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Acoustically modulated biomechanical stimulation for human cartilage tissue engineering

机译:用于人类软骨组织工程的声学调节的生物力学刺激

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Bioacoustofluidics can be used to trap and levitate cells within a fluid channel, thereby facilitating scaffold-free tissue engineering in a 3D environment. In the present study, we have designed and characterised an acoustofluidic bioreactor platform, which applies acoustic forces to mechanically stimulate aggregates of human articular chondrocytes in long-term levitated culture. By varying the acoustic parameters (amplitude, frequency sweep, and sweep repetition rate), cells were stimulated by oscillatory fluid shear stresses, which were dynamically modulated at different sweep repetition rates (1-50 Hz). Furthermore, in combination with appropriate biochemical cues, the acoustic stimulation was tuned to engineer human cartilage constructs with structural and mechanical properties comparable to those of native human cartilage, as assessed by immunohistology and nano-indentation, respectively. The findings of this study demonstrate the capability of acoustofluidics to provide a tuneable biomechanical force for the culture and development of hyaline-like human cartilage constructs in vitro.
机译:生物库流过流体可用于捕获和浮出流体通道内的电池,从而促进3D环境中无支架的组织工程。在本研究中,我们设计并表征了一种声毒生物反应器平台,其施加声学力以在长期悬浮培养中机械刺激人关节软骨细胞的聚集体。通过改变声学参数(幅度,频率扫描和扫描重复率),通过振荡流体剪切应力刺激细胞,其在不同的扫描重复率(1-50Hz)下动态调制。此外,与合适的生化线本组合,声学刺激分别调整到工程人体软骨构建体,其具有与天然人类软骨相当的结构和机械性能,分别由免疫组织学和纳米凹口评估。该研究的结果证明了声流量的能力,为透明的人类软骨构建体的培养和发展提供可调调谐的生物力学力。

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