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Evaluation of cell-cell or cell-substrate adhesion effect on cellular differentiation using a microwell array having convertible culture surface

机译:使用具有可转换培养表面的微孔阵列评估细胞-细胞或细胞-基质粘附对细胞分化的影响

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In this paper, effects of cell-cell adhesion or cell-substrate adhesion on cellular differentiation are evaluated using a microwell array having convertible culture surface (CCS microwell array). The CCS microwell array is used for limitation of culture area and regulation of the adhesion timing. The CCS microwell array is fabricated by photolithography of SU-8 photoresist on the cover slip, and coating of the alginate thin film on the microwell bottoms. The alginate thin film is used as a material that inhibits adhesion of cells. It uses an alginate film that is not toxic to cells and can be removed by ethylendiaminetetraacetate (EDTA), which is calcium chelator, at arbitrary timing during cell culture. A single spheroid is formed by cell-cell adhesion in microwells because cells can't adhere to the culture surface by adhesion inhibition effect of the alginate thin film. When the culture surface is converted to cell-adhesiveness surface by removing alginate thin film, cells adhere to the microwell bottoms. The transition of the diameter of spheroid cultured in the CCS microwell array was evaluated by observation of an inverted microscope. Also, cellular differentiation behavior under four kinds of conditions was compared for verification of cell-cell or cell-substrate adhesion effect. This result shows the efficiency of induction of cellular differentiation was increased by cell culture in the CCS microwell array compared with three kinds of other culture conditions.
机译:在本文中,使用具有可转换培养表面的微孔阵列(CCS微孔阵列)评估了细胞-细胞粘附或细胞-基质粘附对细胞分化的影响。 CCS微孔阵列用于限制培养面积和调节粘附时间。 CCS微孔阵列是通过在盖玻片上进行SU-8光致抗蚀剂的光刻,并在微孔底部上涂覆藻酸盐薄膜而制成的。海藻酸盐薄膜用作抑制细胞粘附的材料。它使用对细胞无毒的藻酸盐薄膜,可以在细胞培养期间的任意时间通过乙二胺四乙酸乙二酯(EDTA)(钙螯合剂)将其除去。由于细胞无法通过藻酸盐薄膜的粘附抑制作用粘附到培养表面,因此通过微孔中的细胞-细胞粘附形成了单个球体。当通过去除藻酸盐薄膜将培养表面转变为细胞粘附性表面时,细胞会粘附在微孔底部。通过倒置显微镜观察来评估在CCS微孔阵列中培养的球状体直径的变化。此外,比较了四种条件下的细胞分化行为,以验证细胞与细胞或细胞与基底的粘附效果。该结果表明,与三种其他培养条件相比,在CCS微孔阵列中通过细胞培养提高了诱导细胞分化的效率。

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