Microscopic Characterization of Bioactivate Implant Surfaces: Increasing Wettability Using Salts and Dry Technology.

bioactivate implant surfaces contact angle exsiccation layer hydrophilicity nanostructures surface chemistry surface energy ultra-hydrophilic wettability

Journal

Materials (Basel, Switzerland)
ISSN: 1996-1944
Titre abrégé: Materials (Basel)
Pays: Switzerland
ID NLM: 101555929

Informations de publication

Date de publication:
17 May 2021
Historique:
received: 19 04 2021
revised: 11 05 2021
accepted: 12 05 2021
entrez: 2 6 2021
pubmed: 3 6 2021
medline: 3 6 2021
Statut: epublish

Résumé

The surface topography of dental implants plays an important role in cell-surface interaction promoting cell adhesion, proliferation and differentiation influencing osseointegration. A hydrophilic implant leads to the absorption of water molecules and subsequently promotes the adhesion of cells to the implant binding protein. Dried salts on the implant surfaces allow one to store the implant surfaces in a dry environment while preserving their hydrophilic characteristics. This process has been identified as "dry technology". The aim of the present study is to describe from a micrometric and nanometric point of view the characteristics of this new bioactivated surface obtained using salts dried on the surface. Topographic analysis, energy-dispersive X-ray spectroscopy, and contact angle characterization were performed on the samples of a sandblasted and dual acid-etched surface (ABT), a nanosurface (Nano) deriving from the former but with the adding of salts air dried and a nanosurface with salts dissolved with distilled water (Nano H

Identifiants

pubmed: 34067747
pii: ma14102608
doi: 10.3390/ma14102608
pmc: PMC8156028
pii:
doi:

Types de publication

Journal Article

Langues

eng

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Auteurs

Francesco Gianfreda (F)

Department of Industrial Engineering, University of Rome "Tor Vergata", 00133 Rome, Italy.

Donato Antonacci (D)

Independent Researcher, 70121 Bari, Italy.

Carlo Raffone (C)

Independent Researcher, 00198 Rome, Italy.

Maurizio Muzzi (M)

Department of Science, University Roma Tre, Viale G. Marconi, 446, 00146 Rome, Italy.

Valeria Pistilli (V)

Independent Researcher, 00198 Rome, Italy.

Patrizio Bollero (P)

Department of System Medicine, University of Rome "Tor Vergata", 00133 Rome, Italy.

Classifications MeSH