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Mechanical conditioning of cell-seeded small intestine submucosa: a potential tissue-engineering strategy for tendon repair.

机译:机械接种的种子小肠粘膜下层细胞的机械调节:肌腱修复的潜在组织工程策略。

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Our long-term objective is to enhance tendon repair by delivering cells on natural biologic scaffolds to the repair site. Clinical outcomes may be improved by first preconditioning these cell-seeded constructs in bioreactors to enhance their properties at implantation and to deliver cells expressing a desired phenotype. In this work, we have investigated the effect of in vitro mechanical conditioning on small-intestine submucosa (SIS) scaffolds seeded with primary tendon cells (tenocytes). SIS scaffolds (with and without cells) were conditioned under various loading regimes over a 2-week period. In vitro cyclic loading significantly increased the biomechanical properties (e.g., stiffness) of cell-seeded SIS constructs (129.1 +/- 10.2%) from time 0. The stiffness change of cyclically loaded constructs without cells was 33.9 +/- 13.8% and of statically loaded constructs with cells was 34.0 +/- 15.2% and without cells was 33.4 +/- 10.7%. In the cell-seeded groups, our data demonstrate a direct role (e.g.,cell tensioning) for cells in construct stiffening. In addition, the initial stiffness of the cell-seeded, cyclically loaded constructs was found to be a strong predictor of the change in construct stiffness. Despite the mechanical integrity of these constructs being significantly less than native tendon, our data show that structural properties can be improved with in vitro mechanical conditioning. These data provide the basis for future studies investigating in vitro conditioning (mechanical, chemical) of cell-seeded ECM scaffolds and the use of such constructs for enhancing tendon repair in vivo.
机译:我们的长期目标是通过将天然生物支架上的细胞递送到修复部位来增强肌腱修复。通过首先在生物反应器中预处理这些细胞接种的构建体,以增强其在植入时的特性并传递表达所需表型的细胞,可以改善临床效果。在这项工作中,我们已经研究了体外机械调节对接种有初级肌腱细胞(肌腱细胞)的小肠粘膜下层(SIS)支架的影响。 SIS支架(有和没有细胞)在2周的时间内在各种加载方案下进行处理。从时间0开始,体外循环加载显着提高了细胞播种SIS构建体的生物力学性能(例如,刚度)(129.1 +/- 10.2%)。无细胞的循环加载构建体的刚度变化为33.9 +/- 13.8%,而自带细胞的静态加载构建体为34.0 +/- 15.2%,不含细胞的静态加载构建体为33.4 +/- 10.7%。在播种细胞的组中,我们的数据证明了细胞在构建体硬化中的直接作用(例如,细胞张紧)。另外,发现细胞接种的,周期性加载的构建体的初始刚度是构建体刚度变化的强烈预测指标。尽管这些结构的机械完整性明显低于天然肌腱,但我们的数据表明,通过体外机械调节可以改善结构性能。这些数据为将来研究细胞接种的ECM支架的体外调节(机械,化学)以及此类构建体在体内增强肌腱修复中的用途提供了基础。

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