Johnson Jeffery D, Bell Natalie J, Donahoe Erin L, Macfarlane Ronald D
Department of Chemistry, Texas A&M University, College Station, Texas 77843, USA.
Anal Chem. 2005 Nov 1;77(21):7054-61. doi: 10.1021/ac0509657.
In the study reported here, we study the nature of the metal ion complexes of EDTA as solute systems for analysis of lipoproteins by density gradient ultracentrifugation (DGU) by varying both the complexing metal ion and the counterion. Specifically, the sodium and cesium salts of complexes of Bi/EDTA, Pb/EDTA, Cd/EDTA, Fe/EDTA, and Cu/EDTA were chosen for this study. We show that useful gradients can be formed within a few hours beginning with a homogeneous solution. Data are presented that provide insight into the nature of how these gradients are formed from these complexes and how the selection of a specific complex can be used to enhance particular regions of the lipoprotein density profile for clinical studies. We also examine the use of equilibrium sedimentation theory to correlate the measured density profiles generated by these complexes with their molecular weight.
在本文报道的研究中,我们通过改变络合金属离子和抗衡离子,研究了作为密度梯度超速离心(DGU)分析脂蛋白溶质体系的EDTA金属离子络合物的性质。具体而言,本研究选择了Bi/EDTA、Pb/EDTA、Cd/EDTA、Fe/EDTA和Cu/EDTA络合物的钠盐和铯盐。我们表明,从均匀溶液开始,几小时内就能形成有用的梯度。所呈现的数据有助于深入了解这些梯度如何由这些络合物形成,以及如何选择特定的络合物来增强脂蛋白密度谱的特定区域以用于临床研究。我们还研究了使用平衡沉降理论将这些络合物产生的测量密度谱与其分子量相关联。