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Effect of the 3D Artificial Nichoid on the Morphology and Mechanobiological Response of Mesenchymal Stem Cells Cultured In Vitro

机译:3D人工硫代肌肌的效果对体外培养的间充质干细胞形态和力学响应的影响

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摘要

Stem cell fate and behavior are affected by the bidirectional communication of cells and their local microenvironment (the stem cell niche), which includes biochemical cues, as well as physical and mechanical factors. Stem cells are normally cultured in conventional two-dimensional monolayer, with a mechanical environment very different from the physiological one. Here, we compare culture of rat mesenchymal stem cells on flat culture supports and in the “Nichoid”, an innovative three-dimensional substrate micro-engineered to recapitulate the architecture of the physiological niche . Two versions of the culture substrates Nichoid (single-layered or “2D Nichoid” and multi-layered or “3D Nichoid”) were fabricated via two-photon laser polymerization in a biocompatible hybrid organic-inorganic photoresist (SZ2080). Mesenchymal stem cells, isolated from rat bone marrow, were seeded on flat substrates and on 2D and 3D Nichoid substrates and maintained in culture up to 2 weeks. During cell culture, we evaluated cell morphology, proliferation, cell motility and the expression of a panel of 89 mesenchymal stem cells’ specific genes, as well as intracellular structures organization. Our results show that mesenchymal stem cells adhered and grew in the 3D Nichoid with a comparable proliferation rate as compared to flat substrates. After seeding on flat substrates, cells displayed large and spread nucleus and cytoplasm, while cells cultured in the 3D Nichoid were spatially organized in three dimensions, with smaller and spherical nuclei. Gene expression analysis revealed the upregulation of genes related to stemness and to mesenchymal stem cells’ features in Nichoid-cultured cells, as compared to flat substrates. The observed changes in cytoskeletal organization of cells cultured on 3D Nichoids were also responsible for a different localization of the mechanotransducer transcription factor YAP, with an increase of the cytoplasmic retention in cells cultured in the 3D Nichoid. This difference could be explained by alterations in the import of transcription factors inside the nucleus due to the observed decrease of mean nuclear pore diameter, by transmission electron microscopy. Our data show that 3D distribution of cell volume has a profound effect on mesenchymal stem cells structure and on their mechanobiological response, and highlight the potential use of the 3D Nichoid substrate to strengthen the potential effects of MSC in vitro and in vivo.
机译:干细胞命运和行为受细胞的双向通信和其局部微环境(干细胞Niche)的双向通信影响,其包括生化线索以及物理和机械因素。干细胞通常在常规的二维单层中培养,机械环境与生理学均外较差。在这里,我们比较大鼠间充质干细胞对平面培养物支持的培养物,并在“硫酸尼肌”中,这是一种创新的三维衬底微型设计,以概括生理利基的结构。通过双光子激光聚合在生物相容性杂交有机 - 无机光致抗蚀剂(SZ2080)中,通过双光子激光聚合制备两种培养基肌肌淋巴结(单层或“2D硫偶”和多层或“3D硫偶”)。从大鼠骨髓中分离的间充质干细胞在平底基材上和2D和3D硫代骨基底上播种,并在培养上保持长达2周。在细胞培养期间,我们评估了细胞形态,增殖,细胞运动和89个间充质干细胞的特异性基因的表达,以及细胞内结构组织。我们的结果表明,与扁平基材相比,间充质干细胞粘附并增长3D硫化物,其增殖率相当。播种在扁平基材上,细胞显示大并扩散细胞核和细胞质,而在3D硫酸中培养的细胞在三个维度下培养的细胞,具有较小和球形的细胞核。基因表达分析显示,与扁平基材相比,基因表达分析表明与茎干相关的基因和间充质干细胞的特征。观察到在3D硫酸体上培养的细胞细胞骨骼组织的变化也负责机械转录器转录因子yap的不同定位,随着在3D硫酸中培养的细胞中的细胞质保留而增加。由于透射电子显微镜,通过观察到的平均核孔径的降低,核内部的转录因子的改变可以解释这种差异。我们的数据表明,细胞体积的3D分布对间充质干细胞结构和其机械生物反应具有深远的影响,并突出了3D硫酸盐基材的潜在用途,以增强体外和体内MSC的潜在效果。

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