首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Cell aggregation on agar as an indicator for cell-matrix adhesion: effects of opioids
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Cell aggregation on agar as an indicator for cell-matrix adhesion: effects of opioids

机译:琼脂上的细胞聚集作为细胞基质粘附的指示剂:阿片类药物的作用

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The slow aggregation assay is generally used to study the functionality of cell-cell adhesion complexes. Single cells are seeded on a semisolid agar substrate in a 96-well plate and the cells spontaneously aggregate. We used HEK FLAG-MOP cells that stably overexpress the mu opioid receptor and the mu-opioid-receptor-selective agonists DAMGO and morphine to study whether other factors than functionality of cell-cell adhesions complexes can contribute to changes in the pattern of slow aggregation on agar. HEK FLAG-MOP cells formed small compact aggregates. In the presence of DAMGO and morphine, larger and fewer aggregates were formed in comparison to the vehicle control. These aggregates were localized in the center of the agar surface, whereas in the vehicle control they were dispersed over the substrate. However, in suspension culture on a Gyrotory shaker, no stimulation of aggregation was observed by DAMGO and morphine, showing that opioids do not affect affinity. A dissociation experiment revealed that HEK FLAG-MOP aggregates formed in the absence or presence of opioids are resistant to de-adhesion. We demonstrated that the larger aggregates are neither the result of cell growth stimulation by DAMGO and morphine. Since manipulations of the substrate such as increasing the agar concentration or mixing agar with agarose induced the same changes in the pattern of slow aggregation as treatment with opioids, we suggest that cell-substrate adhesion may be involved in opioid-stimulated aggregation.
机译:缓慢聚集测定法通常用于研究细胞-细胞粘附复合物的功能。将单个细胞接种在96孔板的半固体琼脂基质上,细胞自发聚集。我们使用稳定表达mu阿片受体和mu阿片受体选择性激动剂DAMGO和吗啡的HEK FLAG-MOP细胞来研究除细胞-细胞粘附复合物功能以外的其他因素是否可导致慢聚集模式的改变在琼脂上。 HEK FLAG-MOP细胞形成小的紧密聚集体。与媒介物对照相比,在DAMGO和吗啡的存在下,形成了越来越多的聚集体。这些聚集体位于琼脂表面的中心,而在赋形剂对照中它们分散在基质上。但是,在Gyrotory振荡器上的悬浮培养中,DAMGO和吗啡未观察到聚集刺激,表明阿片类药物不影响亲和力。解离实验表明,在不存在或存在阿片类药物的情况下形成的HEK FLAG-MOP聚集体均具有抗粘连性。我们证明较大的聚集体既不是DAMGO和吗啡刺激细胞生长的结果。由于对底物的操作(例如增加琼脂浓度或将琼脂与琼脂糖混合)会引起与阿片类药物治疗一样的缓慢聚集模式的变化,因此我们建议细胞基质粘附可能与阿片样物质刺激的聚集有关。

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