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Geometric confinement is required for recovery and maintenance of chondrocyte phenotype in alginate

机译:需要几何限制以恢复和维持藻酸盐中软骨细胞表型

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摘要

Human articular chondrocytes lose their native phenotype when expanded in traditional monolayer cultures. As a consequence, hydrogel encapsulation has been investigated as a means to maintain the natural phenotype. Alginate has been widely used for cartilage engineering as it has been shown to enable the recovery of a native collagen type II expressing chondrocyte phenotype. This study has evaluated whether the capacity of the materials to maintain/revert the phenotype is due to the composition of the material or the physical entrapment provided by the gel. To achieve this, an alginate “fluid gel” (a shear-thinning structured gel system) was produced of identical chemistry to a traditionally gelled alginate structure. Both were seeded with passaged primary human articular chondrocytes. Chondrocytes in quiescent alginate showed the recovery of the native phenotype and a spherical morphology. Chondrocytes in alginate fluid gel were unable to maintain the recovered phenotype despite having a spherical morphology and were shown to have a lower level of entrapment than those in quiescent alginate. These findings indicate that geometric entrapment is essential for the maintenance of a recovered chondrocyte phenotype in alginate.
机译:当在传统单层培养物中扩增时,人关节软骨细胞会失去其天然表型。结果,已经研究了水凝胶包封作为维持天然表型的手段。海藻酸盐已被广泛用于软骨工程,因为它已被证实能够恢复表达天然II型胶原的软骨细胞表型。这项研究评估了材料保持/恢复表型的能力是由于材料的组成还是由凝胶提供的物理包埋。为此,生产了化学性质与传统胶凝藻酸盐结构相同的藻酸盐“流体凝胶”(剪切稀化结构化凝胶系统)。两者均接种有传代的人关节软骨细胞。静止藻酸盐中的软骨细胞显示出天然表型的恢复和球形形态。尽管具有球形形态,藻酸盐液体凝胶中的软骨细胞仍不能维持恢复的表型,并且显示出比静态藻酸盐中的软骨细胞更低的截留水平。这些发现表明几何截留对于维持藻酸盐中恢复的软骨细胞表型至关重要。

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