Tanshinone IIA inhibits osteoclastogenesis in rheumatoid arthritis via LDHC-regulated ROS generation

Author:

Peng Qiuwei,Wang Jian,Han Man,Zhao Minghong,Li Kesong,Lu Tianming,Guo QiuyanORCID,Jiang Quan

Abstract

AbstractRheumatoid arthritis (RA) is characterized by bone destruction in the afflicted joints, and during the process of bone destruction, osteoclasts play a crucial role. Tanshinone IIA (Tan IIA) has shown anti-inflammatory effects in RA. However, the exact molecular mechanisms by which it delays bone destruction remain largely unexplained. Here, we found that Tan IIA decreased the severity of and ameliorated bone loss in an AIA rat model. In vitro, Tan IIA inhibited RANKL-induced osteoclast differentiation. By activity-based protein analysis (ABPP) combined with LC‒MS/MS, we discovered that Tan IIA covalently binds to the lactate dehydrogenase subunit LDHC and inhibits its enzymatic activity. Moreover, we found that Tan IIA inhibits the generation of osteoclast-specific markers by reducing the accumulation of reactive oxygen species (ROS), thus reducing osteoclast differentiation. Finally, our results reveal that Tan IIA suppresses osteoclast differentiation via LDHC-mediated ROS generation in osteoclasts. Tan IIA can thus be regarded as an effective drug for the treatment of bone damage in RA.

Funder

National Natural Science Foundation of China

Scientific and Technological Innovation Project of Chinese Academy of Traditional Chinese Medicine

CACMS Innovation Fund

Fundamental Research Funds for the Central public welfare research institutes

Young Elite Scientists Sponsorship Program by CACM

Publisher

Springer Science and Business Media LLC

Subject

Complementary and alternative medicine,Pharmacology

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