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首页> 外文期刊>Journal of biomedical materials research, Part A >Development of an elastic cell culture substrate for a novel uniaxial tensile strain bioreactor
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Development of an elastic cell culture substrate for a novel uniaxial tensile strain bioreactor

机译:一种新型单轴拉伸菌株生物反应器的弹性细胞培养基材的研制

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摘要

Bioreactors can be used for mechanical conditioning and to investigate the mechanobiology of cells in vitro. In this study a polyurethane (PU), Chronoflex AL, was evaluated for use as a flexible cell culture substrate in a novel bioreactor capable of imparting cyclic uniaxial tensile strain to cells. PU membranes were plasma etched, across a range of operating parameters, in oxygen. Contact angle analysis and X-ray photoelectron spectroscopy showed increases in wettability and surface oxygen were related to both etching power and duration. Atomic force microscopy demonstrated that surface roughness decreased after etching at 20 W but was increased at higher powers. The etching parameters, 20 W 40 s, produced membranes with high surface oxygen content (21%), a contact angle of 66 ± 7 and reduced topographical features. Etching and protein conditioning membranes facilitated attachment, and growth to confluence within 3 days, of MG-63 osteoblasts. After 2 days with uniaxial strain (1%, 30 cycles/min, 1500 cycles/day), cellular alignment was observed perpendicular to the principal strain axis, and found to increase after 24 h. The results indicate that the membrane supports culture and strain transmission to adhered cells.
机译:生物反应器可用于机械调节,并调查在体外细胞的力学生物学。在这项研究中的聚氨酯(PU),CHRONOFLEX AL,被评价用作能够赋予环状单轴拉伸应变对细胞的生物反应器新颖的柔性细胞培养基材。 PU膜是等离子体蚀刻,穿过一个范围内操作的参数,在氧气。接触角分析和X射线光电子能谱显示在润湿性和表面氧的增加均与两个刻蚀功率和持续时间。原子力显微镜证实,表面粗糙度为20W蚀刻之后下降,但在更高的功率增加。蚀刻参数,20 W 40 S,产生的膜具有高表面氧含量(21%),为66个±7和降低的地形特征的接触角。蚀刻和蛋白调节膜容易在3天内附着和生长至汇合,MG-63成骨细胞。 2天后用单轴应变(1%,30次/分钟,1500次循环/天),以垂直于主应变轴观察到的细胞对准,结果发现在24小时后增加。结果表明,在膜支持培养和应变传输到粘附的细胞。

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