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首页> 外文期刊>RSC Advances >Influence of PCL molecular weight on mesenchymal stromal cell differentiation
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Influence of PCL molecular weight on mesenchymal stromal cell differentiation

机译:PCL分子量对间充质基质细胞分化的影响

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摘要

Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue engineering. A general strategy is to use a temporary scaffold in which cells are seeded onto the scaffold prior to implantation or attracted into the scaffold from surrounding tissues in the implantation site to form the desired tissue. Several biomaterials have been used for the fabrication of scaffolds, including polycaprolactone (PCL) which is often used for musculoskeletal tissue engineering. The effect of the PCL scaffold architecture on the cell behavior has been investigated. However, the mechanical properties of the bulk material were not taken into account in these studies. PCL is available in a range of molecular weights, resulting in a range of bulk mechanical properties. Since bulk material stiffness is able to direct cell differentiation, it is likely that the molecular weight of PCL may influence cell behavior. Here, we investigated the bulk material properties of both low and high molecular weight PCL scaffolds fabricated through additive manufacturing. The low molecular weight PCL showed a lower bulk material stiffness. During in vitro cell culture, this resulted in a stronger tendency for hypertrophic chondrogenic differentiation compared to the high molecular weight PCL. This study shows that apart from the polymer chemistry and scaffold architecture, the bulk mechanical properties of the polymer used is an important parameter in scaffold fabrication. This is an important finding for the optimization of osteochondral tissue engineering.
机译:再生或更换骨骼,骨髓和骨质细胞缺陷,是组织工程中的活性场。一般策略是使用临时支架,其中在将细胞在植入或吸引到植入部位中的周围组织中以形成所需的组织之前将细胞接种到支架上。几种生物材料已用于制造支架,包括通常用于肌肉骨骼组织工程的聚己内酯(PCL)。研究了PCL支架结构对细胞行为的影响。然而,在这些研究中,未考虑散装材料的机械性能。 PCL可在一系列分子量中获得,导致各种机械性能范围。由于散装材料刚度能够指导细胞分化,因此PCL的分子量可能会影响细胞行为。在这里,我们研究了通过添加剂制造制造的低和高分子量PCL支架的散装材料性质。低分子量PCL显示出较低的散装材料刚度。在体外细胞培养过程中,与高分子量PCL相比,这导致肥厚性软骨内分化的趋势较强。该研究表明,除了聚合物化学和支架架构外,所用聚合物的体积力学性能是支架制造的重要参数。这是优化骨质色组织工程的重要发现。

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