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Engineered cartilage constructs subject to very low regimens of interstitial perfusion

机译:工程软骨构建体的间质灌注方案非常低

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We have studied an in vitro engineered cartilage model, consisting of bovine articular chondrocytes seeded on micro-porous scaffolds and perfused with very low regimens of interstitial flow. Our previous findings suggested that synthesis of sulphated glycosaminoglycans (sGAG) was promoted in this model, if the level of shear generated on cells was maintained below 10 mPa (0.1 dyn/cm~2). Constructs were stimulated with a median shear stress of 1.2 and 6.7 mPa using two independent culture chambers. Quantification of the applied stresses and of oxygen consumption rates was obtained from computational modelling. Experimentally, we set a time zero reference at 24 hours after cell seeding and total culture time at two weeks. The cell metabolic activity, measured by MTT, was significantly lower in all constructs at two weeks (-73% in static controls, -66% in the 1.2 mPa group and -60% in the 6.7 mPa group) vs. the time zero group, and significantly higher (+33%) in the 7 mPa group vs. static controls. The ratio between synthesis of collagen type II/type 1, measured by Western Blot, was significantly higher in the 1.2 mPa constructs (+109% vs. the 6.7 mPa group. +120% vs. the time zero group and +286% vs. static controls). A trend of decreased α-actin expression was observed with increased ratio of type II to type I collagen, in all groups. These results reinforce the notion that, at early time points in culture, hydrodynamic shear below 10 mPa may promote formation of extra-cellular matrix specific to hyaline cartilage in chondrocyte-seeded constructs.
机译:我们研究了一种体外工程软骨模型,该模型由接种在微孔支架上的牛关节软骨细胞组成,并灌注了非常低的间质流方案。我们以前的发现表明,如果在细胞上产生的剪切水平保持在10 mPa(0.1 dyn / cm〜2)以下,则在该模型中可以促进硫酸化糖胺聚糖(sGAG)的合成。使用两个独立的培养室以1.2和6.7 mPa的平均剪切应力刺激构建体。施加应力和耗氧率的量化是通过计算建模获得的。实验上,我们将细胞接种后的24小时设为零时间参考,并将总培养时间设为两周。与零时区相比,MTT测量的细胞代谢活性在两周内在所有构建体中均显着降低(静态对照组为-73%,1.2 mPa组为-66%,6.7 mPa组为-60%)。 ,与静态对照组相比,在7 mPa组中明显更高(+ 33%)。在1.2 mPa的构建体中,通过Western Blot测量的II型/ 1型胶原蛋白合成之间的比率显着更高(+ 109%vs. 6.7 mPa组; + 120%vs.时间零组; + 286%vs.静态控件)。在所有组中,随着II型胶原蛋白与I型胶原蛋白的比率增加,观察到α-肌动蛋白表达降低的趋势。这些结果强化了这样的观念,即在培养的早期时间点,低于10 mPa的流体动力剪切可能会促进软骨细胞播种构建物中透明软骨透明的细胞外基质的形成。

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