Department of Pharmaceutical Chemistry, School of Pharmacy, University of Oslo, Blindern, Oslo, Norway.
J Sep Sci. 2011 Jan;34(2):186-95. doi: 10.1002/jssc.201000703. Epub 2010 Dec 17.
By the application of an electrical potential difference (25 V), 37 different peptides were extracted from 500 μL aqueous sample (10 mM formic acid, positive electrode), through a supported liquid membrane (SLM) impregnated in the walls of a porous hollow fiber, and into 25 μL aqueous acceptor solution (100 mM formic acid, negative electrode) present inside the lumen of the fiber. Most of the peptides were obtained by tryptic digestion of cytochrome c and bovine serum albumin, which yielded complex samples for extraction. Three different SLMs were utilized to correlate the peptides extractability with the highly variable physical-chemical properties of the peptides. The first SLM (pure eugenol) provided an electromembrane extraction system for hydrophobic and intermediate peptides (hydrophilicity values below 0.2), where the extraction of peptides into the SLM was mainly based on solvent interactions. The second SLM (1-octanol/di-isobutylketone/di-(2-ethylhexyl) phosphate) extracted both hydrophobic and hydrophilic peptides (hydrophilicity values in the range from -2 to+1) successfully, and the transfer of peptides was principally based on ionic interactions with di-(2-ethylhexyl) phosphate. The third SLM (1-octanol/15-crown-5 ether) was selective for hydrophobic peptides (negative hydrophilicity values), and complexation of the peptides with the crown ether was important for the migration of peptides into the acceptor solution.
通过施加 25V 的电势差,从 500μL 水性样品(10mM 甲酸,正极)中通过浸渍在多孔中空纤维壁中的支撑液膜(SLM)提取了 37 种不同的肽,并进入到 25μL 水性接受溶液(100mM 甲酸,负极)中。这些肽大多是通过细胞色素 c 和牛血清白蛋白的胰蛋白酶消化得到的,这些样品的提取非常复杂。使用了三种不同的 SLM 来将肽的可提取性与肽的高度可变物理化学性质相关联。第一种 SLM(纯丁香酚)提供了一种用于疏水性和中间肽的电膜萃取系统(亲水性值低于 0.2),其中肽进入 SLM 的萃取主要基于溶剂相互作用。第二种 SLM(1-辛醇/二异丁基酮/二-(2-乙基己基)磷酸酯)成功地提取了疏水性和亲水性肽(亲水性值在-2 到+1 之间),肽的传递主要基于与二-(2-乙基己基)磷酸酯的离子相互作用。第三种 SLM(1-辛醇/15-冠-5 醚)对疏水性肽(负亲水性值)具有选择性,肽与冠醚的络合对于肽进入接受溶液的迁移非常重要。