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Characterization of Gelatin Composite with Low Content Hydroxyapatite and the Influence on Mesenchymal Stem Cell Culture

机译:低含量羟基磷灰石明胶复合材料的特征及对间充质干细胞培养的影响

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In tissue engineering, hydrogel-based scaffold is one of the most common method for bone tissue engineering. Gelatin is a common material for scaffold, whereas hydroxyapatite (HA) has a similar composition and structure to natural bone mineral. HA can also increase cell adhesion ability of the scaffold. This research focuses on the fabrication of hydrogel scaffolds using gelatin composite with nanocrystalline hydroxyapatite (nHA). Then the mechanical and physical caharacteristics of the scaffold is investigetad. Low contents nHA is introduced into gelatin in order to modulate mesenchymal stem cell (MSC) behavior. There are three types of scaffolds which contain various HA content. The gelatin is crosslinked with glutaraldehyde before freeze-drying. The Young's modulus of the surface is investigated using Atomic force microscopy (AFM). The pore size is investigated using scanning electron microscope (SEM). Human MSCs are culture on the scaffold for 3 weeks. The result shows the sucesse in cell cultivation. However, the human MSCs cultured on the fabricated hydrogels do not show any lineage-specific differentiation.
机译:在组织工程中,水凝胶基支架是骨组织工程最常见的方法之一。明胶是支架的常见材料,而羟基磷灰石(HA)对天然骨矿物质具有类似的组成和结构。 HA还可以增加支架的细胞粘附能力。本研究侧重于使用明胶复合材料与纳米晶羟基磷灰石(NHA)的制备水凝胶支架。然后脚手架的机械和物理Caharacteristics是侦查。将低含量NHA引入明胶中以调节间充质干细胞(MSC)行为。有三种类型的支架含有各种HA含量。在冷冻干燥之前,明胶与戊二醛交联。使用原子力显微镜(AFM)研究了表面的杨氏模量。使用扫描电子显微镜(SEM)研究孔径。人体MSC在脚手架上培养3周。结果表明了细胞培养中的成功。然而,在制造的水凝胶上培养的人体MSC不会显示任何谱系特异性分化。

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