Open Access
Open access
Journal of Functional Biomaterials, volume 14, issue 11, pages 550

Using Functionalized Micron-Sized Glass Fibres for the Synergistic Effect of Glass Ionomer on Luting Material

Hanan AlSunbul 1
Aftab A. Khan 2
Yasser M. Alqahtani 3
Saeed Awod Bin Hassan 4
Waleed Asiri 5
Selma Saadaldin 6
Rasha Alharthi 7
Alhanoof Aldegheishem 7
Publication typeJournal Article
Publication date2023-11-16
scimago Q2
SJR0.722
CiteScore4.6
Impact factor5
ISSN20794983
PubMed ID:  37998119
Biomaterials
Biomedical Engineering
Abstract

This laboratory experiment was conducted with the objective of augmenting the mechanical properties of glass ionomer cement (GIC) via altering the composition of GIC luting powder through the introduction of micron-sized silanized glass fibres (GFs). Experimental GICs were prepared through the addition of two concentrations of GFs (0.5% and 1.0% by weight) to the powder of commercially available GIC luting materials. The effect of GF in set GIC was internally evaluated using micro-CT while the mechanical attributes such as nano hardness (nH), elastic modulus (EM), compressive strength (CS), and diametral tensile strength (DTS) were gauged. Additionally, the physical properties such as water solubility and sorption, contact angle (CA), and film thickness were evaluated. Reinforced Ketac Cem Radiopaque (KCR) GIC with 0.5 wt.% GF achieved improved nH, EM, CS, and DTS without affecting the film thickness, CA or internal porosity of the set GIC cement. In contrast, both GF-GIC formulations of Medicem (MC) GIC showed the detrimental effect of the GF incorporation. Reinforcing KCR GIC with 0.5 wt.% silanized GFs could improve the physical and mechanical attributes of luting material. Silanized GF, with optimal concentration within the GIC powder, can be used as a functional additive in KCR GIC with promising results.

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