首页> 美国卫生研究院文献>Stem Cells International >Effect of Uniaxial Tensile Cyclic Loading Regimes on Matrix Organization and Tenogenic Differentiation of Adipose-Derived Stem Cells Encapsulated within 3D Collagen Scaffolds
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Effect of Uniaxial Tensile Cyclic Loading Regimes on Matrix Organization and Tenogenic Differentiation of Adipose-Derived Stem Cells Encapsulated within 3D Collagen Scaffolds

机译:单轴拉伸循环加载方式对包裹在3D胶原蛋白支架中的脂肪干细胞基质组织和张力分化的影响

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摘要

Adipose-derived mesenchymal stem cells have become a popular cell choice for tendon repair strategies due to their relative abundance, ease of isolation, and ability to differentiate into tenocytes. In this study, we investigated the solo effect of different uniaxial tensile strains and loading frequencies on the matrix directionality and tenogenic differentiation of adipose-derived stem cells encapsulated within three-dimensional collagen scaffolds. Samples loaded at 0%, 2%, 4%, and 6% strains and 0.1 Hz and 1 Hz frequencies for 2 hours/day over a 7-day period using a custom-built uniaxial tensile strain bioreactor were characterized in terms of matrix organization, cell viability, and musculoskeletal gene expression profiles. The results displayed that the collagen fibers of the loaded samples exhibited increased matrix directionality with an increase in strain values. Gene expression analyses demonstrated that ASC-encapsulated collagen scaffolds loaded at 2% strain and 0.1 Hz frequency showed significant increases in extracellular matrix genes and tenogenic differentiation markers. Importantly, no cross-differentiation potential to osteogenic, chondrogenic, and myogenic lineages was observed at 2% strain and 0.1 Hz frequency loading condition. Thus, 2% strain and 0.1 Hz frequency were identified as the appropriate mechanical loading regime to induce tenogenic differentiation of adipose-derived stem cells cultured in a three-dimensional environment.
机译:脂肪来源的间充质干细胞由于其相对丰富,易于分离以及分化为肌腱细胞的能力,已成为肌腱修复策略的常用细胞选择。在这项研究中,我们调查了不同的单轴拉伸应变和加载频率对封装在三维胶原蛋白支架中的脂肪干细胞的基质方向性和腱分化的独奏影响。使用定制的单轴拉伸应变生物反应器,以定制的单轴拉伸应变生物反应器在7天的时间内以2%/天的频率分别加载0%,2%,4%和6%应变以及0.1 Hz和1 Hz频率的样品,其特征在于基质的组织,细胞生存力和肌肉骨骼基因表达谱。结果表明,加载样品的胶原纤维显示出随着应变值的增加而增加的基质方向性。基因表达分析表明,以2%应变和0.1 Hz频率加载的ASC封装的胶原蛋白支架在细胞外基质基因和肌腱分化标志物中的表达显着增加。重要的是,在2%应变和0.1?Hz频率加载条件下,未观察到与成骨,成软骨和成肌谱系的交叉分化潜能。因此,2%的应变和0.1?Hz的频率被确定为诱导在三维环境中培养的脂肪干细胞向肌腱分化的合适的机械加载方式。

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