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Electrospun PVP Fibers as Carriers of Ca 2+ Ions to Improve the Osteoinductivity of Titanium-Based Dental Implants.

Authors :
Roknić, Janina
Despotović, Ines
Katić, Jozefina
Petrović, Željka
Source :
Molecules; Sep2024, Vol. 29 Issue 17, p4181, 18p
Publication Year :
2024

Abstract

Although titanium and its alloys are widely used as dental implants, they cannot induce the formation of new bone around the implant, which is a basis for the functional integrity and long-term stability of implants. This study focused on the functionalization of the titanium/titanium oxide surface as the gold standard for dental implants, with electrospun composite fibers consisting of polyvinylpyrrolidone and Ca<superscript>2+</superscript> ions. Polymer fibers as carriers of Ca<superscript>2+</superscript> ions should gradually dissolve, releasing Ca<superscript>2+</superscript> ions into the environment of the implant when it is immersed in a model electrolyte of artificial saliva. Scanning electron microscopy, energy dispersive X-ray spectroscopy and attenuated total reflectance Fourier transform infrared spectroscopy confirmed the successful formation of a porous network of composite fibers on the titanium/titanium oxide surface. The mechanism of the formation of the composite fibers was investigated in detail by quantum chemical calculations at the density functional theory level based on the simulation of possible molecular interactions between Ca<superscript>2+</superscript> ions, polymer fibers and titanium substrate. During the 7-day immersion of the functionalized titanium in artificial saliva, the processes on the titanium/titanium oxide/composite fibers/artificial saliva interface were monitored by electrochemical impedance spectroscopy. It can be concluded from all the results that the composite fibers formed on titanium have application potential for the development of osteoinductive and thus more biocompatible dental implants. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
29
Issue :
17
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
179648185
Full Text :
https://doi.org/10.3390/molecules29174181