Qing Fangzhu, Xie Pengfei, Liem Yacincha Selushia, Chen Ying, Chen Xuening, Zhu Xiangdong, Fan Yujiang, Yang Xiao, Zhang Xingdong
National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, 610064, China.
University of Electronic Science and Technology of China, Chengdu, 610054, China.
J Orthop Res. 2016 Jul;34(7):1147-57. doi: 10.1002/jor.23128. Epub 2015 Dec 28.
Low-magnitude, high-frequency vibration (LMHFV) has been proposed as a non-drug anti-osteoporosis treatment. However, the influence of administration duration on its effect is seldom investigated. In this study, the effect of 16-week LMHFV (0.3 g, 30 Hz, 20 min/day) on the bone mineral densities (BMDs), bone mechanical properties, and cellular responses of osteoporotic and healthy rats was examined by in vivo peripheral quantitative computed tomography (pQCT), fracture tests, cell assays, and mRNA quantification. Forty-eight adult rats were equally assigned to sham surgery (SHM), sham surgery with LMHFV (SHM+V), ovariectomy (OVX), and ovariectomy with LMHFV (OVX+V) groups. At week 8, LMHFV ameliorated ovariectomy-induced deterioration of trabecular bone, with a significantly higher tibia trabecular BMD (+11.2%) being noted in OVX+V rats (vs. OVX). However, this positive effect was not observed at later time points. Furthermore, 16 weeks of LMHFV caused significant reductions in the vertebral mean BMD (-13.0%), trabecular BMD (-15.7%), and maximum load (-21.5%) in OVX+V rats (vs. OVX). Osteoblasts derived from osteoporotic rat bone explants showed elevated BSP and OSX mRNA expression induced by LMHFV on day 1. However, no further positive effect on osteoblastic mRNA expression, alkaline phosphatase activity, or calcium deposition was observed with prolonged culture time. A higher ratio of RANKL/OPG induced by LMHFV suggests that osteoclastogenesis may be activated. Together, these results demonstrate that administration duration played an important role in the effect of LMHFV. Early exposure to LMHFV can positively modulate osteoporotic bone and osteoblasts; however, the beneficial effect seems not to persist over time. © 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:1147-1157, 2016.
低强度高频振动(LMHFV)已被提议作为一种非药物抗骨质疏松治疗方法。然而,给药持续时间对其效果的影响很少被研究。在本研究中,通过体内外周定量计算机断层扫描(pQCT)、骨折试验、细胞测定和mRNA定量分析,研究了16周的LMHFV(0.3g,30Hz,每天20分钟)对骨质疏松和健康大鼠的骨矿物质密度(BMD)、骨力学性能和细胞反应的影响。48只成年大鼠被平均分为假手术(SHM)组、假手术+LMHFV(SHM+V)组、卵巢切除术(OVX)组和卵巢切除术+LMHFV(OVX+V)组。在第8周时,LMHFV改善了卵巢切除引起的小梁骨退化,OVX+V组大鼠的胫骨小梁BMD显著更高(+11.2%)(与OVX组相比)。然而,在随后的时间点未观察到这种积极效果。此外,16周的LMHFV导致OVX+V组大鼠的椎体平均BMD(-13.0%)、小梁BMD(-15.7%)和最大负荷(-21.5%)显著降低(与OVX组相比)。来自骨质疏松大鼠骨外植体的成骨细胞在第1天显示出LMHFV诱导的骨涎蛋白(BSP)和osterix(OSX)mRNA表达升高。然而,随着培养时间延长,未观察到对成骨细胞mRNA表达、碱性磷酸酶活性或钙沉积的进一步积极影响。LMHFV诱导的RANKL/OPG比值升高表明破骨细胞生成可能被激活。总之,这些结果表明给药持续时间在LMHFV的效果中起重要作用。早期暴露于LMHFV可对骨质疏松骨和成骨细胞产生积极调节作用;然而,这种有益效果似乎不会随着时间持续存在。©2015骨科研究协会。由威利期刊公司出版。《矫形外科学研究》34:1147 - 1157,2016年。