Horie Kanta, Kimura Hiroshi, Ikegami Tohru, Iwatsuka Akira, Saad Nabil, Fiehn Oliver, Tanaka Nobuo
Department of Biomolecular Engineering, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.
Anal Chem. 2007 May 15;79(10):3764-70. doi: 10.1021/ac062002t. Epub 2007 Apr 17.
Theoretical calculations are presented to optimize modulation period for maximum total peak capacity in comprehensive two-dimensional HPLC (2D-HPLC) taking into account the effect of modulation on the apparent peak capacity of the first-dimension (1D) separation. Results indicate that modulation periods are most favorable when they are adjusted to approximately 2.2-4 times the standard deviation of a 1D peak in order to avoid excessively short run times at the second dimension (2D). Data are presented that effective peak capacities of several thousand in 60 min can be expected for practical 2D-HPLC conditions, utilizing 1D gradient elution followed by 2D isocratic elution, that remain at approximately 50-70% of the theoretical maximum peak capacity. This work suggests that lower modulation frequencies and longer 2D separation times than previously proposed are favorable under realistic chromatographic conditions, alleviating some practical problems associated with 2D-HPLC.
进行了理论计算,以优化综合二维高效液相色谱(2D-HPLC)中的调制周期,从而实现最大总峰容量,同时考虑了调制对一维(1D)分离的表观峰容量的影响。结果表明,为避免二维(2D)运行时间过短,将调制周期调整为一维峰标准差的约2.2至4倍时最为有利。给出的数据表明,在实际的二维高效液相色谱条件下,采用一维梯度洗脱然后二维等度洗脱,预计60分钟内有效峰容量可达数千,且该容量约为理论最大峰容量的50-70%。这项工作表明,在实际色谱条件下,较低的调制频率和比先前建议更长的二维分离时间是有利的,这缓解了与二维高效液相色谱相关的一些实际问题。