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Superhydrophilic Nanotextured Surfaces for Dental Implants: Influence of Early Saliva Contamination and Wet Storage

Ferreria Kunrath, Marcel, 1988 (author)
Gothenburg University,Göteborgs universitet,Institutionen för kliniska vetenskaper, Avdelningen för biomaterialvetenskap,Institute of Clinical Sciences, Department of Biomaterials
Correia, A. (author)
Teixeira, E. R. (author)
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Hubler, R. (author)
Dahlin, Christer, 1959 (author)
Gothenburg University,Göteborgs universitet,Institutionen för kliniska vetenskaper, Avdelningen för biomaterialvetenskap,Institute of Clinical Sciences, Department of Biomaterials
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 (creator_code:org_t)
2022-07-28
2022
English.
In: Nanomaterials. - : MDPI AG. - 2079-4991. ; 12:15
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Hydrophilic and nanotextured surfaces for dental implants have been reported as relevant properties for early osseointegration. However, these surface characteristics are quite sensitive to oral interactions. Therefore, this pilot study aimed to investigate the superficial alterations caused on hydrophilic nanotubular surfaces after early human saliva interaction. Titanium disks were treated using an anodization protocol followed by reactive plasma application in order to achieve nanotopography and hydrophilicity, additionally; surfaces were stored in normal atmospheric oxygen or wet conditioning. Following, samples were interacted with saliva for 10 min and analyzed regarding physical-chemical properties and cellular viability. Saliva interaction did not show any significant influence on morphological characteristics, roughness measurements and chemical composition; however, hydrophilicity was statistically altered compromising this feature when the samples were stored in common air. Cellular viability tested with pre-osteoblasts cell line (MC3T3-E1) reduced significantly at 48 h on the samples without wet storage after saliva contamination. The applied wet-storage methodology appears to be effective in maintaining properties such as hydrophilicity during saliva interaction. In conclusion, saliva contamination might impair important properties of hydrophilic nanotubular surfaces when not stored in wet conditions, suggesting the need of saliva-controlled sites for oral application of hydrophilic surfaces and/or the use of modified-package methods associated with their wet storage.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Odontologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Dentistry (hsv//eng)

Keyword

anodized surfaces
hydrophilicity
saliva
nanotopography
TiO2
nanotubes
dental materials
biomedical implants
commercially pure titanium
tio2 nanotubes
protein-adsorption
bone
osseointegration
hydrophilicity
adhesion
topography
morphology
behavior

Publication and Content Type

ref (subject category)
art (subject category)

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Ferreria Kunrath ...
Correia, A.
Teixeira, E. R.
Hubler, R.
Dahlin, Christer ...
About the subject
MEDICAL AND HEALTH SCIENCES
MEDICAL AND HEAL ...
and Clinical Medicin ...
and Dentistry
Articles in the publication
Nanomaterials
By the university
University of Gothenburg

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