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An immortalised mesenchymal stem cell line maintains mechano-responsive behaviour and can be used as a reporter of substrate stiffness

机译:永生化的间充质干细胞系可维持机械响应行为可用作底物硬度的报告子

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摘要

The mechanical environment can influence cell behaviour, including changes to transcriptional and proteomic regulation, morphology and, in the case of stem cells, commitment to lineage. However, current tools for characterizing substrates’ mechanical properties, such as atomic force microscopy (AFM), often do not fully recapitulate the length and time scales over which cells ‘feel’ substrates. Here, we show that an immortalised, clonal line of human mesenchymal stem cells (MSCs) maintains the responsiveness to substrate mechanics observed in primary cells, and can be used as a reporter of stiffness. MSCs were cultured on soft and stiff polyacrylamide hydrogels. In both primary and immortalised MSCs, stiffer substrates promoted increased cell spreading, expression of lamin-A/C and translocation of mechano-sensitive proteins YAP1 and MKL1 to the nucleus. Stiffness was also found to regulate transcriptional markers of lineage. A GFP-YAP/RFP-H2B reporter construct was designed and virally delivered to the immortalised MSCs for in situ detection of substrate stiffness. MSCs with stable expression of the reporter showed GFP-YAP to be colocalised with nuclear RFP-H2B on stiff substrates, enabling development of a cellular reporter of substrate stiffness. This will facilitate mechanical characterisation of new materials developed for applications in tissue engineering and regenerative medicine.
机译:机械环境会影响细胞的行为,包括转录和蛋白质组调控,形态的变化,而对于干细胞,则是对谱系的承诺。但是,目前用于表征基质机械性能的工具(例如原子力显微镜(AFM))通常无法完全概括细胞“感觉”基质的时间长度和尺度。在这里,我们显示了人类间充质干细胞(MSCs)永生的克隆系保持了对在原代细胞中观察到的底物力学的响应能力,并且可以用作刚度的报告基因。 MSCs在柔软而坚硬的聚丙烯酰胺水凝胶上培养。在原代和永生的MSC中,较坚硬的底物均能促进细胞扩散,层粘连蛋白A / C的表达以及机械敏感蛋白YAP1和MKL1向核的转运。还发现刚度调节谱系的转录标记。设计了GFP-YAP / RFP-H2B报告基因构建体,并将其病毒递送至永生化的MSC,以原位检测底物的硬度。具有稳定表达的报道分子的MSCs显示GFP-YAP与核RFP-H2B在刚性底物上共定位,从而能够发展出具有底物硬度的细胞报道分子。这将有助于对用于组织工程和再生医学的新材料进行机械表征。

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