Department of Clinical Chemistry, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, The Netherlands.
Department of Physics and Medical Technology, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.
J Orthop Res. 2021 Jan;39(1):42-52. doi: 10.1002/jor.24775. Epub 2020 Jul 21.
Mechanical stress determines bone mass and structure. It is not known whether mechanical loading affects expression of bone regulatory genes in a combined deficiency of estrogen and vitamin D. We studied the effect of mechanical loading on the messenger RNA (mRNA) expression of bone regulatory genes during vitamin D and/or estrogen deficiency. We performed a single bout in vivo axial loading with 14 N peak load, 2 Hz frequency and 360 cycles in right ulnae of nineteen weeks old female control Wistar rats with or without ovariectomy (OVX), vitamin D deficiency and the combination of OVX and vitamin D deficiency (N = 10/group). Total bone RNA was isolated 6 hours after loading, and mRNA expression was detected of Mepe, Fgf23, Dmp1, Phex, Sost, Col1a1, Cyp27b1, Vdr, and Esr1. Serum levels of 25(OH)D, 1,25(OH) D and estradiol were also measured at this time point. The effect of loading, vitamin D and estrogen deficiency and their interaction on bone gene expression was tested using a mixed effect model analysis. Mechanical loading significantly increased the mRNA expression of Mepe, and Sost, whereas it decreased the mRNA expression of Fgf23 and Esr1. Mechanical loading showed a significant interaction with vitamin D deficiency with regard to mRNA expression of Vdr and Esr1. Mechanical loading affected gene expression of Mepe, Fgf23, Sost, and Esr1 independently of vitamin D or estrogen, indicating that mechanical loading may affect bone turnover even during vitamin D deficiency and after menopause.
机械应力决定骨量和结构。目前尚不清楚机械负荷是否会影响雌激素和维生素 D 联合缺乏时的骨调节基因表达。我们研究了机械负荷对维生素 D 和/或雌激素缺乏时骨调节基因信使 RNA(mRNA)表达的影响。我们对 19 周龄去卵巢(OVX)、维生素 D 缺乏以及 OVX 和维生素 D 缺乏的雌性 Wistar 大鼠右桡骨进行了一次体内轴向单负荷,峰值负荷为 14N,频率为 2Hz,循环 360 次(每组 N=10)。负荷后 6 小时分离总骨 RNA,并检测 Mepe、Fgf23、Dmp1、Phex、Sost、Col1a1、Cyp27b1、Vdr 和 Esr1 的 mRNA 表达。此时还测量了血清 25(OH)D、1,25(OH)D 和雌二醇的水平。使用混合效应模型分析测试了加载、维生素 D 和雌激素缺乏及其相互作用对骨基因表达的影响。机械负荷显著增加了 Mepe 和 Sost 的 mRNA 表达,而降低了 Fgf23 和 Esr1 的 mRNA 表达。机械负荷与维生素 D 缺乏在 Vdr 和 Esr1 的 mRNA 表达上表现出显著的交互作用。机械负荷独立于维生素 D 或雌激素影响 Mepe、Fgf23、Sost 和 Esr1 的基因表达,表明即使在维生素 D 缺乏和绝经后,机械负荷也可能影响骨转换。