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Primary cilia respond to fluid shear stress and mediate flow-induced calcium deposition in osteoblasts

机译:初级纤毛响应流体剪切应力并介导成骨细胞中流动诱导的钙沉积

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摘要

Bone turnover in vivo is regulated by mechanical forces such as shear stress originating from interstitial oscillatory fluid flow (OFF), and bone cells in vitro respond to mechanical loading. However, the mechanisms by which bone cells sense mechanical forces, resulting in increased mineral deposition, are not well understood. The aim of this study was to investigate the role of the primary cilium in mechanosensing by osteoblasts. MLO-A5 murine osteoblasts were cultured in monolayer and subjected to two different OFF regimens: 5 short (2 h daily) bouts of OFF followed by morphological analysis of primary cilia; or exposure to chloral hydrate to damage or remove primary cilia and 2 short bouts (2 h on consecutive days) of OFF. Primary cilia were shorter and there were fewer cilia per cell after exposure to periods of OFF compared with static controls. Damage or removal of primary cilia inhibited OFF-induced PGE2 release into the medium and mineral deposition, assayed by Alizarin red staining. We conclude that primary cilia are important mediators of OFF-induced mineral deposition, which has relevance for the design of bone tissue engineering strategies and may inform clinical treatments of bone disorders causes by load-deficiency.—Delaine-Smith, R. M., Sittichokechaiwut, A., Reilly, G. C. Primary cilia respond to fluid shear stress and mediate flow-induced calcium deposition in osteoblasts.
机译:体内的骨转换受机械力(例如来自间质振荡流体流动(OFF)的剪切应力)的调节,并且体外的骨细胞对机械负荷作出反应。但是,对于骨细胞感知机械力并导致矿物质沉积增加的机制尚不清楚。这项研究的目的是调查成年成纤维细胞的初级纤毛在机械传感中的作用。 MLO-A5鼠成骨细胞以单层培养,并接受两种不同的OFF方案:5次短暂(每天2小时)OFF发作,然后进行原发性纤毛的形态分析;或暴露于水合氯醛中,以破坏或去除原发性纤毛和2次短暂的发作(连续2h,连续2天)。与静态对照相比,暴露于OFF时期后原发纤毛更短,每个细胞的纤毛更少。原发性纤毛的损伤或去除抑制了OFF诱导的PGE2释放到培养基和矿物质中,通过茜素红染色进行了分析。我们得出的结论是,初级纤毛是OFF诱导的矿物质沉积的重要介质,这与骨组织工程策略的设计有关,并且可能为因负荷不足而导致的骨疾病的临床治疗提供依据。—Delaine-Smith,RM,Sittichokechaiwut,A GC,Reilly,GC原发性纤毛对成骨细胞中的流体剪切应力作出反应并介导流动诱导的钙沉积。

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