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首页> 外文期刊>Acta biomaterialia >Modular peptides promote human mesenchymal stem cell differentiation on biomaterial surfaces.
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Modular peptides promote human mesenchymal stem cell differentiation on biomaterial surfaces.

机译:模块化肽促进生物材料表面上的人间充质干细胞分化。

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摘要

Molecular design strategies in biomedical applications often involve creating modular "fusion" proteins, in which distinct domains within a single molecule can perform multiple functions. We have synthesized a new class of modular peptides that include a biologically active sequence derived from the growth factor BMP-2 and a series of hydroxyapatite-binding sequences inspired by the N-terminal alpha-helix of osteocalcin. These modular peptides can bind in a sequence-dependent manner to the surface of "bone-like" hydroxyapatite coatings, which are nucleated and grown on a biodegradable polymer surface via a biomimetic process. The BMP-2-derived sequence of the modular peptides is biologically active, as measured by its ability to promote osteogenic differentiation of human mesenchymal stem cells. Our study indicates that the modular peptides described here are multifunctional, and the characteristics of this approach suggest that it can potentially be applied to a range of biomaterials for regenerative medicine applications.
机译:生物医学应用中的分子设计策略通常涉及创建模块化的“融合”蛋白,其中单个分子内的不同结构域可以执行多种功能。我们已经合成了一类新型的模块化肽,包括从生长因子BMP-2衍生的生物活性序列和一系列受骨钙素N末端α-螺旋激发的羟基磷灰石结合序列。这些模块肽可以以序列依赖性的方式结合至“骨样”羟基磷灰石涂层的表面,该涂层成核并通过仿生过程在可生物降解的聚合物表面上生长。 BMP-2衍生的模块化肽序列具有生物活性,通过其促进人间充质干细胞成骨分化的能力来衡量。我们的研究表明,此处描述的模块化肽具有多功能性,这种方法的特点表明它可以潜在地应用于一系列再生医学应用的生物材料。

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