首页> 外文期刊>Tissue engineering, Part A >Osteoblasts on rod shaped hydroxyapatite nanoparticles incorporated PCL film provide an optimal osteogenic niche for stem cell differentiation.
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Osteoblasts on rod shaped hydroxyapatite nanoparticles incorporated PCL film provide an optimal osteogenic niche for stem cell differentiation.

机译:棒状羟基磷灰石纳米颗粒的成骨细胞掺入PCL薄膜为干细胞分化提供了一种最佳的骨质骨质骨质。

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After the clinical insertion of a bone biomaterial, the surrounding osteoblasts would migrate and attach to the implant surface and foster a microenvironment that largely determines the differentiation fate of the comigrated mesenchymal stem cells. Whether the fostered microenvironment is suitable for osteogenic differentiation of mesenchymal stem cells is critical for the subsequent osseointegration. In this study, we determined (1) how the spherical or rod-shaped hydroxyapatite nanoparticles (nHA) incorporated poly(varepsilon-caprolactone) (PCL) films (PCL-spherical nHA, PCL-rod nHA) interact with primary human osteoblasts (HOBs); (2) how the microenvironment rendered by their interaction affects osteogenic differentiation of adipose tissue-derived mesenchymal stem cells (ASCs). HOBs were seeded on PCL, PCL-spherical nHA, and PCL-rod nHA films, respectively. When cultured alone, the HOBs on PCL-rod nHA films showed most efficient osteoblastic differentiation compared with those on PCL or PCL-spherical nHA films. When cocultured with ASCs in an indirect coculture system, only the HOBs on PCL-rod nHA films up-regulated the gene expression of Runx2, bone sialoprotein, and osteocalcin of ASCs. Additionally, the HOBs on PCL-rod nHA films showed significant up-regulation of bone morphogenic protein 2 gene and protein expression and induced highest phosphorylated Smad1/5 protein level in ASCs. Treatment of the coculture medium with bone morphogenic protein 2 inhibitor (Noggin) largely abolished the osteogenic differentiation of the ASCs induced by the HOBs on PCL-rod nHA films. In conclusion, HOBs can not only best display their osteoblastic phenotype by culturing on PCL-rod nHA films but also render an optimal osteogenic niche for the differentiation of stem cells.
机译:在临床插入骨生物材料之后,周围的成骨细胞将迁移并连接到植入物表面并培养微环境,其在很大程度上决定了分解性干细胞的分化命运。培养的微环境适用于间充质干细胞的成骨分化对于随后的骨整合至关重要。在这项研究中,我们确定了(1)球形或棒状羟基磷灰石纳米颗粒(NHA)掺入的聚(疣氏 - 己内酯)(PCL)膜(PCL - 球形NHA,PCL杆NHA)与原发性人骨盆(滚刀)相互作用(滚刀); (2)通过它们的相互作用所呈现的微环境如何影响脂肪组织衍生的间充质干细胞(ASCS)的成骨分化。滚刀分别在PCL,PCL - 球形NHA和PCL-棒NHA膜上接种。单独培养时,与PCL或PCL-球形NHA薄膜相比,PCL杆NHA薄膜上的滚刀显示出最有效的骨赘分化。当在间接共培养系统中与ASC携带,只有PCL-ROD NHA薄膜上的滚刀上调了runx2,骨唾液蛋白和ascs的骨钙蛋白的基因表达。另外,PCL-棒NHA薄膜的滚刀显示出对骨形态发生蛋白2基因和蛋白质表达的显着上调,并在ASC中诱导最高的磷酸化SMAD1 / 5蛋白水平。用骨形态发生蛋白2抑制剂(Noggin)的培养基治疗主要取消了由PCL杆NHA膜上滚刀诱导的ASC的成沸分化。总之,滚刀不能通过培养在PCL杆NHA薄膜上最好地显示其骨细胞表型,而且还可以为干细胞的分化而导致最佳的骨质骨质骨质。

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