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Three-dimensional bone tissue substitute based on a human mesenchymal stem cell culture on a nanofiber carrier and inorganic matrix

机译:基于人间充质干细胞在纳米纤维载体和无机基质上培养的三维骨组织替代物

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The aim was to construct a composite structure for bone tissue substitute on the basis of a degradable composite of an organic nanofiber carrier and an inorganic matrix in 3D, and to achieve subsequent colonisation by differentiated human mesenchymal stem cells (hMSC) towards osteocytes. We developed an active bone tissue substitute using nanofiber technology for a polycaprolactone (PCL) scaffold with the addition of hydroxyapatite and the colonisation of both components with hMSC with the ability of differentiation towards osteocytes. The constructed composition included the components necessary for bone healing (inorganic and cellular) and it also forms a spatially-oriented 3D structure. We used polycaprolactone Mw 70,000 with electrostatic spinning for the formation of nanofibers using a modified Nanospider (TM) method. For the inorganic component we used orthophosphate-calcium silicate with a crystal size of 1-2 mm which the nanofiber membrane was coated with. Both components were connected together with a tissue adhesive based of fibrin glue. Cultivated hMSC cells at a concentration of 1.2 x 10(4)/cm(2) were multiplied in vitro and then cultivated in the expansion medium. HMSC overgrew both the PCL membrane and the Si-CaP crystals. After colonisation with cultivated cells, this composite 3D structure can serve as a three-dimensional bone tissue replacement.
机译:目的是在有机纳米纤维载体和无机基质的3D可降解复合材料的基础上构建用于骨组织替代的复合结构,并通过分化的人间充质干细胞(hMSC)向骨细胞实现随后的定殖。我们使用纳米纤维技术开发了一种活性骨组织替代物,用于聚己内酯(PCL)支架,添加了羟基磷灰石,并用hMSC对这两种成分进行了定殖,并具有向骨细胞分化的能力。所构造的组合物包括骨骼愈合所必需的成分(无机和细胞),并且还形成了空间定向的3D结构。我们使用聚己内酯Mw 70,000进行静电纺丝,使用改进的Nanospider(TM)方法形成纳米纤维。对于无机组分,我们使用晶体大小为1-2 mm的正磷酸盐-硅酸钙,纳米纤维膜被涂层。两种成分都使用基于纤维蛋白胶的组织粘合剂连接在一起。将浓度为1.2 x 10(4)/ cm(2)的hMSC细胞体外繁殖,然后在扩增培养基中培养。 HMSC覆盖了PCL膜和Si-CaP晶体。用培养的细胞定植后,此复合3D结构可以用作三维骨组织替代物。

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