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Osteocytes exposed to far field of therapeutic ultrasound promotes osteogenic cellular activities in pre-osteoblasts through soluble factors

机译:暴露于治疗性超声远场的骨细胞通过可溶性因子促进成骨前细胞的成骨细胞活性

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摘要

Low intensity pulsed ultrasound (LIPUS) was reported to accelerate the rate of fracture healing. When LIPUS is applied to fractures transcutaneously, bone tissues at different depths are exposed to different ultrasound fields. Measurement of LIPUS shows pressure variations in near field (nearby transducer); uniform profile was found beyond it (far field). Moreover, we have reported that the therapeutic effect of LIPUS is dependent on the axial distance of ultrasound beam in rat fracture model. However, the mechanisms of how different axial distances of LIPUS influence the mechanotransduction of bone cells are not understood. To understand the cellular mechanisms underlying far field LIPUS on enhanced fracture healing in rat model, the present study investigated the effect of ultrasound axial distances on (1) osteocyte, the mechanosensor, and (2) mechanotransduction between osteocyte and pre-osteoblast (bone-forming cell) through paracrine signaling. We hypothesized that far field LIPUS could enhance the osteogenic activities of osteoblasts via paracrine factors secreted from osteocytes. The objective of this study was to investigate the effect of axial distances of LIPUS on osteocytes and osteocyte–osteoblast mechanotransduction. In this study, LIPUS (plane; 2.2 cm in diameter, 1.5 MHz sine wave, ISATA = 30 mW/cm~2) was applied to osteocytes (mechanosensor) at three axial distances: 0 mm (near field), 60 mm (mid-near field) and 130 mm (far field). The conditioned medium of osteocytes (OCM) collected from these three groups were used to culture pre-osteoblasts (effector cell). In this study, (1) the direct effect of ultrasound fields on the mechanosensitivity of osteocytes; and (2) the osteogenic effect of different OCM treatments on pre-osteoblasts were assessed. The immunostaining results indicated the ultrasound beam at far field resulted in more b-catenin nuclear translocation in osteocytes than all other groups. This indicated that osteocytes could detect the acoustic differences of LIPUS at various axial distances. Furthermore, we found that the soluble factors secreted by far field LIPUS exposed osteocytes could further promote pre-osteoblasts cell migration, maturation (transition of cell proliferation into osteogenic differentiation), and matrix calcification. In summary, our results of this present study indicated that axial distance beyond near field could transmit ultrasound energy to osteocyte more efficiently. The LIPUS exposed osteocytes conveyed mechanical signals to pre-osteoblasts and regulated their osteogenic cellular activities via paracrine factors secretion. The soluble factors secreted by far field exposed osteocytes led to promotion in migration and maturation in pre-osteoblasts. This finding demonstrated the positive effects of far field LIPUS on stimulating osteocytes and promoting mechanotransduction between osteocytes and osteoblasts.
机译:据报道,低强度脉冲超声(LIPUS)可加快骨折愈合的速度。当LIPUS经皮应用于骨折时,不同深度的骨组织会暴露于不同的超声场。 LIPUS的测量显示了近场中(附近传感器)的压力变化;在其远处发现了均匀的轮廓(远场)。此外,我们已经报道,在大鼠骨折模型中,LIPUS的治疗效果取决于超声束的轴向距离。但是,尚不清楚LIPUS的不同轴向距离如何影响骨细胞机械转导的机制。为了解远场LIPUS促进大鼠模型骨折愈合的细胞机制,本研究调查了超声轴向距离对(1)骨细胞,机械传感器和(2)骨细胞与成骨细胞前体(骨-骨)之间的机械传导的影响。通过旁分泌信号传导形成细胞)。我们假设远场LIPUS可以通过骨细胞分泌的旁分泌因子增强成骨细胞的成骨活性。这项研究的目的是研究LIPUS的轴向距离对骨细胞和骨细胞-成骨细胞机械转导的影响。在这项研究中,将LIPUS(平面;直径2.2厘米,正弦波1.5 MHz,ISATAP = 30 mW / cm〜2)以三个轴向距离应用于骨细胞(机械传感器):0毫米(近场),60毫米(中场) -近场)和130毫米(远场)。从这三组中收集的骨细胞条件培养液(OCM)用于培养成骨前细胞(效应细胞)。在这项研究中,(1)超声场对骨细胞机械敏感性的直接影响; (2)评估了不同OCM处理对成骨前细胞的成骨作用。免疫染色结果表明,远场超声束比其他所有组在骨细胞中导致更多的b-catenin核移位。这表明骨细胞可以在各种轴向距离处检测到LIPUS的声学差异。此外,我们发现远场LIPUS暴露的骨细胞分泌的可溶性因子可以进一步促进成骨细胞的细胞迁移,成熟(细胞增殖转变为成骨细胞分化)和基质钙化。总之,本研究的结果表明,近场以外的轴向距离可以更有效地将超声能量传输到骨细胞。 LIPUS暴露的骨细胞将机械信号传递到成骨前细胞,并通过旁分泌因子分泌调节其成骨细胞活性。远场暴露的骨细胞分泌的可溶性因子导致成骨细胞迁移和成熟的促进。该发现证明了远场LIPUS对刺激骨细胞和促进骨细胞与成骨细胞之间的机械转导具有积极作用。

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