| International Journal of Molecular Sciences | |
| The Inhibition of RANKL-Induced Osteoclastogenesis through the Suppression of p38 Signaling Pathway by Naringenin and Attenuation of Titanium-Particle-Induced Osteolysis | |
| Wengang Wang1  Chuan Jiang1  Zhengxiao Ouyang1  Yuanqing Mao1  Xuqiang Liu1  Xinhua Qu1  An Qin1  Chuanlong Wu1  Bo Tian1  Tingting Tang1  Zhenan Zhu1  Zanjing Zhai1  | |
| [1] Shanghai Key Laboratory of Orthopedic Implants, Department of Orthopedics,Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine,Shanghai 200011, China; | |
| 关键词: naringenin; osteolysis; osteoclast; p38 signaling; NFATc1; | |
| DOI : 10.3390/ijms151221913 | |
| 来源: DOAJ | |
【 摘 要 】
The aim of this study was to assess the effect of naringenin on osteoclastogenesis and titanium particle-induced osteolysis. Osteolysis from wear-induced particles and aseptic loosening are the most frequent late complications of total joint arthroplasty leading to revision of the prosthesis. Osteolysis during aseptic loosening is most likely due to increased bone resorption by osteoclasts. Through in vitro studies, we demonstrated that naringenin,a naturally occurring flavanone in grapefruit and tomatoes, exerts potent inhibitoryeffects on the ligand of the receptor activator of nuclear factor-κB (RANKL)-induced osteoclastogenesis and revealed that the mechanism of action of naringenin, which inhibited osteoclastogenesis by suppression of the p38 signaling pathway. Through in vivo studies,we proved that naringenin attenuated titanium particle-induced osteolysis in a mouse calvarial model. In general, we demonstrated that naringenin inhibited osteoclastogenesis via suppression of p38 signaling in vitro and attenuated titanium particle-induced osteolysis in vivo. This study also suggested that naringenin has significant potential for the treatment of osteolysis-related diseases caused by excessive osteoclast formation and activity.
【 授权许可】
Unknown