Matheson Loren A, Fairbank N Jack, Maksym Geoffrey N, Paul Santerre J, Labow Rosalind S
Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, Canada.
Biomaterials. 2006 Jan;27(2):226-33. doi: 10.1016/j.biomaterials.2005.05.070.
Mechanical forces alter many cell functions in a variety of cell types. It has been recognized that stimulation of cells in culture may be more representative of some physiologic conditions. Although there are commercially available systems for the study of cells cultured in a mechanical environment, very little has been documented on the validation techniques for these devices. In this study, Flexcell's recently introduced Uniflex cyclic strain system was programmed to apply 10% longitudinal sinusoidal strain (0.25 Hz) for 48 h to U937 cells cultured on Uniflex plates. Image analysis was employed to characterize the actual strain field. For a chosen amplitude of 10% the applied strain was highly reproducible and relatively uniform (10.6+/-0.2%) in a central rectangular region of the membrane (dimensions of 9.2+/-2 x 13.6+/-0.8 mm2). The strain increased the release of IL-6, esterase and acid phosphatase activity (p<0.05) from adherent U937 cells. Cells also displayed altered morphology, aligning and lengthening with the direction of strain, whereas static cells maintained a round appearance showing no preferred orientation. These data indicate that cyclic mechanical strain applied by the Uniflex strain system modulates U937 cell function leading to selective increases in enzymatic activities as well as orientation in a favored direction.
机械力可改变多种细胞类型的许多细胞功能。人们已经认识到,在培养中刺激细胞可能更能代表某些生理状况。尽管有用于研究在机械环境中培养的细胞的商业可用系统,但关于这些设备的验证技术的文献却很少。在本研究中,Flexcell最近推出的Uniflex循环应变系统被编程为对在Uniflex平板上培养的U937细胞施加10%的纵向正弦应变(0.25Hz),持续48小时。采用图像分析来表征实际应变场。对于选定的10%的振幅,施加的应变在膜的中央矩形区域(尺寸为9.2±2×13.6±0.8mm2)高度可重复且相对均匀(10.6±0.2%)。该应变增加了贴壁U937细胞中IL-6的释放、酯酶和酸性磷酸酶活性(p<0.05)。细胞还表现出形态改变,沿应变方向排列并伸长,而静态细胞保持圆形外观,没有显示出偏好的取向。这些数据表明,Uniflex应变系统施加的循环机械应变调节U937细胞功能,导致酶活性选择性增加以及在有利方向上的取向。