Leonurine Maintains BMSCs Stemness From Osteoporotic Rats Through Inhibiting Ferroptosis Depending on the JNK Signaling Pathway

细胞生物学 成骨细胞 信号转导 MAPK/ERK通路 化学 磷酸化 下调和上调 破骨细胞 癌症研究 NF-κB 细胞 活性氧 氧化磷酸化 骨质疏松症 细胞生长 骨吸收 机制(生物学) 氧化应激 功能(生物学) 生物 调解人 蛋白激酶B 细胞信号 小干扰RNA
作者
Dongmei Lan,Haijiang Liu,Chao Yao,Xue Li,Yijia Chen,Dan Wang,Yan Wang,Jue Wang,zhu yizhun,Shengcai Qi
出处
期刊:Phytotherapy Research [Wiley]
标识
DOI:10.1002/ptr.70200
摘要

Osteoporosis (OP) is a chronic bone metabolic disease in which the balance between osteoblasts and osteoclasts is broken. Leonurine can protect BMSCs from oxidative stress, while the role and molecular mechanism of leonurine on OP is unclear. The primary BMSCs from OP rats (OP-BMSCs) were extracted and cultured in vitro. Next, we observed the effects of different concentrations of leonurine on cell viability, ROS level and osteoblast differentiation. Additionally, the change levels of ferroptosis and bone microstructure were examined. RNA sequencing was used to analyze the signaling pathway and the MAPK signaling pathway was explored in vitro. Finally, the functions of osteoclasts were estimated. Leonurine downregulated ROS levels, upregulated the expression of antioxidative genes and osteogenic-related markers in OP-BMSCs via inhibiting ferroptosis depending on upregulating the phosphorylation of JNK. Additionally, the supernatant of OP-BMSCs promoted the M1 polarization and inhibited M2 polarization, which will be suppressed after co-culture of leonurine and OP-BMSCs in vitro. Leonurine could promote the osteogenic function of BMSCs via the inhibition of ferroptosis depending on the JNK signaling pathway and inhibit osteoclastic differentiation by the promotion of M2 polarization, which represents a potential therapeutic approach for OP.
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