首页> 外文期刊>Biochemistry and Biophysics Reports >Cyclic mechanical stretch contributes to network development of osteocyte-like cells with morphological change and autophagy promotion but without preferential cell alignment in rat
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Cyclic mechanical stretch contributes to network development of osteocyte-like cells with morphological change and autophagy promotion but without preferential cell alignment in rat

机译:循环机械拉伸有助于骨细胞样细胞的网络发育,具有形态学改变和自噬促进作用,但在大鼠中没有优先的细胞排列

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Osteocytes play important roles in controlling bone quality as well as preferential alignment of biological apatite c -axis/collagen fibers. However, the relationship between osteocytes and mechanical stress remains unclear due to the difficulty of three-dimensional (3D) culture of osteocytes in vitro . The aim of this study was to investigate the effect of cyclic mechanical stretch on 3D-cultured osteocyte-like cells. Osteocyte-like cells were established using rat calvarial osteoblasts cultured in a 3D culture system. Cyclic mechanical stretch (8% amplitude at a rate of 2 cycles min ?1 ) was applied for 24, 48 and 96 consecutive hours. Morphology, cell number and preferential cell alignment were evaluated. Apoptosis- and autophagy-related gene expression levels were measured using quantitative PCR. 3D-cultured osteoblasts became osteocyte-like cells that expressed osteocyte-specific genes such as Dmp1 , Cx43 , Sost , Fgf23 and RANKL , with morphological changes similar to osteocytes. Cell number was significantly decreased in a time-dependent manner under non-loaded conditions, whereas cyclic mechanical stretch significantly prevented decreased cell numbers with increased expression of anti-apoptosis-related genes. Moreover, cyclic mechanical stretch significantly decreased cell size and ellipticity with increased expression of autophagy-related genes, LC3b and atg7 . Interestingly, preferential cell alignment did not occur, irrespective of mechanical stretch. These findings suggest that an anti-apoptotic effect contributes to network development of osteocyte-like cells under loaded condition. Spherical change of osteocyte-like cells induced by mechanical stretch may be associated with autophagy upregulation. Preferential alignment of osteocytes induced by mechanical load in vivo may be partially predetermined before osteoblasts differentiate into osteocytes and embed into bone matrix. Highlights ? Novel three-dimensional culture system for osteocyte-like cells were developed. ? Mechanical stretch affected cell morphologies without preferential cell alignment. ? Mechanical stretch upregulated expression of autophagy-related genes. ? Mechanical stretch prevented cell decreases under non-loaded condition.
机译:骨细胞在控制骨质量以及生物磷灰石c轴/胶原纤维的优先排列中起重要作用。然而,由于难以在体外进行骨细胞的三维(3D)培养,因此骨细胞与机械应力之间的关系仍不清楚。这项研究的目的是研究循环机械拉伸对3D培养的骨细胞样细胞的影响。使用在3D培养系统中培养的大鼠颅盖成骨细胞建立类骨细胞。连续24、48和96小时施加循环机械拉伸(以2个循环的最小振幅Δ1的8%振幅)。评价形态,细胞数目和优先细胞排列。使用定量PCR测量凋亡和自噬相关的基因表达水平。 3D培养的成骨细胞变成骨细胞样细胞,表达骨细胞特异性基因,例如Dmp1,Cx43,Sost,Fgf23和RANKL,其形态学变化类似于骨细胞。在无负荷条件下,细胞数以时间依赖性的方式显着减少,而循环机械拉伸显着阻止了细胞数的减少,同时增加了抗凋亡相关基因的表达。此外,周期性机械拉伸显着降低了细胞大小和椭圆度,并增加了自噬相关基因LC3b和atg7的表达。有趣的是,无论机械拉伸如何,都不会发生优先的细胞排列。这些发现表明,在负载条件下,抗凋亡作用有助于骨细胞样细胞的网络发育。机械拉伸诱导的骨细胞样细胞的球形变化可能与自噬上调有关。在成骨细胞分化成骨细胞并嵌入骨基质之前,可以部分地确定由体内机械负荷诱导的骨细胞的优先排列。强调 ?开发了新型的骨细胞样细胞三维培养系统。 ?机械拉伸影响细胞形态而没有优先的细胞排列。 ?机械拉伸上调自噬相关基因的表达。 ?机械拉伸防止细胞在无负荷条件下减少。

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