自噬增强是保护牙周膜干细胞免受炎症微环境中凋亡影响所需

Increased autophagy is required to protect periodontal ligament stem cells from apoptosis in inflammatory microenvironment
2016-10-11 15:37发表评论
作者:An, Y., Liu, W., Xue, P., Zhang, Y., Wang, Q. , Jin, Y.
机构: 第四军医大学口腔医学院牙周病科,口腔医学陕西省重点实验室,军事口腔医学国家重点实验室
期刊: J CLIN PERIODONTOL2016年7月7期43卷

Objective Autophagy, which provides a mechanism for turnover cellular organelles and proteins through a lysosome-dependent degradation pathway, has been related to the pathogenesis of inflammatory disorders and other diseases. Therefore, the aim of this research was to study the role of autophagy in periodontal ligament stem cells (PDLSCs) and provide a new strategy for treatment or prevention of periodontitis. Methods We used immunohistochemistry to detect the LC3 expression in periodontal ligament (PDL) tissues from patients with (n = 20) or without (n = 20) periodontitis. To further investigate the mechanism of autophagy, the PDLSCs were divided into three groups: H-PDLSCs, P-PDLSCs and I-PDLSCs. The level of autophagy in PDLSCs was evaluated by qRT-PCR and Western blot. LC3-positive points were assessed by immunofluorescence, and the autophagic vacuoles (AVs) were observed by transmission electron microscope. Results We found a higher level of autophagy in gene expression and autophagosome production of PDL tissues from periodontitis patients. Furthermore, there were higher protein levels of LC3, Beclin-1, Atg7 and Atg12 in P-PDLSCs and I-PDLSCs. We also detected LC3-positive points and AVs in P-PDLSCs and I-PDLSCs. The activation of autophagy may protect PDLSCs from apoptosis. Conclusion The results indicate that the modulation of autophagy in P-PDLSCs may provide a novel therapeutic strategy to improve periodontal therapy.

© 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

通讯机构:State Key Laboratory of Military Stomatology, Shaanxi Key Laboratory of Stomatology, Department of Periodontology, School of Stomatology, Fourth Military Medical University, Xi'an, Shaanxi, China
学科代码:口腔医学   关键词:自噬增强 牙周膜干细胞免受炎症 ,中国作者重要发表 爱思唯尔医学网, Elseviermed
来源: Scopus
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