTI2018-098075-B-C22]
  3. (European Regional Development Fund (ERDF)-A Way to Build Europe)
  4. Generalitat de Catalunya [2017SGR-1165, 2017SGR708]

向作者/读者索取更多资源

Titanium dental meshes have a wide application in regenerating bone tissue. This study aimed to optimize the roughness of the meshes to prevent bacterial colonization while maintaining a good biological seal. The results showed that sandblasting with alumina particles improved the behavior of the meshes with fibroblasts and reduced bacterial colonies. This treatment could be a promising surface treatment for dental meshes.
Titanium dental meshes have a wide application in order to ensure the retention of calcium phosphate-based biomaterials to regenerate bone tissue. These meshes are temporary and must grow a soft tissue to prevent bacterial colonization and provide stability. In this work, we aimed to optimize the roughness of the meshes to obtain a good biological seal while maintaining a behavior that did not favor bacterial colonization. To this end, six types of surfaces were studied: machined as a control, polished, sandblasted with three different alumina sizes and sintered. The roughness, contact angles and biological behavior of the samples using fibroblast cultures at 7, 24 and 72 h were determined as well as cytotoxicity studies. Cultures of two very common bacterial strains in the oral cavity were also carried out: Streptococcus sanguinis and Lactobacillus salivarius. The results showed that the samples treated with alumina particles by sandblasting at 200 micrometers were the ones that performed best with fibroblasts and also with the number of bacterial colonies in both strains. According to the results, we see in this treatment a candidate for the surface treatment of dental meshes with an excellent performance.

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