Rbeida O, Christiaens B, Hubert Ph, Lubda D, Boos K S, Crommen J, Chiap P
Department of Analytical Pharmaceutical Chemistry, Institute of Pharmacy, University of Liège, CHU, B36, B-4000 Liège 1, Belgium.
J Chromatogr A. 2004 Mar 19;1030(1-2):95-102. doi: 10.1016/j.chroma.2003.11.031.
A new kind of silica-based restricted-access material (RAM) with anionic properties has been tested in pre-columns for on-line solid-phase extraction of acidic compounds from directly injected plasma samples prior to their determination by reversed-phase liquid chromatography (LC), using the column-switching technique. The outer surface of the porous RAM particles contains hydrophilic diol groups while diethylaminoethyl (DEAE) groups are bound to the internal surface which gives the sorbent the properties of a weak anion exchanger towards low-molecular-mass compounds. Due to an appropriate pore diameter (about 6 nm), macromolecules, such as proteins, are physically excluded from the pores and flushed directly out during the sample clean-up process, while small compounds have access to the inner surface and can be retained mainly by electrostatic interactions. The retention capability of this novel packing material has been tested for some hydrophilic acidic compounds such as aspartic acid, glutamic acid, ascorbic acid and acetylcysteine as well as for some more hydrophobic drugs such as naproxen, ibuprofen and diclofenac, used as model compounds. The influence of the composition of the washing liquid on the retention of the analytes in the pre-column has been investigated. The efficiency of the sorbent to clean-up complex matrices was also tested using human plasma and urine samples. A generic washing liquid composition was then selected in order to obtain efficient and selective sample clean-up as well as a high recovery of the acidic analytes.
一种新型的具有阴离子特性的二氧化硅基受限进样材料(RAM)已在预柱中进行了测试,用于在通过柱切换技术采用反相液相色谱(LC)测定之前,从直接进样的血浆样品中在线固相萃取酸性化合物。多孔RAM颗粒的外表面含有亲水性二醇基团,而二乙氨基乙基(DEAE)基团结合在内表面,这使得吸附剂对低分子量化合物具有弱阴离子交换剂的性质。由于合适的孔径(约6纳米),大分子如蛋白质在物理上被排除在孔外,并在样品净化过程中被直接冲洗出去,而小分子化合物可以进入内表面,并主要通过静电相互作用被保留。已针对一些亲水性酸性化合物如天冬氨酸、谷氨酸、抗坏血酸和乙酰半胱氨酸以及一些疏水性更强的药物如萘普生、布洛芬和双氯芬酸等模型化合物测试了这种新型填充材料的保留能力。研究了洗涤液组成对预柱中分析物保留的影响。还使用人血浆和尿液样品测试了吸附剂净化复杂基质的效率。然后选择了一种通用的洗涤液组成,以实现高效、选择性的样品净化以及酸性分析物的高回收率。