Trojer Lukas, Lubbad Said H, Bisjak Clemens P, Wieder Wolfgang, Bonn Günther K
Institute of Analytical Chemistry and Radiochemistry, Leopold-Franzens University of Innsbruck, Innrain 52a, 6020 Innsbruck, Austria.
J Chromatogr A. 2007 Apr 6;1146(2):216-24. doi: 10.1016/j.chroma.2007.02.004. Epub 2007 Feb 8.
Novel monolithic supports (MS/BVPE) were prepared by thermally initiated free radical copolymerisation of p-methylstyrene (MS) and 1,2-bis(p-vinylphenyl)ethane (BVPE). The polymer was synthesised in fused silica capillaries (80 mm x 0.2 mm and 80 mm x 0.53 mm) and in borosilicate glass columns (90 mm x 1.0 mm and 90 mm x 3.0 mm) to yield different HPLC column designs. A comparison of those column dimensions regarding morphology as well as separation efficiency and applicability in bioanalysis is presented. The efficiency towards proteins as well as oligonucleotides was found to be considerably improved with decreasing column I.D. While a 5-protein mixture was baseline separated on all investigated column designs, the separation of small biomolecules like oligonucleotides or peptides on microbore and conventional size glass columns was strongly restricted in terms of resolution due to extensive peak broadening or the occurrence of peak asymmetry. Monolithic MS/BVPE capillary columns up to 0.53 mm I.D., however, proved to be applicable to the fractionation of the whole spectrum of biopolymers, including proteins, peptides, oligonucleotides as well as double-stranded DNA fragments. Due to the fact that reliable chromatography makes great demand on the robustness of the stationary phase, monolithic MS/BVPE capillaries were subjected to a comprehensive reproducibility study including run-to-run as well as batch-to-batch reproducibility.
通过对甲基苯乙烯(MS)和1,2-双(对乙烯基苯基)乙烷(BVPE)进行热引发自由基共聚制备了新型整体式载体(MS/BVPE)。该聚合物在熔融石英毛细管(80 mm×0.2 mm和80 mm×0.53 mm)以及硼硅酸盐玻璃柱(90 mm×1.0 mm和90 mm×3.0 mm)中合成,以得到不同的高效液相色谱柱设计。本文对这些柱尺寸在形态、分离效率以及生物分析适用性方面进行了比较。研究发现,随着柱内径减小,对蛋白质和寡核苷酸的分离效率有显著提高。虽然在所有研究的柱设计上都能实现5种蛋白质混合物的基线分离,但由于峰展宽过大或出现峰不对称,在微径和常规尺寸玻璃柱上对寡核苷酸或肽等小生物分子的分离在分辨率方面受到很大限制。然而,内径达0.53 mm的整体式MS/BVPE毛细管柱被证明适用于包括蛋白质、肽、寡核苷酸以及双链DNA片段在内的全谱生物聚合物的分离。由于可靠的色谱分析对固定相的稳健性有很高要求,因此对整体式MS/BVPE毛细管柱进行了全面的重现性研究,包括批内和批间重现性。