Pacific Northwest National Laboratory, Richland, WA 99352, United States.
Pacific Northwest National Laboratory, Richland, WA 99352, United States.
Mutat Res. 2010 May 1;687(1-2):78-83. doi: 10.1016/j.mrfmmm.2010.03.004. Epub 2010 Mar 6.
For both targeted and non-targeted exposures, the cellular responses to ionizing radiation have predominantly been measured in two-dimensional monolayer cultures. Although convenient for biochemical analysis, the true interactions in vivo depend upon complex interactions between cells themselves and the surrounding extracellular matrix. This study directly compares the influence of culture conditions on radiation induced cytotoxicity following exposure to low-LET ionizing radiation. Using a three-dimensional (3D) human mammary epithelial tissue model, we have found a protective effect of 3D cell culture on cell survival after irradiation. The initial state of the cells (i.e., 2D versus 3D culture) at the time of irradiation does not alter survival, nor does the presence of extracellular matrix during and after exposure to dose, but long term culture in 3D which offers significant reduction in cytotoxicity at a given dose (e.g. approximately 4-fold increased survival at 5Gy). The cell cycle delay induced following exposure to 2 and 5Gy was almost identical between 2D and 3D culture conditions and cannot account for the observed differences in radiation responses. However the amount of apoptosis following radiation exposure is significantly decreased in 3D culture relative to the 2D monolayer after the same dose. A likely mechanism of the cytoprotective effect afforded by 3D culture conditions is the down regulation of radiation induced apoptosis in 3D structures.
对于靶向和非靶向暴露,细胞对电离辐射的反应主要在二维单层培养物中进行测量。虽然二维单层培养物便于进行生化分析,但体内的真实相互作用取决于细胞本身与周围细胞外基质之间的复杂相互作用。本研究直接比较了培养条件对低 LET 电离辐射暴露后辐射诱导细胞毒性的影响。使用三维(3D)人乳腺上皮组织模型,我们发现 3D 细胞培养对辐照后细胞存活具有保护作用。在照射时细胞的初始状态(即 2D 与 3D 培养)不会改变存活率,在暴露于剂量期间和之后细胞外基质的存在也不会改变存活率,但在 3D 中长期培养可显著降低细胞毒性在给定剂量下(例如,在 5Gy 时,存活率增加约 4 倍)。在 2D 和 3D 培养条件下,暴露于 2Gy 和 5Gy 后诱导的细胞周期延迟几乎相同,不能解释观察到的辐射反应差异。然而,与相同剂量下的 2D 单层相比,3D 培养物中辐射暴露后的细胞凋亡数量明显减少。3D 培养条件提供的细胞保护作用的一种可能机制是下调 3D 结构中辐射诱导的细胞凋亡。