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Mechanical stress induces expression of cytokines in human periodontal ligament cells
Author(s) -
Yamamoto T,
Kita M,
Kimura I,
Oseko F,
Terauchi R,
Takahashi K,
Kubo T,
Kanamura N
Publication year - 2006
Publication title -
oral diseases
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.953
H-Index - 87
eISSN - 1601-0825
pISSN - 1354-523X
DOI - 10.1111/j.1601-0825.2005.01179.x
Subject(s) - rankl , osteoprotegerin , periodontal fiber , cementum , chemistry , cytokine , proinflammatory cytokine , dental alveolus , receptor , tumor necrosis factor alpha , microbiology and biotechnology , hydrostatic pressure , activator (genetics) , andrology , inflammation , medicine , dentistry , biology , dentin , biochemistry , physics , thermodynamics
Objective:  Periodontal tissue has a unique structure in that the human periodontal ligament (hPDL) lies between the hard tissues of cementum and alveolar bone. Although the role of cytokines in hPDL function is not clearly understood, we investigated the effect of mechanical stress as hydrostatic pressure (HP) on cytokine expression in hPDL cells. Materials and methods:  The hPDL cells were obtained from a healthy maxillary third molar. After the third to fourth passage, the cells were exposed to HP ranging from 1 to 6 MPa as previously described. Total RNA was extracted and the expression of cytokine mRNA was determined by RT‐PCR. Results:  The exposure to 6 MPa of HP caused no morphological changes of hPDL cells, and did not affect the cellular viability. No expression of IL‐1 β , IL‐6, IL‐8, TNF‐ α , receptor activator of NF‐λB (RANK), receptor activator of NF‐λB ligand (RANKL), or osteoprotegerin mRNA was observed in the control cells under atmospheric pressure, whereas, in hPDL cells treated with HP, a pressure‐dependent enhancement of IL‐6, IL‐8, RANKL, and OPG mRNA expression was observed between 10 and 60 min after the exposure to HP. Conclusion:  These results suggest that hPDL cells may play a role in the production of cytokines in response to mechanical stress in vivo .

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