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首页> 外文期刊>ASAIO journal >Orbital Shear Stress Regulates Differentiation and Barrier Function of Primary Renal Tubular Epithelial Cells
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Orbital Shear Stress Regulates Differentiation and Barrier Function of Primary Renal Tubular Epithelial Cells

机译:轨道剪切应力调节原代肾小管上皮细胞的分化和屏障功能

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摘要

Primary cells cultured in vitro gradually lose features characteristic of the in vivo phenotype. Culture techniques that help maintain cell-specific phenotype are advantageous for development of tissue engineered and bioartificial organs. Here we evaluated the phenotype of primary human renal tubular epithelial cells subjected to fluid shear stress by culturing the cells on an orbital shaker. Transepithelial electrical resistance (TEER), cell density, and gene and protein expression of proximal tubule-specific functional markers were measured in cells subjected to orbital shear stress. Cells cultured on an orbital shaker had increased TEER, higher cell density, and enhanced tubular epithelial specific gene and protein expression. This is likely due at least in part to the mechanical stress applied to the apical surface of the cells although other factors including increased nutrient and oxygen delivery and improved mixing could also play a role. These results suggest that orbital shaker culture may be a simple approach to augmenting the differentiated phenotype of cultured renal epithelial cells.
机译:在体外培养的原代细胞逐渐丧失体内表型特征。有助于维持细胞特异性表型的培养技术是有利于组织工程和生物人工官的发展。在这里,我们通过在轨道振荡器上培养细胞来评估对流体剪切应力进行流体剪切应力的原发性人肾小管上皮细胞的表型。在经受眶剪应力的细胞中测量近端小管特异性官能标记物的TRANSEPITHELIAL电阻(TEER),细胞密度和基因和蛋白表达。在轨道振动器上培养的细胞具有增加的人权,更高的细胞密度和增强的管状上皮特异性基因和蛋白质表达。这可能至少部分地由于施加到细胞的顶端表面的机械应力,尽管包括增加的营养和氧递送和改进的混合等其他因素也可能起到作用。这些结果表明,轨道振荡器培养可能是增强培养的肾上皮细胞的分化表型的简单方法。

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