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3D culture of adult mouse neural stem cells within functionalized self-assembling peptide scaffolds

机译:功能化的自组装肽支架内的成年小鼠神经干细胞的3D培养

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摘要

Three-dimensional (3D) in vitro models of cell culture aim to fill the gap between the standard two-dimensional cell studies and the in vivo environment. Especially for neural tissue regeneration approaches where there is little regenerative capacity, these models are important for mimicking the extracellular matrix in providing support, allowing the natural flow of oxygen, nutrients, and growth factors, and possibly favoring neural cell regrowth. We have previously demonstrated that a new self-assembling nanostructured biomaterial, based on matrigel, was able to support adult neural stem cell (NSC) culture. In this study, we developed a new 3D cell culture system that takes advantage of the nano- and microfiber assembling process, under physiologic conditions, of these biomaterials. The assembled scaffold forms an intricate and biologically active matrix that displays specifically designed functional motifs: RGD (Arg-Gly-Asp), BMHP1 (bone marrow homing peptide 1), and BMHP2, for the culture of adult NSCs. These scaffolds were prepared at different concentrations, and microscopic examination of the cell-embedded scaffolds showed that NSCs are viable and they proliferate and differentiate within the nanostructured environment of the scaffold. Such a model has the potential to be tailored to develop ad hoc designed peptides for specific cell lines.
机译:细胞培养的三维(3D)体外模型旨在填补标准二维细胞研究与体内环境之间的空白。特别是对于再生能力很少的神经组织再生方法,这些模型对于模仿细胞外基质提供支持,允许氧气,营养物和生长因子的自然流动以及可能有利于神经细胞的再生非常重要。我们以前已经证明,一种基于基质胶的新型自组装纳米结构生物材料能够支持成人神经干细胞(NSC)培养。在这项研究中,我们开发了一种新的3D细胞培养系统,该系统在生理条件下利用了这些生物材料的纳米纤维和微纤维组装过程。组装好的支架形成一个复杂的生物活性基质,该基质具有专门设计的功能性基序:RGD(Arg-Gly-Asp),BMHP1(骨髓归巢肽1)和BMHP2,用于成人NSC的培养。这些支架以不同的浓度制备,并且对细胞包埋的支架的显微镜检查显示NSC是可行的,并且它们在支架的纳米结构环境中增殖和分化。这样的模型有可能被定制以开发用于特定细胞系的特别设计的肽。

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