Betriu Nausika, Recha-Sancho Lourdes, Semino Carlos E
Tissue Engineering Research Laboratory, Department of Bioengineering, IQS-School of Engineering, Ramon Llull University.
Tissue Engineering Research Laboratory, Department of Bioengineering, IQS-School of Engineering, Ramon Llull University; Hebe Biolab;
J Vis Exp. 2018 Jun 13(136):57259. doi: 10.3791/57259.
A useful technique for culturing cells in a self-assembling nanofiber three-dimensional (3D) scaffold is described. This culture system recreates an environment that closely mimics the structural features of non-polarized tissue. Furthermore, the particular intrinsic nanofiber structure of the scaffold makes it transparent to visual light, which allows for easy visualization of the sample under microscopy. This advantage was largely used to study cell migration, organization, proliferation, and differentiation and thus any development of their particular cellular function by staining with specific dyes or probes. Furthermore, in this work, we describe the good performance of this system to easily study the redifferentiation of expanded human articular chondrocytes into cartilaginous tissue. Cells were encapsulated into self-assembling peptide scaffolds and cultured under specific conditions to promote chondrogenesis. Three-dimensional cultures showed good viability during the 4 weeks of the experiment. As expected, samples cultured with chondrogenic inducers (compared to non-induced controls) stained strongly positive for toluidine blue (which stains glycosaminoglycans (GAGs) that are highly present in cartilage extracellular matrix) and expressed specific molecular markers, including collagen type I, II and X, according to Western Blot analysis. This protocol is easy to perform and can be used at research laboratories, industries and for educational purposes in laboratory courses.
本文描述了一种在自组装纳米纤维三维(3D)支架中培养细胞的有用技术。该培养系统重现了一个紧密模拟非极化组织结构特征的环境。此外,支架独特的固有纳米纤维结构使其对可见光透明,这便于在显微镜下轻松观察样品。这一优势在很大程度上被用于研究细胞迁移、组织、增殖和分化,以及通过用特定染料或探针染色来研究其特定细胞功能的任何发育情况。此外,在这项工作中,我们描述了该系统在轻松研究扩增的人关节软骨细胞向软骨组织再分化方面的良好性能。将细胞封装到自组装肽支架中,并在特定条件下培养以促进软骨形成。三维培养物在4周的实验期间显示出良好的活力。正如预期的那样,与未诱导的对照相比,用软骨形成诱导剂培养的样品对甲苯胺蓝(其可染色软骨细胞外基质中高度存在的糖胺聚糖(GAG))呈强阳性染色,并且根据蛋白质免疫印迹分析表达特定的分子标记,包括I型、II型和X型胶原蛋白。该方案易于实施,可用于研究实验室、工业以及实验室课程的教学目的。