03015nab a2200313 a 4500003000900000005001700009008004100026041000800067100001700075700002100092700001800113700001900131700002500150700001900175245017100194246012700365264000900492300001700501520196200518650001202480650001302492650002402505650003302529650002802562773005402590035001502644001000702659040003502666AR-ReUNN20260716163200.0260701s2021 ag |||||||||||||||||eng 0 aeng1 aKheur, Mohit1 aKantharia, Nidhi1 aIakha, Tabrez1 aKheur, Supriya1 aAl-Haj Husain, Nadin1 aÖzcan, Mutlu10aEvaluación de las propiedades mecánicas y de adhesión del cemento de ionómero de vidrio que incorpora partículas de hidroxiapatita de tamaño nanométrico13aEvaluation of mechanical and adhesion properties of glass ionomer cement incorporating Nano-Sized hydroxyapatite particles 1c2021 a12 páginas aGlass ionomer cement is a widely used luting agent for indirect restorations but presents inferior mechanical properties compared to resin cement due to its low elastic modulus. This study evaluated the mechanical and adhesion properties of glass ionomer luting cements reinforced with nano-sized hydroxyapatite particles (HA). The nano-sized HA particles were synthesized using the co-precipitation technique and the resulting precipitate was characterized using X-ray diffraction analysis (XRD), field emission scanning electron (FESEM) and transmission electron microscopy (TEM). HA particles were incorporated into the glass powder (FUJI I, GC) and the luting agent was manipulated in a liquid to powder ratio of 3:1 into 6% by weight after determining the best ratio. The flexural strength of the luting agent and shear bond strength of dentin were analyzed and compared to other luting agents namely, (a) glass ionomer (FUJI I), (b) resin-modified glass ionomer (RelyX Luting Plus) and (c) adhesive resin cement (RelyX U200). Failure types after debonding from dentin were evaluated under SEM. Flexural strength and bond strength data were analyzed using one-way ANOVA and Tukey’s tests (alpha?=?0.001). Addition of 6 w % HA particles in the range of 80–150 nm enhanced the flexural strength (30.97?±?5.9 versus 11.65?±?5.63) and shear bond strength (0.97?±?0.41 versus 0.39?±?0.16) of a conventional glass ionomer luting agent significantly compared to the non-reinforced ones when manipulated at a liquid to powder ratio of 3:1 (P?