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Engineering alginate for intervertebral disc repair.

机译:工程藻酸盐用于椎间盘修复。

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Alginate is frequently studied as a scaffold for intervertebral disc (IVD) repair, since it closely mimics mechanical and cell-adhesive properties of the nucleus pulposus (NP) of the IVD. The aim of this study was to assess the relation between alginate concentration and scaffold stiffness and find preparation conditions where the viscoelastic behaviour mimics that of the NP. In addition, we measured the effect of variations in scaffold stiffness on the expression of extracellular matrix molecules specific to the NP (proteoglycans and collagen) by native NP cells. We prepared sample discs of different concentrations of alginate (1%-6%) by two different methods, diffusion and in situ gelation. The stiffness increased with increasing alginate concentration, while the loss tangent (dissipative behaviour) remained constant. The diffusion samples were ten-fold stiffer than samples prepared by in situ gelation. Sample discs prepared from 2% alginate by diffusion closely matched the stiffness and loss tangent of the NP. The stiffness of all samples declined upon prolonged incubation in medium, especially for samples prepared by diffusion. The biosynthetic phenotype of native cells isolated from NPs was preserved in alginate matrices up to 4 weeks of culturing. Gene expression levels of extracellular matrix components were insensitive to alginate concentration and corresponding matrix stiffness, likely due to the poor adhesiveness of the cells to alginate. In conclusion, alginate can mimic the viscoelastic properties of the NP and preserve the biosynthetic phenotype of NP cells but certain limitations like long-term stability still have to be addressed.
机译:海藻酸盐经常被研究为椎间盘(IVD)修复的支架,因为它紧密模仿IVD髓核(NP)的机械和细胞粘附特性。这项研究的目的是评估藻酸盐浓度与脚手架刚度之间的关系,并找到粘弹性行为模仿NP的制备条件。此外,我们测量了支架刚度变化对天然NP细胞特异于NP(蛋白聚糖和胶原蛋白)的细胞外基质分子表达的影响。我们通过两种不同的方法(扩散法和原位凝胶法)制备了不同浓度的藻酸盐(1%-6%)样品盘。刚度随藻酸盐浓度的增加而增加,而损耗角正切(耗散行为)保持恒定。扩散样品的硬度比原位凝胶制备的样品高十倍。由2%藻酸盐通过扩散制备的样品盘与NP的刚度和损耗角正切非常匹配。在培养基中长时间孵育后,所有样品的刚度均下降,尤其是对于通过扩散制备的样品。从NPs分离的天然细胞的生物合成表型在藻酸盐基质中保存长达4周。细胞外基质成分的基因表达水平对藻酸盐浓度和相应的基质硬度不敏感,这可能是由于细胞对藻酸盐的粘附性差所致。总之,藻酸盐可以模拟NP的粘弹性,并保留NP细胞的生物合成表型,但仍必须解决某些局限性,例如长期稳定性。

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