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首页> 外文期刊>Acta biomaterialia >Autonomous osteogenic differentiation of hASCs encapsulated in methacrylated gellan-gum hydrogels
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Autonomous osteogenic differentiation of hASCs encapsulated in methacrylated gellan-gum hydrogels

机译:甲基丙烯酸凝胶兰胶水凝胶中封装的hASCs的自主成骨分化。

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摘要

Methacrylated gellan-gum (GG-MA) alone and combined with collagen type I (Coll) is suggested here for the first time as a cell-laden injectable biomaterial for bone regeneration. On-chip high-throughput studies allowed rapidly assessing the suitability of 15 biomaterials/media combinations for the osteodifferentiation of human adipose stem cells (hASCs). Hydrogels composed solely of GG-MA (GG100:OColl) led hASCs from three different donors into the osteogenic lineage after 21 days of cell culture, in the absence of any osteogenic or osteoconductive factors. Hydrogels containing more than 30% of Coll promoted increased cellular proliferation and led hASCs into osteogenic differentiation under basal conditions. Studies using isolated individual hydrogels - excluding eventual on-chip crosstalk - and standard biochemical assays corroborated such findings. The formation of focal adhesions of hASCs on GG100:0Coll hydrogels was verified. We hypothesize that the hydrogels osteogenic effect could be guided by mechanotransduction phenomena. Indeed, the hydrogels showed elastic modulus in ranges previously reported as osteoinductive and the inhibition of the actin -myosin contractility pathway impaired hASCs' osteodifferentiation. GG-MA hydrogels also did not promote hASCs' adipogenesis while used in basal conditions. Overall, GG-MA showed promising properties as an innovative and off-the shelf self-inducing osteogenic injectable biomaterial.
机译:在此首次建议单独使用甲基丙烯酸化的结冷胶(GG-MA)并与I型胶原(Coll)结合使用,作为载有细胞的可注射生物材料进行骨再生。芯片上的高通量研究可以快速评估15种生物材料/培养基组合对人脂肪干细胞(hASCs)骨分化的适用性。细胞培养21天后,在没有任何成骨或骨传导因子的情况下,仅由GG-MA(GG100:OColl)组成的水凝胶将来自三个不同供体的hASC引入成骨细胞系。在基础条件下,含有超过30%的Coll的水凝胶可促进细胞增殖,并使hASC分化为成骨细胞。使用分离的单个水凝胶进行的研究(不包括最终的芯片串扰)和标准生化分析证实了这一发现。验证了hASCs在GG100:0Coll水凝胶上的粘着斑形成。我们假设水凝胶成骨作用可以由机械转导现象指导。实际上,水凝胶显示出先前报道为骨诱导性的范围内的弹性模量,并且肌动蛋白-肌球蛋白收缩途径的抑制损害了hASCs的骨分化。在基础条件下使用时,GG-MA水凝胶也不会促进hASCs的脂肪生成。总体而言,GG-MA作为一种创新的,现成的自诱导成骨性可注射生物材料显示出令人鼓舞的特性。

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