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Adhesion, Vitality and Osteogenic Differentiation Capacity of Adipose Derived Stem Cells Seeded on Nitinol Nanoparticle Coatings

机译:镍钛诺纳米颗粒涂层上种子脂肪干细胞的粘附,活力和成骨分化能力。

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摘要

Autologous cells can be used for a bioactivation of osteoimplants to enhance osseointegration. In this regard, adipose derived stem cells (ASCs) offer interesting perspectives in implantology because they are fast and easy to isolate. However, not all materials licensed for bone implants are equally suited for cell adhesion. Surface modifications are under investigation to promote cytocompatibility and cell growth. The presented study focused on influences of a Nitinol-nanoparticle coating on ASCs. Possible toxic effects as well as influences on the osteogenic differentiation potential of ASCs were evaluated by viability assays, scanning electron microscopy, immunofluorescence and alizarin red staining. It was previously shown that Nitinol-nanoparticles exert no cell toxic effects to ASCs either in soluble form or as surface coating. Here we could demonstrate that a Nitinol-nanoparticle surface coating enhances cell adherence and growth on Nitinol-surfaces. No negative influence on the osteogenic differentiation was observed. Nitinol-nanoparticle coatings offer new possibilities in implantology research regarding bioactivation by autologous ASCs, respectively enhancement of surface attraction to cells.
机译:自体细胞可用于骨植入物的生物激活,以增强骨整合。在这方面,脂肪干细胞(ASC)提供了有趣的观点,因为它们快速且易于分离,因此在移植术中具有重要意义。但是,并非所有获准用于骨植入物的材料都同样适用于细胞粘附。正在研究表面修饰以促进细胞相容性和细胞生长。提出的研究集中于镍钛诺-纳米颗粒涂层对ASC的影响。通过可行性分析,扫描电子显微镜,免疫荧光和茜素红染色评估可能的毒性作用以及对ASCs成骨分化潜能的影响。先前显示,镍钛诺-纳米颗粒以可溶形式或表面涂层对ASC没有细胞毒性作用。在这里我们可以证明镍钛诺纳米颗粒表面涂层增强了镍钛诺表面上的细胞粘附和生长。没有观察到对成骨分化的负面影响。镍钛诺-纳米颗粒涂层在移植学研究中为自体ASC的生物激活(分别增强对细胞的表面吸引力)提供了新的可能性。

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