Title of article :
Morphology and Differentiation of MG63 Osteoblast Cells on Saliva Contaminated Implant Surfaces
Author/Authors :
Shams, Neda Department of Periodontics - Tehran Dental Branch, Islamic Azad University, Tehran , Ghasemi, Mahmood Department of Periodontics and Implant Research Center - Tehran Dental Branch, Islamic Azad University, Tehran , Sadatmansouri, Saeed Department of Periodontics and Implant Research Center - Tehran Dental Branch, Islamic Azad University, Tehran , Bonakdar, Shahin Department of National Cell - Pasteur Institute of Iran, Tehran
Pages :
6
From page :
424
To page :
429
Abstract :
Objectives: Osteoblasts are the most important cells in the osseointegration process. De- spite years of study on dental Implants, limited studies have discussed the effect of saliva on the adhesion process of osteoblasts to implant surfaces. The aim of this in vitro study was to evaluate the effect of saliva on morphology and differentiation of osteoblasts at- tached to implant surfaces. Materials and Methods: Twelve Axiom dental implants were divided into two groups. Implants of the case group were placed in containers, containing saliva, for 40 minutes. Then, all the implants were separately stored in a medium containing MG63 human osteo- blasts for a week. Cell morphology and differentiation were assessed using a scanning electron microscope and their alkaline phosphatase (ALP) activity was determined. The t- test was used to compare the two groups. Results: Scanning electron microscopic observation of osteoblasts revealed round or square cells with fewer and shorter cellular processes in saliva contaminated samples, whereas elongated, fusiform and well-defined cell processes were seen in the control group. ALP level was significantly lower in case compared to control group (P<0.05). Conclusion: Saliva contamination alters osteoblast morphology and differentiation and may subsequently interfere with successful osseointegration. Thus, saliva contamination of bone and implant must be prevented or minimized
Keywords :
Osseointegration , Saliva , Dental implants , Osteoblasts , Alkaline phosphatase
Journal title :
Astroparticle Physics
Serial Year :
2015
Record number :
2426008
Link To Document :
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