Choe Leila H, Lee Kelvin H
Cornell University Chemical and Biomolecular Engineering, Ithaca, NY, USA.
Electrophoresis. 2003 Oct;24(19-20):3500-7. doi: 10.1002/elps.200305614.
We investigate one approach to assess the quantitative variability in two-dimensional gel electrophoresis (2-DE) separations based on gel-to-gel variability, sample preparation variability, sample load differences, and the effect of automation on image analysis. We observe that 95% of spots present in three out of four replicate gels exhibit less than a 0.52 coefficient of variation (CV) in fluorescent stain intensity (% volume) for a single sample run on multiple gels. When four parallel sample preparations are performed, this value increases to 0.57. We do not observe any significant change in quantitative value for an increase or decrease in sample load of 30% when using appropriate image analysis variables. Increasing use of automation, while necessary in modern 2-DE experiments, does change the observed level of quantitative and qualitative variability among replicate gels. The number of spots that change qualitatively for a single sample run in parallel varies from a CV = 0.03 for fully manual analysis to CV = 0.20 for a fully automated analysis. We present a systematic method by which a single laboratory can measure gel-to-gel variability using only three gel runs.
我们研究了一种方法,用于评估二维凝胶电泳(2-DE)分离中的定量变异性,该方法基于凝胶间变异性、样品制备变异性、样品上样差异以及自动化对图像分析的影响。我们观察到,对于在多个凝胶上运行的单个样品,四分之三的重复凝胶中出现的95%的斑点在荧光染色强度(%体积)方面表现出小于0.52的变异系数(CV)。当进行四次平行样品制备时,该值增加到0.57。当使用适当的图像分析变量时,我们没有观察到样品上样量增加或减少30%时定量值有任何显著变化。在现代2-DE实验中增加自动化的使用虽然是必要的,但确实会改变重复凝胶之间观察到的定量和定性变异性水平。对于单个样品并行运行时定性变化的斑点数量,从完全手动分析时的CV = 0.03到完全自动化分析时的CV = 0.20不等。我们提出了一种系统方法,通过该方法单个实验室仅使用三次凝胶运行就能测量凝胶间变异性。