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Osteogenic differentiation of rat bone marrow stromal cells by various intensities of low-intensity pulsed ultrasound

机译:低强度脉冲超声对大鼠骨髓基质细胞成骨分化的影响

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摘要

Bone growth and repair are under the control of biochemical and mechanical signals. Low-intensity pulsed ultrasound (LIPUS) stimulation at 30 mW/cm ~2 is an established, widely used and FDA approved intervention for accelerating bone healing in fractures and non-unions. Although this LIPUS signal accelerates mineralization and bone regeneration, the actual intensity experienced by the cells at the target site might be lower, due to the possible attenuation caused by the overlying soft tissue. The aim of this study was to investigate whether LIPUS intensities below 30 mW/cm~2 are able to provoke phenotypic responses in bone cells. Rat bone marrow stromal cells were cultured under defined conditions and the effect of 2, 15, 30 mW/cm~2 and sham treatments were studied at early (cell activation), middle (differentiation into osteogenic cells) and late (biological mineralization) stages of osteogenic differentiation. We observed that not only 30 mW/cm ~2 but also 2 and 15 mW/cm~2, modulated ERK1/2 and p38 intracellular signaling pathways as compared to the sham treatment. After 5 days with daily treatments of 2, 15 and 30 mW/cm~2, alkaline phosphatase activity, an early indicator of osteoblast differentiation, increased by 79%, 147% and 209%, respectively, compared to sham, indicating that various intensities of LIPUS were able to initiate osteogenic differentiation. While all LIPUS treatments showed higher mineralization, interestingly, the highest increase of 225% was observed in cells treated with 2 mW/cm~2. As the intensity increased to 15 and 30 mW/cm~2, the increase in the level of mineralization dropped to 120% and 82%. Our data show that LIPUS intensities lower than the current clinical standard have a positive effect on osteogenic differentiation of rat bone marrow stromal cells. Although Exogen? at 30 mW/cm~2 continues to be effective and should be used as a clinical therapy for fracture healing, if confirmed in vivo, the increased mineralization at lower intensities might be the first step towards redefining the most effective LIPUS intensity for clinical use.
机译:骨骼的生长和修复受生化和机械信号的控制。 30 mW / cm〜2的低强度脉冲超声(LIPUS)刺激是一种已建立的,广泛使用的且经FDA批准的干预措施,可促进骨折和不愈合的骨愈合。尽管此LIPUS信号加速了矿化和骨骼再生,但由于上覆的软组织可能造成衰减,目标部位的细胞实际承受的强度可能会降低。这项研究的目的是调查LIPUS强度低于30 mW / cm〜2是否能够在骨细胞中引起表型反应。在规定的条件下培养大鼠骨髓基质细胞,并在早期(细胞激活),中期(分化为成骨细胞)和后期(生物矿化)阶段研究了2、15、30 mW / cm〜2和假处理的效果成骨分化。我们观察到,与假治疗相比,不仅30 mW / cm〜2,而且2和15 mW / cm〜2均能调节ERK1 / 2和p38细胞内信号通路。每天处理2、15和30 mW / cm〜2的5天后,碱性磷酸酶活性(成骨细胞分化的早期指标)与假手术相比分别增加了79%,147%和209%,表明各种强度LIPUS能够启动成骨分化。尽管所有LIPUS处理均显示出更高的矿化度,但有趣的是,在2 mW / cm〜2处理的细胞中观察到最高的225%的增加。随着强度增加到15和30 mW / cm〜2,矿化水平的增加分别降至120%和82%。我们的数据表明,低于当前临床标准的LIPUS强度对大鼠骨髓基质细胞的成骨分化具有积极作用。虽然是外星人?在30 mW / cm〜2的压力下继续有效,应被用作骨折愈合的临床疗法,如果在体内得到证实,则在较低强度下增加的矿化作用可能是重新确定最有效的LIPUS强度以供临床使用的第一步。

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