Journal List > J Korean Acad Periodontol > v.31(2) > 1049223

Kim, Kim, Cho, Chai, Kim, and Choi: Analysis of PDL Fibroblast Change During Mechanical Stimuli in the Rats

Abstract

Periodontal disease is characterized by inflammation and subsequent loss and/or damage to tooth-supporting tissues such as bone, cementum, and periodontal ligament.Periodontal ligament and cementum are the key tissues in the initial process of regeneration following periodontal disease.Therefore, studies on cementoblasts, which form cementum are emphasized.
It is still unclear which cells cementoblast differentiate from.This study was conducted under the hypothesis that PDL fibroblast can differentiate into either cementoblast or osteoblast depending on the conditions of surrounding tissue.Clinically, with excessive traction force of orthodontic appliances or excessive occlusion hypercementosis is observed, and this has been confirmed histologically. Consequently, activation of cementoblast can be expected in rats when mechanical stimuli are given to PDL fibroblast. Therefore, the purpose of this article is to prove that PDL fibroblast differentiates into cementoblast in rats under mechanical stimuli using histologic and molecular methods.
In this study, twenty rats were given hard diet.Ten of them were sacrificed after 1 week, and the others were sacrificed after two weeks. Slides were made from tooth specimen, and they were studied under the microscope. In addition, PDL fibroblast and cementum from the extracted teeth were analyzed with Northern blotting.
In histologic examination, as time passed, PDL fibroblast migrated to the dentin side, differentiated into cementoblast, and formed new cementum.In Northern blotting, it was found that mRNA expression of cementoblast-specific proteins such as BSP, OC, OPN, and type I collagen were more prominent in rats sacrificed after 2 weeks of hard-diet than rats sacrificed after 1 week.
From these findings we can conclude that PDL fibroblast can differentiate into cementoblast under mechanical stimuli.We think that 'Rat Models' used in this study will be beneficial to future studies regarding cementoblast.

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