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Osteogenic potential of human adipose-tissue derived mesenchymal stromal cells cultured on 3D-printed porous structured titanium

机译:在3D打印的多孔结构钛上培养的人脂肪组织间充质基质细胞的成骨潜能

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摘要

Integration of porous metal prosthetics, which restore form and function of irreversibly damaged joints, into remaining healthy bone is critical for implant success. We investigated the biological properties of adipose-tissue derived mesenchymal stromal/stem cells (AMSCs) and addressed their potential to alter the in vitro microenvironment of implants. We employed human AMSCs as a practical source for musculoskeletal applications, because these cells can be obtained in large quantities, are multipotent, and have trophic paracrine functions. AMSCs were cultured on surgical-grade porous titanium discs as a model for orthopedic implants. We monitored cell/substrate attachment, cell proliferation, multipotency, and differentiation phenotypes of AMSCs upon osteogenic induction. High-resolution scanning electron microscopy and histology revealed that AMSCs adhere to the porous metallic surface. Compared to standard tissue culture plastic, AMSCs grown in the porous titanium microenvironment showed differences in temporal expression for genes involved in cell cycle progression (CCNB2, HIST2H4), extracellular matrix production (COL1A1, COL3A1), mesenchymal lineage identity (ACTA2, CD248, CD44), osteoblastic transcription factors (DLX3, DLX5, ID3) and epigenetic regulators (EZH1, EZH2). We conclude that metal orthopedic implants can be effectively seeded with clinical-grade stem/stromal cells to create a pre-conditioned implant.
机译:将多孔金属假体(可恢复受损关节的形态和功能)恢复为健康的骨骼对于成功植入至关重要。我们调查了脂肪组织来源的间充质基质/干细胞(AMSCs)的生物学特性,并探讨了其改变植入物体外微环境的潜力。我们采用人类AMSC作为肌肉骨骼应用的实用来源,因为这些细胞可以大量获得,多能性并具有营养性旁分泌功能。将AMSC培养在外科手术级多孔钛盘上,作为骨科植入物的模型。我们监测了成骨诱导后AMSCs的细胞/基质附着,细胞增殖,多能性和分化表型。高分辨率扫描电子显微镜和组织学显示,AMSCs粘附在多孔金属表面上。与标准组织培养塑料相比,在多孔钛微环境中生长的AMSC在参与细胞周期进程的基因(CCNB2,HIST2H4),细胞外基质产生(COL1A1,COL3A1),间充质谱系同一性(ACTA2,CD248,CD44)的时间表达上存在差异),成骨细胞转录因子(DLX3,DLX5,ID3)和表观遗传调控因子(EZH1,EZH2)。我们得出的结论是,金属整形外科植入物可以有效地植入临床级干/基质细胞,以创建预处理植入物。

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