Peyrin E, Caron C, Garrel C, Ravel A, Villet A, Grosset C, Favier A
Laboratoire de Chimie Analytique, UFR de Pharmacie, Universite Joseph Fourier, Domaine de la Merci, 38700 La Tronche Cedex, France.
Talanta. 2001 Aug 30;55(2):291-6. doi: 10.1016/s0039-9140(01)00419-2.
Recently, we hypothesized that DNA separation mechanisms in slalom chromatography (SC) and packed column hydrodynamic chromatography (HDC) could be connected and simultaneously observed 'J. Chromatogr. A 886 (2000) 1'. The present paper describes the migration of various circular and linear double-stranded DNAs in a chromatographic system using a C1 stationary phase and an acetonitrile-phosphate buffer mixture as a mobile phase. The migration dependence on the flow rate for the different species showed the relative contribution of both the SC and HDC separation mechanisms. A transition between the SC and HDC regimes was demonstrated for the first time. In addition, the data were analyzed in terms of polymer migration in a dense structure. Three different behaviors were distinguished in relation to the size and the compactness of the nucleic acid.
最近,我们推测在回转色谱法(SC)和填充柱流体动力学色谱法(HDC)中的DNA分离机制可能存在关联,并且可以同时观察到《色谱杂志A》886卷(2000年)第1页所述情况。本文描述了在以C1固定相和乙腈 - 磷酸盐缓冲液混合物为流动相的色谱系统中,各种环状和线性双链DNA的迁移情况。不同种类的DNA迁移对流速的依赖性显示了SC和HDC分离机制的相对贡献。首次证明了SC和HDC模式之间的转变。此外,还根据聚合物在致密结构中的迁移对数据进行了分析。根据核酸的大小和紧密程度区分出了三种不同的行为。