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Mechanism of Cyclic Tensile Stress in Osteogenic Differentiation of Human Periodontal Ligament Stem Cells
被引:18
|作者:
Wu, Xiayi
[1
]
Li, Yi
[2
]
Cao, Zeyuan
[2
]
Xie, Yunyi
[2
]
Fu, Chuanqiang
[2
]
Chen, Huan
[2
]
机构:
[1] Sun Yat Sen Univ, Hosp Stomatol, Guanghua Sch Stomatol, Zhujiang Newtown Dent Clin,Inst Stomatol Res,Guan, 49 Huaxia Rd, Guangzhou 510627, Guangdong, Peoples R China
[2] Sun Yat Sen Univ, Hosp Stomatol, Guanghua Sch Stomatol, Inst Stomatol Res,Guangdong Prov Key Lab Stomatol, 56 Lingyuan West Rd, Guangzhou 510080, Peoples R China
关键词:
Cyclic tensile stress;
Human periodontal ligament stem cells;
Osteogenic differentiation;
microRNA-129-5p;
BMP2;
smad pathway;
D O I:
10.1007/s00223-020-00789-x
中图分类号:
R5 [内科学];
学科分类号:
1002 ;
100201 ;
摘要:
Human periodontal ligament stem cells (hPDLSCs) can undergo osteogenic differentiation under induction conditions. Cyclic tensile stress (CTS) can stimulate stem cell osteogenic differentiation. The present study explored the mechanism of CTS in hPDLSC osteogenic differentiation. The hPDLSCs of the 4th passage were selected. hPDLSCs were subjected to CTS with deformation of 10% elongation at 0.5 Hz for 1, 4, 8, 12 and 24 h. ALP activity and staining, ARS staining and detection of expressions of osteogenesis-related genes (RUNX2, OPN, Sp7 and OCN) were used to assess hPDLSC osteogenic differentiation ability. microRNA (miR)-129-5p and BMP2 expression and p-Smad1/5 level were detected under CTS stimulation. The binding relationship between miR-129-5p and BMP2 was predicted and verified. The osteogenic differentiation ability of CTS-treated hPDLSCs was evaluated after intervention of miR-129-5p and BMP2. CTS induced hPDLSC osteogenic differentiation, as manifested by increased ALP activities, osteogenesis-related gene expressions and mineralized nodules, together with positive ALP staining. CTS inhibited miR-129-5p expression, and promoted BMP2 expression and p-Smad1/5 level in hPDLSCs. miR-129-5p targeted BMP2. Overexpressed miR-129-5p or silenced BMP2 prevented hPDLSC osteogenic differentiation ability. We demonstrated that CTS inhibited miR-129-5p expression, and then activated the BMP2/Smad pathway, thereby showing stimulative effects on hPDLSC osteogenic differentiation.
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页码:640 / 653
页数:14
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