Title :
Effects of hydroxyapatite nanoparticle on remineralization of artificial root caries in vitro
Author :
Jing, Junjun ; Huang, Shengbin ; He, Bin ; Hao, Yuqing
Author_Institution :
State Key Lab. of Oral Diseases, Sichuan Univ., Chengdu, China
Abstract :
An in vitro pH cycling model was used to evaluate the effect of nano-hydroxyapatite on the remineralization of artificial root caries. Sound human teeth fragments obtained from the cervical portion of the root were immersed in a demineralization solution for 96 h at 37°C to induce artificial root caries lesions. The demineralized samples were pH-cycled through treatment solutions, acidic buffer and neutral buffer for 8 days at 6 cycles per day. The samples were subsequently evaluated using a microhardness tester and scanning electron microscope (SEM). Nano-hydroxyapatite (nano-HA) and fluoride significantly increased the microhardness of the lesions (p < 0.05) when compared to a control group. SEM revealed nano-HA adhered to the dentin surface densely and some of them even covered the openings of dentin tubules. We concluded that nano-HA positively affects the demineralization and/or remineralization processes of artificial root caries lesions and may be a promising agent for non-invasive root caries therapy.
Keywords :
bioceramics; dentistry; diseases; microhardness; nanobiotechnology; nanoparticles; pH; physiological models; Ca10(PO4)6(OH)2; SEM; artificial root caries; demineralization; dentin; human teeth fragments; hydroxyapatite nanoparticle; in vitro pH cycling model; microhardness; nanohydroxyapatite; remineralization; root caries therapy; scanning electron microscope; temperature 37 degC; time 8 day; time 96 h; Crystallization; Epoxy resins; Humans; In vitro; Kirchhoff´s Law; Lesions; Medical treatment; Scanning electron microscopy; Teeth; Testing;
Conference_Titel :
Nanoelectronics Conference (INEC), 2010 3rd International
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-3543-2
Electronic_ISBN :
978-1-4244-3544-9
DOI :
10.1109/INEC.2010.5425200