Relevance of Topographic Parameters on the Adhesion and Proliferation of Human Gingival Fibroblasts and Oral Bacterial Strains.
Miguel Ángel Pacha-OlivenzaRicardo TejeroMaría Coronada Fernández-CalderónEduardo AnituaMaría TroyaM Luisa González-MartínPublished in: BioMed research international (2019)
Dental implantology allows replacement of failing teeth providing the patient with a general improvement of health. Unfortunately not all reconstructions succeed, as a consequence of the development of infections of bacterial origin on the implant surface. Surface topography is known to modulate a differential response to bacterial and mammalian cells but topographical measurements are often limited to vertical parameters. In this work we have extended the topographical measurements also to lateral and hybrid parameters of the five most representative implant and prosthetic component surfaces and correlated the results with bacterial and mammalian cell adhesion and proliferation outcomes. Primary human oral gingival fibroblast (gum cells) and the bacterial strains: Streptococcus mutans, Streptococcus sanguinis and Aggregatibacter actinomycetemcomitans, implicated in infectious processes in the oral/implant environment were employed in the presence or absence of human saliva. The results confirm that even though not all the measured surface is available for bacteria to adhere, the overall race for the surface between cells and bacteria is more favourable to the smoother surfaces (nitrided, as machined or lightly acid etched) than to the rougher ones (strong acid etched or sandblasted/acid etched).
Keyphrases
- biofilm formation
- endothelial cells
- induced apoptosis
- escherichia coli
- cell adhesion
- candida albicans
- signaling pathway
- pluripotent stem cells
- induced pluripotent stem cells
- healthcare
- public health
- mental health
- staphylococcus aureus
- type diabetes
- risk assessment
- minimally invasive
- skeletal muscle
- magnetic resonance imaging
- computed tomography
- metabolic syndrome
- weight loss
- contrast enhanced