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Physiological cyclic hydrostatic pressure induces osteogenic lineage commitment of human bone marrow stem cells: a systematic study

机译:生理循环静水压压力诱导人骨髓干细胞的成骨谱系承诺:系统研究

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摘要

Abstract Background Physical loading is necessary to maintain bone tissue integrity. Loading-induced fluid shear is recognised as one of the most potent bone micromechanical cues and has been shown to direct stem cell osteogenesis. However, the effect of pressure transients, which drive fluid flow, on human bone marrow stem cell (hBMSC) osteogenesis is undetermined. Therefore, the objective of the study is to employ a systematic analysis of cyclic hydrostatic pressure (CHP) parameters predicted to occur in vivo on early hBMSC osteogenic responses and late-stage osteogenic lineage commitment. Methods hBMSC were exposed to CHP of 10 kPa, 100 kPa and 300 kPa magnitudes at frequencies of 0.5 Hz, 1 Hz and 2 Hz for 1 h, 2 h and 4 h of stimulation, and the effect on early osteogenic gene expression of COX2, RUNX2 and OPN was determined. Moreover, to decipher whether CHP can induce stem cell lineage commitment, hBMSCs were stimulated for 4 days for 2 h/day using 10 kPa, 100 kPa and 300 kPa pressures at 2 Hz frequency and cultured statically for an additional 1–2 weeks. Pressure-induced osteogenesis was quantified based on ATP release, collagen synthesis and mineral deposition. Results CHP elicited a positive, but variable, early osteogenic response in hBMSCs in a magnitude- and frequency-dependent manner, that is gene specific. COX2 expression elicited magnitude-dependent effects which were not present for RUNX2 or OPN mRNA expression. However, the most robust pro-osteogenic response was found at the highest magnitude (300 kPa) and frequency regimes (2 Hz). Interestingly, long-term mechanical stimulation utilising 2 Hz frequency elicited a magnitude-dependent release of ATP; however, all magnitudes promoted similar levels of collagen synthesis and significant mineral deposition, demonstrating that lineage commitment is magnitude independent. This therefore demonstrates that physiological levels of pressures, as low as 10 kPa, within the bone can drive hBMSC osteogenic lineage commitment. Conclusion Overall, these findings demonstrate an important role for cyclic hydrostatic pressure in hBMSCs and bone mechanobiology, which should be considered when studying pressure-driven fluid shear effects in hBMSCs mechanobiology. Moreover, these findings may have clinical implication in terms of bioreactor-based bone tissue engineering strategies.
机译:摘要背景物理载荷要保持骨组织的完整性。装载诱导流体剪切被公认为是最有效的骨微机械线索中的一个,并已被证明直接干细胞骨形成。然而,压力瞬变,这驱动流体流动,对人骨髓干细胞的效果(的hBMSC)成骨是不确定的。因此,研究的目的是采用循环流体静压力的系统分析(CHP)参数预测在体内发生早期成骨的hBMSC响应和晚期成骨谱系提交。方法的hBMSC暴露于10kPa的CHP,100千帕和300千点帕的幅度在0.5Hz,1Hz和2 Hz,持续1小时,2小时和刺激4小时,其效果的频率上COX2的早期成骨基因表达, RUNX2和OPN确定。此外,破译CHP能否诱导干细胞谱系提交,的hBMSCs刺激4天使用10千帕,100千帕,以2 Hz频率300千个帕压力下2小时/天,并再1-2周静置培养。基于ATP释放,胶原合成和矿物沉积压力诱导的成骨进行定量。结果CHP引起了积极的,但可变的,在在幅度和频率依赖性的hBMSCs早期成骨响应,即基因特异性。 COX2表达诱发依赖性大小效应,其不存在用于RUNX2或OPN mRNA的表达。然而,最健壮亲成骨响应在最高幅度(300千帕)和频率制度(2赫兹)被发现。有趣的是,利用2赫兹频率的长期机械刺激引起的ATP依赖性大小释放;然而,所有的幅度促进胶原合成和显著矿物沉积的类似水平,证明谱系定型是大小无关。因此这表明,压力的生理水平,低至10千帕,在骨内能驱动的hBMSC成骨谱系提交。结论总的来说,这些研究结果表明在的hBMSCs和骨力学生物学循环静水压力,应该在学习力学生物学的hBMSCs压力驱动流体剪切力作用时,被认为是一个重要的角色。此外,这些发现可能在基于生物反应器,骨组织工程战略而言临床意义。

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