The role of heme oxygenase-1 in mechanical stress- and lipopolysaccharide-induced osteogenic differentiation in human periodontal ligament cells

被引:27
|
作者
Cho, Jin-Hyoung [3 ]
Lee, Sun-Kyung [1 ]
Lee, Jin-Woo [2 ]
Kim, Eun-Cheol [1 ]
机构
[1] Wonkwang Univ, Coll Dent, Dept Oral & Maxillofacial Pathol, Iksan 570749, Jeonbuk, South Korea
[2] Dankook Univ, Coll Dent, Dept Orthodont, Cheonan, South Korea
[3] Wonkwang Univ, Coll Dent, Dept Orthodont, Iksan 570749, Jeonbuk, South Korea
关键词
Mechanical stress; LPS; Osteogenic differentiation; HO-1; PDLCs; MESENCHYMAL STEM-CELLS; BONE MORPHOGENETIC PROTEIN-2; HUMAN PULP CELLS; PROINFLAMMATORY CYTOKINES; ORTHODONTIC ATTACHMENTS; INFLAMMATORY CYTOKINES; RECEPTOR ACTIVATOR; GINGIVAL HEALTH; TENSILE STRAIN; IN-VITRO;
D O I
10.2319/091509-520.1
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objective: To investigate the mechanisms through which mechanical stress and lipopolysaccharide treatment modulate osteoblastic differentiation in periodontal ligament cells. Materials and Methods: Cells were treated with lipopolysaccharide and/or mechanical strain applied with a Flexercell Strain Unit. Protein expression and mRNA were analyzed by Western blotting and reverse transcription polymerase chain reaction, respectively. Results: When lipopolysaccharide was co-applied with mechanical strain, the increase in the expression of bone morphogenetic protein-2, bone morphogenetic protein-7, and Runx2 mRNA seen with mechanical strain alone was restricted, but heme oxygenase-1 expression was further enhanced. Furthermore, pretreatment with an inhibitor of heme oxygenase-1 or inhibitors of p38, mitogen-activated protein kinase, JNK, phosphoinositide 3-kinases, protein kinase G, and nuclear factor kappa B restricted osteogenic differentiation induced by the application of lipopolysaccharide and mechanical strain. Conclusions: These results suggest that orthodontic force-induced osteogenesis in alveolar bone is inhibited by the accompanying periodontal inflammation via the upregulation of heme oxygenase-1 expression. Thus, the heme oxygenase-1 pathway could provide a possible therapeutic strategy to improve bone formation in orthodontic treatment. (Angle Orthod. 2010;80:740-747.)
引用
收藏
页码:740 / 747
页数:8
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