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Surface guidance of stem cell behavior: Chemically tailored co-presentation of integrin-binding peptides stimulates osteogenic differentiation in vitro and bone formation in vivo

机译:干细胞行为的表面指导:整合素结合肽的化学定制共同呈递促进体外骨形成的骨质发生分化

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摘要

Surface modification stands out as a versatile technique to create instructive biomaterials that are able to actively direct stem cell fate. Chemical functionalization of titanium has been used in this work to stimulate the differentiation of human mesenchymal stem cells (hMSCs) into the osteoblastic lineage, by covalently anchoring a synthetic double-branched molecule (PTF) to the metal that allows a finely controlled presentation of peptidic motifs. In detail, the effect of the RGD adhesive peptide and its synergy motif PHSRN is studied, comparing a random distribution of the two peptides with the chemically-tailored disposition within the custom made synthetic platform, which mimics the interspacing between the motifs observed in fibronectin. Contact angle measurement and XPS analysis are used to prove the efficiency of functionalization. We demonstrate that, by rationally designing ligands, stem cell response can be efficiently guided towards the osteogenic phenotype: In vitro, PTF-functionalized surfaces support hMSCs adhesion, with higher cell area and formation of focal contacts, expression of the integrin receptor a5ß1 and the osteogenic marker Runx2, and deposition a highly mineralized matrix, reaching values of mineralization comparable to fibronectin. Our strategy is also demonstrated to be efficient in promoting new bone growth in vivo in a rat calvarial defect. These results highlight the efficacy of chemical control over the presentation of bioactive peptides; such systems may be used to engineer bioactive surfaces with improved osseointegrative properties, or can be easily tuned to generate multi-functional coatings requiring a tailored disposition of the peptidic motifs.
机译:表面改性作为一种多功能技术,可以创造能够主动直接干细胞命运的有效生物材料。通过将合成的双支链分子(PTF)与金属共价锚固到肽呈肽的金属,钛的化学官能化用于刺激人间充质干细胞(HMSCs)的分化为骨细胞谱系。主题。详细地,研究了RGD粘合剂肽及其协同基质PHSRN的效果,比较了两种肽的随机分布与定制的合成平台内的化学定制配置,其模仿在纤维连接蛋白中观察到的基序之间的间隙。接触角测量和XPS分析用于证明功能化的效率。我们证明,通过合理设计配体,可以有效地引导干细胞反应朝向骨质发生表型:在体外,PTF官能化表面支持HMSCs粘附,具有更高的细胞面积和焦蛋白接触的形成,整联受体A5ß1和形成成骨标记物RUNX2,并沉积高矿化基质,达到与纤连蛋白相当的矿化的值。我们的策略还表明在大鼠颅缺陷中促进体内新的骨生长有效。这些结果突出了化学控制对生物活性肽呈递的功效;这种系统可用于工程与改善的骨整容性质的生物活性表面,或者可以容易地调节以产生需要定制肽图案的多功能涂层。

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