Galow Anne-Marie, Gimsa Jan
Chair for Biophysics, University of Rostock, Gertrudenstr. 11a, 18057 Rostock, Germany.
Data Brief. 2017 Apr 28;12:442-446. doi: 10.1016/j.dib.2017.04.037. eCollection 2017 Jun.
The data presented in this article are related to the research article entitled "Increased osteoblast viability at alkaline pH in vitro provides a new perspective on bone regeneration" (doi: 10.1016/j.bbrep.2017.02.001; (Galow et al., 2017) [1]). The water soluble tetrazolium (WST) proliferation assay detects the metabolic activity of the respiratory chain of cultured cells. The assay is based on changes in the light absorbance resulting from the metabolism of WST-1 into formazane by mitochondrial succinate reductase. We present data of three different tests that were carried out to check whether WST assay readouts are pH-dependent. In a first test, a possible pH effect on the photometric measurements, for example by shifting the absorbance spectrum of the pH indicator of the cell culture medium, was excluded. Because the second test revealed a significant pH-dependence of the activity of the mitochondrial succinate reductase, a third long-term test was conducted to analyze possible changes of the pH dependence over time. The higher absorbance per one million cells at alkaline pH, which was approximately four-fold at pH 8.4 compared to the pH-7.4 reference on day one decayed gradually, with the pH-differences equilibrating over six days.
本文所呈现的数据与题为《体外碱性pH条件下成骨细胞活力增加为骨再生提供新视角》的研究论文相关(doi: 10.1016/j.bbrep.2017.02.001;(Galow等人,2017年) [1])。水溶性四氮唑(WST)增殖试验可检测培养细胞呼吸链的代谢活性。该试验基于线粒体琥珀酸还原酶将WST - 1代谢为甲臜所导致的吸光度变化。我们展示了为检查WST试验读数是否依赖于pH值而进行的三项不同测试的数据。在第一项测试中,排除了例如通过改变细胞培养基pH指示剂吸光光谱对光度测量可能产生的pH影响。由于第二项测试揭示了线粒体琥珀酸还原酶活性存在显著的pH依赖性,因此进行了第三项长期测试,以分析pH依赖性随时间可能发生的变化。在碱性pH条件下,每百万细胞的吸光度较高,在第1天,pH 8.4时的吸光度约为pH 7.4参考值的四倍,但随后逐渐衰减,pH差异在六天内达到平衡。