Department of Stomatology, Hospital of Chengdu University of Traditional Chinese Medicine, Chengdu, People's Republic of China.
College of Stomatology, Chongqing Medical University, Chongqing, People's Republic of China.
Mol Cell Biochem. 2023 Oct;478(10):2191-2206. doi: 10.1007/s11010-022-04645-4. Epub 2023 Jan 14.
The study aims to explore the role of the ERK signaling pathway in the crosstalk between Dkk-1 and TNF-α in MC3T3E1 pre-osteoblasts under cyclic tensile/compressive stress. A forced four-point bending system was used to apply cyclic uniaxial tensile/compressive strain (2000 μ, 0.5 Hz) to MC3T3E1 cells. Dkk-1 and TNF-α expression were upregulated in MC3T3E1 cells under compressive strain. Cell proliferation, the cell cycle, osteogenesis-related gene (Wnt5a, Runx2, Osterix) expression, β-catenin expression, and the p-ERK/ERK ratio were significantly enhanced, whereas apoptosis, the RANKL/OPG ratio, and TNF-α expression were significantly attenuated, by Dkk-1 silencing. Dkk-1 expression increased and the effects of Dkk-1 silencing were reversed when exogenous TNF-α was added. Mechanically, TNF-α crosstalked with Dkk-1 through ERK signaling in MC3T3E1 cells. ERK signaling blockade impaired Dkk-1-induced TNF-α expression and TNF-α-mediated Dkk-1 expression. Dkk-1 and TNF-α crosstalked, partially through ERK signaling, in MC3T3E1 cells under compressive/tensile strain, synergistically modulating various biological behaviors of the cells. These findings not only provide mechanical insight into the cellular events and molecular regulation of orthodontic tooth movement (OTM), but also aid the development of novel strategies to accelerate OTM.
本研究旨在探讨 ERK 信号通路在周期性张压应变下 Dkk-1 与 TNF-α 之间相互作用中的作用。采用四点弯曲强迫系统对 MC3T3E1 前成骨细胞施加周期性单轴张压应变(2000μ,0.5Hz)。结果显示,在压缩应变下,MC3T3E1 细胞中 Dkk-1 和 TNF-α 的表达上调。沉默 Dkk-1 可显著增强细胞增殖、细胞周期、成骨相关基因(Wnt5a、Runx2、Osterix)表达、β-连环蛋白表达和 p-ERK/ERK 比值,而凋亡、RANKL/OPG 比值和 TNF-α 表达则显著降低。外源性 TNF-α的加入增加了 Dkk-1 的表达并逆转了 Dkk-1 沉默的作用。在 MC3T3E1 细胞中,TNF-α 通过 ERK 信号与 Dkk-1 相互作用。ERK 信号阻断削弱了 Dkk-1 诱导的 TNF-α表达和 TNF-α介导的 Dkk-1 表达。在张压应变下,Dkk-1 和 TNF-α 通过 ERK 信号相互作用,协同调节细胞的各种生物学行为。这些发现不仅为正畸牙齿移动(OTM)的细胞事件和分子调控提供了力学见解,也为加速 OTM 的新策略的发展提供了帮助。