Yu Xiaoqin, Zeng Ye, Bao Mingyue, Wen Jirui, Zhu Guangguang, Cao Chengjian, He Xueling, Li Liang
Institute of Biomedical Engineering, West China School of Basic Medical Sciences and Forensic Medicine, Sichuan University, Chengdu, China.
Laboratory Animal Center, Sichuan University, Chengdu, China.
FASEB J. 2020 Sep;34(9):11754-11771. doi: 10.1096/fj.201902830RRR. Epub 2020 Jul 11.
The dysfunction of bone marrow mesenchymal stem cells (BMSCs) in osteogenic differentiation is one of the main causes of age-related bone loss. Our previous studies have shown that low-magnitude vibration (LMV) induces the osteogenic differentiation of BMSCs derived from ovariectomized osteoporotic rats. To investigate whether LMV promotes osteogenic differentiation of BMSCs and its underlying mechanisms in aged rats, 20-month-old female Sprague-Dawley rats (n = 20) were randomly divided into LMV group (rats were vibrated at 0.3 g and 90 Hz for 30 minutes, once daily, 5 days a week until 12 weeks for subsequent analysis, n = 10), static group (rats were placed in the box on the vibration platform without vibration, n = 10); 6-month-old female Sprague-Dawley rats were used as control (young group, n = 10). The bone mineral density and bone strength of aged rats were significantly decreased compared with the young rats. Furthermore, the primary BMSCs isolated and cultured from the aged rats with the whole-bone marrow differential pasting method showed a decreased ability in osteogenic differentiation compared with that from the young rats. Then the differentially expressed miRNAs between the aged and young rat-derived BMSCs were screened by high-throughput sequencing and verified by qRT-PCR, and we found that miR-378a-3p was significantly downregulated in the aged rat-derived BMSCs compared with the young rat-derived BMSCs. By transfecting miRNA mimics and inhibitors, miR-378a-3p was confirmed to promote the expression levels of osteogenic genes (Runx2, ALP, Col I, and OCN) and ALP activity of the aged rat-derived BMSCs. Meanwhile, the expression levels of osteogenic genes and miR-378a-3p of aged rat-derived BMSCs were significantly upregulated by LMV (cells were vibrated at 0.3 g and 90 Hz for 30 minutes a day, until 5 days for subsequent analysis), while the LMV-induced osteogenic gene expression levels of aged rat-derived BMSCs were suppressed by miR-378a-3p inhibitors. Furthermore, the inhibition of growth factor receptor-bound protein 2 (Grb2) by miR-378a-3p and Grb2-siRNA promoted the LMV-induced osteogenic differentiation of aged rat-derived BMSCs. Additionally, LMV was found to promote bone mineral density and bone strength of aged rats in vivo, as well as upregulating the expression level of miR-378a-3p and downregulating the expression level of Grb2 of BMSCs from aged rats. These results suggest that LMV induces osteogenic differentiation of BMSCs through miR-378a-3p/Grb2 pathway to improve bone mineral density and mechanical properties in a rat model of age-related bone loss.
骨髓间充质干细胞(BMSCs)成骨分化功能障碍是与年龄相关的骨质流失的主要原因之一。我们之前的研究表明,低强度振动(LMV)可诱导去卵巢骨质疏松大鼠来源的BMSCs发生成骨分化。为了研究LMV是否能促进老年大鼠BMSCs的成骨分化及其潜在机制,将20月龄雌性Sprague-Dawley大鼠(n = 20)随机分为LMV组(大鼠以0.3 g和90 Hz振动30分钟,每天1次,每周5天,持续12周用于后续分析,n = 10)、静态组(大鼠置于振动平台上的盒子中但不振动,n = 10);6月龄雌性Sprague-Dawley大鼠作为对照(年轻组,n = 10)。与年轻大鼠相比,老年大鼠的骨密度和骨强度显著降低。此外,采用全骨髓差异贴壁法从老年大鼠分离培养的原代BMSCs与年轻大鼠来源的相比,成骨分化能力下降。然后通过高通量测序筛选老年和年轻大鼠来源的BMSCs之间差异表达的miRNAs,并通过qRT-PCR进行验证,我们发现与年轻大鼠来源的BMSCs相比,miR-378a-3p在老年大鼠来源的BMSCs中显著下调。通过转染miRNA模拟物和抑制剂,证实miR-378a-3p可促进老年大鼠来源的BMSCs中成骨基因(Runx2、ALP、Col I和OCN)的表达水平及ALP活性。同时,LMV(细胞每天以0.3 g和90 Hz振动30分钟,持续5天用于后续分析)显著上调老年大鼠来源的BMSCs中成骨基因和miR-378a-3p的表达水平,而miR-378a-3p抑制剂可抑制LMV诱导的老年大鼠来源的BMSCs中成骨基因表达水平。此外,miR-378a-3p和Grb2-siRNA对生长因子受体结合蛋白2(Grb2)的抑制促进了LMV诱导的老年大鼠来源的BMSCs的成骨分化。另外,发现LMV在体内可促进老年大鼠的骨密度和骨强度,同时上调老年大鼠BMSCs中miR-378a-3p的表达水平并下调Grb2的表达水平。这些结果表明,在与年龄相关的骨质流失大鼠模型中,LMV通过miR-378a-3p/Grb2途径诱导BMSCs的成骨分化,以改善骨密度和力学性能。