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Maximizing cartilage formation and integration via a trajectory-based tissue engineering approach

机译:通过基于轨迹的组织工程方法最大限度地提高软骨形成和整合

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摘要

Given the limitations of current surgical approaches to treat articular cartilage injuries, tissue engineering (TE) approaches have been aggressively pursued. Despite reproduction of key mechanical attributes of native tissue, the ability of TE cartilage constructs to integrate with native tissue must also be optimized for clinical success. In this paper, we propose a “trajectory-based” tissue engineering (TB-TE) approach, based on a hypothesis that time-dependent increases in construct maturation in-vitro prior to implantation (i.e. positive rates) may provide a reliable predictor of in-vivo success. As an example TE system, we utilized hyaluronic acid hydrogels laden with mesenchymal stem cells. We first modeled the maturation of these constructs in-vitro to capture time-dependent changes. We then performed a sensitivity analysis of the model to optimize the timing and amount of data collection. Finally, we showed that integration to cartilage in-vitro is not correlated to the maturation state of TE constructs, but rather their maturation rate, providing a proof-of-concept for the use of TB-TE to enhance treatment outcomes following cartilage injury. This new approach challenges the traditional TE paradigm of matching only native state parameters of maturity and emphasizes the importance of also establishing an in-vitro trajectory in constructs in order to improve the chance of in-vivo success.
机译:考虑到当前用于治疗关节软骨损伤的外科手术方法的局限性,已经积极地进行了组织工程(TE)方法。尽管天然组织的关键机械属性得以再现,但TE软骨构建体与天然组织整合的能力也必须进行优化以取得临床成功。在本文中,我们提出了一种“基于轨迹”的组织工程(TB-TE)方法,该假设基于以下假设:植入前体外成熟时间的时间依赖性增加(即阳性率)可能提供可靠的预测指标。体内成功。作为一个示例性的TE系统,我们利用了充填了间充质干细胞的透明质酸水凝胶。我们首先在体外对这些构建体的成熟进行建模,以捕获随时间变化的变化。然后,我们对该模型进行了敏感性分析,以优化数据收集的时机和数量。最后,我们证明了体外整合到软骨与TE构建体的成熟状态无关,而是与它们的成熟率相关,这为使用TB-TE增强软骨损伤后的治疗结果提供了概念验证。这种新方法对仅匹配成熟状态参数的传统TE范式提出了挑战,并强调了在构建物中建立体外轨迹以提高体内成功机会的重要性。

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