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Calcium Response in Osteocytic Networks under Steady and Oscillatory Fluid Flow

机译:稳态振动流体流动下骨细胞网络中的钙响应

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摘要

The fluid flow in the lacunar-canalicular system of bone is an essential mechanical stimulation on the osteocyte networks. Due to the complexity of human physical activities, the fluid shear stress on osteocyte bodies and processes consists of both steady and oscillatory components. In this study, we investigated and compared the intracellular calcium ([Ca2+]i) responses of osteocytic networks under steady and oscillatory fluid flows. An in vitro osteocytic network was built with MLO-Y4 osteocyte-like cells using micro-patterning techniques to simulate the in vivo orderly organization of osteocyte networks. Sinusoidal oscillating fluid flow or unidirectional steady flow was applied on the cell surface with 20 dyne/cm2 peak shear stress. It was found that the osteocytic networks were significantly more responsive to steady flow than to oscillatory flow. The osteocytes can release more calcium peaks with higher magnitudes at a faster speed under steady flow stimulation. The [Ca2+]i signaling transients under the steady and oscillatory flows have significantly different spatiotemporal characters, but a similar responsive percentage of cells. Further signaling pathway studies using inhibitors showed that endoplasmic reticulum (ER) calcium store, extracellular calcium source, ATP, PGE2 and NO related pathways play similar roles in the [Ca2+]i signaling of osteocytes under either steady or oscillating flow. The spatiotemporal characteristics of [Ca2+]i transients under oscillating fluid flow are affected more profoundly by pharmacological treatments than under the steady flow. Our findings support the hypothesis that the [Ca2+]i responses of osteocytic networks are significantly dependent on the profiles of fluid flow.
机译:骨瓣膜瓣膜骨系统中的流体流是对骨细胞网络的基本机械刺激。由于人体体育活动的复杂性,骨细胞体和方法上的流体剪切应力由稳态和振荡组分组成。在这项研究中,我们研究并比较了骨细胞网络在稳定和振荡的流体流动下的细胞内钙([Ca 2 + / sup>] i)反应。使用微图案化技术用MLO-Y4骨细胞样细胞构建体外骨细胞网络,以模拟骨细胞网络的体内有序组织。用20达因/ cm 2 峰值剪切应力施加在细胞表面上施加正弦振荡流体流动或单向稳定流动。发现骨细胞网络对稳定流量的响应显着响应于振荡流量。在稳定的流动刺激下,骨细胞可以在更快的速度下释放具有更高幅度的钙峰。在稳态和振荡流下的[CA 2 + ] I信令瞬态具有显着不同的时性字符,但细胞的相似响应百分比。使用抑制剂的进一步信号传导途径研究表明,内质网(ER)钙储存,细胞外钙源,ATP,PGE2和无相关途径在其中骨细胞的[Ca 2 + ] I信号传导中起类似的作用稳定或振荡流动。在振荡流体流下的[Ca 2 + ] I瞬态的时空特性受药理学治疗的影响比在稳定流动下的影响。我们的研究结果支持骨细胞网络的[Ca 2 + / sup>] I反应的假设显着取决于流体流动的曲线。

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