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首页> 外文期刊>Journal of biomedical materials research, Part A >Mechanical stimulation induces morphological and phenotypic changes in bone marrow-derived progenitor cells within a three-dimensional fibrin matrix.
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Mechanical stimulation induces morphological and phenotypic changes in bone marrow-derived progenitor cells within a three-dimensional fibrin matrix.

机译:机械刺激在三维纤维蛋白基质内诱导源自骨髓的祖细胞的形态和表型变化。

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One of the major limitations in tissue engineering is cell sourcing. Multipotent progenitor cells appear to have many promising features for that purpose. Mechanical stimulation is known to play an important role in determining cell phenotype. The aim of this work was to investigate the effects of cyclic stretch on rat bone marrow derived progenitor cell (BMPC) morphology and smooth muscle-directed differentiation within a three-dimensional fibrin matrix. BMPCs were suspended in a fibrin gel, pipetted into the trough of Flexcell Tissue-Train plates, and stimulated with 10% longitudinal cyclic stretch at 1 Hz for 6 days. Unconstrained (stress- and strain-free) and static anchored (constrained but not stretched) samples were used as controls. Stress filament area per cell was increased in the stretched samples compared to static anchored and free-float controls. Cells in the free float controls were randomly aligned, while they aligned parallel to the direction of the stress or strain in the other groups. Immunofluorescence suggested an increased expression of smooth muscle markers (smooth muscle alpha actin and h1-calponin) in both stretched and constrained control samples, but not in unconstrained controls. Qualitative assessment suggested that collagen production was increased in both mechanically stimulated samples. Proliferation was inhibited in stretched samples compared to the constrained controls. This work suggests an ability of rat BMPCs to differentiate toward a smooth-muscle-cell-like lineage when exposed to biomechanical stimulation in a three-dimensional model. The observation that the constrained samples induced changes in BMPCs suggests that stress alone may be stimulatory, but addition of cyclic stretch appears to augment the responses.
机译:组织工程学的主要限制之一是细胞来源。为此,多能祖细胞似乎具有许多有前途的特征。已知机械刺激在确定细胞表型中起重要作用。这项工作的目的是研究循环拉伸对三维纤维蛋白基质中大鼠骨髓衍生祖细胞(BMPC)形态和平滑肌定向分化的影响。将BMPC悬浮在纤维蛋白凝胶中,移入Flexcell组织训练板的槽中,并在1 Hz下以10%的纵向循环拉伸刺激6天。将无约束(无应力和无应变)和静态锚定(受约束但未拉伸)的样品用作对照。与静态锚定和自由浮动控件相比,拉伸样本中每个单元的应力丝面积增加。自由漂浮对照中的细胞随机排列,而它们平行于其他组中的应力或应变方向排列。免疫荧光表明,在拉伸和约束条件的对照样品中,平滑肌标志物(平滑肌α肌动蛋白和h1-钙蛋白)的表达增加,但在不受约束的对照中则没有。定性评估表明,两种机械刺激的样品中胶原蛋白的产生均增加。与受约束的对照相比,拉伸样品中的增殖受到抑制。这项工作表明,大鼠BMPC在三维模型中受到生物机械刺激时,具有向平滑肌细胞样谱系分化的能力。约束样品引起BMPC变化的观察表明,单独施加压力可能具有刺激性,但增加周期性拉伸似乎会增强反应。

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