缝隙连接
牙周纤维
细胞生物学
连接蛋白
光漂白后的荧光恢复
细胞内
化学
生物物理学
生物
医学
膜
牙科
生物化学
作者
Ryushi Kato,Yoshihito Ishihara,Noriaki Kawanabe,Kumi Sumiyoshi,Yusuke Yoshikawa,Masahiro Nakamura,Yuichi Imai,Teruyoshi Yanagita,Hiroaki Fukushima,Hiroshi Kamioka,Teruko Takano‐Yamamoto,Takashi Yamashiro
标识
DOI:10.1177/0022034513489992
摘要
Periodontal tissue homeostasis depends on a complex cellular network that conveys cell-cell communication. Gap junctions (GJs), one of the intercellular communication systems, are found between adjacent human periodontal ligament (hPDL) cells; however, the functional GJ coupling between hPDL cells has not yet been elucidated. In this study, we investigated functional gap-junction-mediated intercellular communication in isolated primary hPDL cells. SEM images indicated that the cells were in contact with each other via dendritic processes, and also showed high anti-connexin43 (Cx43) immunoreactivity on these processes. Gap-junctional intercellular communication (GJIC) among hPDL cells was assessed by fluorescence recovery after a photobleaching (FRAP) analysis, which exhibited dye coupling between hPDL cells, and was remarkably down-regulated when the cells were treated with a GJ blocker. Additionally, we examined GJs under hypoxic stress. The fluorescence recovery and expression levels of Cx43 decreased time-dependently under the hypoxic condition. Exposure to GJ inhibitor or hypoxia increased RANKL expression, and decreased OPG expression. This study shows that GJIC is responsible for hPDL cells and that its activity is reduced under hypoxia. This is consistent with the possible role of hPDL cells in regulating the biochemical reactions in response to changes in the hypoxic environment.
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