Spasojević Ivan
a Department of Life Sciences, Institute for Multidisciplinary Research , University of Belgrade , Belgrade, Kneza Višeslava 1, Serbia.
Redox Rep. 2016 May;21(3):127-9. doi: 10.1179/1351000215Y.0000000036. Epub 2016 Feb 18.
Here, I address the topic of suitability for redox research of common settings in cell cultures. This is done through the prism of in vitro anticancer effects of vitamin C. Cell culture media show lower concentrations of iron and a higher level of oxygen compared to interstitial fluid. Such a setup promotes ascorbate-mediated production and accumulation of hydrogen peroxide, which efficiently kills a variety of cancer cell lines. However, the anticancer effects are annihilated if the iron level is corrected to mimic in vivo concentrations. It appears that the potential benefits of application of vitamin C in cancer treatment have been significantly overestimated. This might be true for other pro-oxidative agents as well, such as some (poly)phenols. We urgently need to establish medium formula and culture maintenance settings that are optimal for redox research.
在此,我探讨细胞培养中常见环境用于氧化还原研究的适用性这一主题。这是通过维生素C的体外抗癌作用这一视角来进行的。与组织间液相比,细胞培养基中铁的浓度较低,氧气水平较高。这样的环境促进了抗坏血酸介导的过氧化氢的产生和积累,而过氧化氢能有效杀死多种癌细胞系。然而,如果将铁水平校正为模拟体内浓度,抗癌作用就会消失。看来维生素C在癌症治疗中的潜在益处被大大高估了。对于其他促氧化剂,如一些(多)酚类物质,可能也是如此。我们迫切需要建立最适合氧化还原研究的培养基配方和培养维持条件。