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RGD-mimic polyamidoamine-montmorillonite composites with tunable stiffness as scaffolds for bone tissue-engineering applications

机译:具有可调刚度的RGD模拟聚酰胺酰胺-蒙脱土复合材料作为骨组织工程应用的支架

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摘要

This paper reports on the development of montmorillonite (MMT)-reinforced hydrogels, based on a peptidomimetic polyamidoamine carrying guanidine pendants (AGMA1), as substrates for the osteo-induction of osteoblast precursor cells. AGMA1 hydrogels of various degrees of crosslinking responded favourably to MMT reinforcement, giving rise to composite hydrogels with shear storage modulus G′, when fully swollen in water, up to 200 kPa, i.e. 20 times higher than the virgin hydrogels and of the same order or higher than other hydrogel-based composites proposed for orthopaedic applications. This significant improvement was ascribed to the effective interpenetration between the polymer matrix and the inorganic filler. AGMA1–MMT hydrogels, when evaluated as scaffolds for the osteogenic differentiation of mouse calvaria-derived pre-osteoblastic MC3T3-E1 cells, proved able to support cell adhesion and proliferation and clearly induced differentiation towards the osteoblastic phenotype, as indicated by different markers. In addition, AGMA1–MMT hydrogels proved completely degradable in aqueous media at pH 7.4 and did not provide any evidence of cytotoxicity. The experimental evidence suggests that AGMA1–MMT composites definitely warrant potential as scaffolds for osteoblast culture and bone grafts.
机译:本文报道了蒙脱土(MMT)增强的水凝胶的开发,该凝胶基于带有胍基侧基(AGMA1)的拟肽聚酰胺酰胺,可作为成骨细胞诱导成骨前体细胞的基质。各种交联度的AGMA1水凝胶对MMT增强反应良好,当在水中完全溶胀时,会产生剪切储能模量为G'的复合水凝胶,最高可达200​​ kPa,即比原始水凝胶高20倍,并且具有相同的数量级或高于其他用于骨科应用的水凝胶基复合材料。该显着改善归因于聚合物基质与无机填料之间的有效互穿。 AGMA1-MMT水凝胶,当作为评估小鼠颅盖骨成骨前MC3T3-E1细胞成骨分化的支架时,被证明能够支持细胞粘附和增殖,并明显诱导成骨细胞表型的分化,如不同标记所示。此外,AGMA1-MMT水凝胶在pH 7.4的水性介质中被完全降解,没有提供任何细胞毒性的证据。实验证据表明,AGMA1-MMT复合材料绝对有潜力作为成骨细胞培养和骨移植的支架。

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