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Osteogenesis of mesenchymal stem cells by nanoscale mechanotransduction

机译:纳米机械转导骨髓间充质干细胞成骨

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It is likely that mesenchymal stem cells will find use in many autologous regenerative therapies. However, our ability to control cell stem growth and differentiation is presently limited, and this is a major hurdle to the clinical use of these multipotent cells especially when considering the desire not to use soluble factors or complex media formulations in culture. Also, the large number of cells required to be clinically useful is currently a hurdle to using materials-based (stiffness, chemistry, nanotopography, etc.) culture substrates. Here we give a first demonstration of using nanoscale sinusoidal mechanotransductive protocols (10-14 nm displacements at 1 kHz frequency), "nanokicking", to promote osteoblastogenesis in human mesenchymal stem cell cultures. On the basis of application of the reverse piezo effect, we use interferometry to develop the optimal stem cell stimulation conditions, allowing delivery of nanoscale cues across the entire surface of the Petri dishes used. A combination of immunofluorescence, PCR, and microarray has then been used to demonstrate osteoblastogenesis, and the arrays implicate RhoA as central to osteoblastic differentiation in agreement with materials-based strategies. We validate this with pharmacological inhibition of RhoA kinase. It is easy to envisage such stimulation protocols being up-scaled to form large-scale osteoblast bioreactors as standard cell culture plates and incubators are used in the protocol.
机译:间充质干细胞很可能会在许多自体再生疗法中得到应用。但是,我们控制细胞干生长和分化的能力目前受到限制,这是这些多能细胞在临床上使用的主要障碍,尤其是考虑到不希望在培养物中使用可溶性因子或复杂培养基制剂时。同样,目前需要大量用于临床的细胞是使用基于材料(刚度,化学,纳米形貌等)的培养基质的障碍。在这里,我们给出了使用纳米级正弦机械转导方案(在1 kHz频率下位移10-14 nm),“ nanokicking”来促进人间充质干细胞培养中成骨细胞生成的首次演示。在应用反向压电效应的基础上,我们使用干涉术来开发最佳的干细胞刺激条件,从而允许在所用培养皿的整个表面上传递纳米级线索。免疫荧光,PCR和微阵列的组合随后已用于证明成骨细胞生成,并且该阵列暗示RhoA是成骨细胞分化的中心,与基于材料的策略相一致。我们用RhoA激酶的药理学抑制作用验证了这一点。容易设想将此类刺激方案放大以形成大规模成骨细胞生物反应器,因为该方案中使用了标准细胞培养板和培养箱。

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