Jakschitz Thomas A E, Huck Christian W, Lubbad Said, Bonn Günther K
Institute of Analytical Chemistry and Radiochemistry, Leopold-Franzens University, Innrain 52a, 6020 Innsbruck, Austria.
J Chromatogr A. 2007 Apr 13;1147(1):53-8. doi: 10.1016/j.chroma.2007.02.078. Epub 2007 Feb 25.
In this paper the synthesis, optimisation and application of a silane based monolithic copolymer for the rapid separation of proteins and oligonucleotides is described. The monolith was prepared by thermal initiated in situ copolymerisation of trimethylsilyl-4-methylstyrene (TMSiMS) and bis(4-vinylbenzyl)dimethylsilane (BVBDMSi) in a silanised 200 microm I.D. fused silica column. Different ratios of monomer and crosslinker, as well as different ratios of micro- (toluene) and macro-porogen (2-propanol) were used for optimising the physical properties of the stationary phase regarding separation efficiency. The prepared monolithic stationary phases were characterised by measurement of permeability with different solvents, determination of pore size distribution by mercury intrusion porosimetry (MIP). Morphology was studied by scanning electron microscopy (SEM). Applying optimised conditions, a mixture comprised of five standard proteins ribunuclease A, cytochrome c, alpha-lactalbumine, myoglobine and ovalbumine was separated within 1 min by ion-pair reversed-phase liquid chromatography (IP-RPLC) obtaining half-height peak widths between 1.8 and 2.4 s. Baseline separation of oligonucleotides d(pT)(12-18) was achieved within 1.8 min obtaining half-height peak widths between 3.6 and 5.4 s. The results demonstrate the high potential of this stationary phase for fast separation of high-molecular weight biomolecules such as oligonucleotides and proteins.
本文描述了一种基于硅烷的整体共聚物的合成、优化及其在蛋白质和寡核苷酸快速分离中的应用。该整体柱是通过在硅烷化的内径为200微米的熔融石英柱中,使三甲基硅基-4-甲基苯乙烯(TMSiMS)和双(4-乙烯基苄基)二甲基硅烷(BVBDMSi)进行热引发原位共聚制备而成。使用不同比例的单体和交联剂,以及不同比例的微孔致孔剂(甲苯)和大孔致孔剂(2-丙醇)来优化固定相的物理性质以提高分离效率。通过测量不同溶剂的渗透率、用压汞法(MIP)测定孔径分布来表征所制备的整体固定相。通过扫描电子显微镜(SEM)研究其形态。在优化条件下,通过离子对反相液相色谱(IP-RPLC)在1分钟内分离了由核糖核酸酶A、细胞色素c、α-乳白蛋白、肌红蛋白和卵清蛋白组成的五种标准蛋白质混合物,得到的半高峰宽在1.8至2.4秒之间。在1.8分钟内实现了寡核苷酸d(pT)(12 - 18)的基线分离,得到的半高峰宽在3.6至5.4秒之间。结果表明该固定相在快速分离寡核苷酸和蛋白质等高分子量生物分子方面具有很大潜力。