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Increased proliferation of primary chondrocyte cells by nanostructure and cycling mechanical stimulation on PDMS cell chip

机译:通过PDMS细胞芯片上的纳米结构和循环机械刺激提高原代软骨细胞的增殖

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This paper proposes a simple method that can detect the influence of homogeneous controllable stress at regular vibration cycle by nanostructure on rabbit articular chondrocyte primary cells which were cultured in PDMS (Polydimethylsiloxane) chips. In order to screen the most sensitive parameters of stress and cycling, the uniform spreaded cells were cultured on the chip and underwent different stress and cycling conditions. Finally, it was found that 3% strains and the frequency at 0.75Hz continuously stretching of 2 hours for two days through PDMS nanostructure was most helpful for bone cells growth.
机译:本文提出了一种简单的方法,该方法可以检测在规则振动周期内均匀可控应力的纳米结构对在PDMS(聚二甲基硅氧烷)芯片中培养的兔关节软骨细胞原代细胞的影响。为了筛选压力和循环的最敏感参数,将均匀铺展的细胞培养在芯片上,并经受不同的压力和循环条件。最后,发现3%的应变和0.75Hz的频率通过PDMS纳米结构连续拉伸2小时达2天对骨细胞的生长最有帮助。

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