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首页> 外文期刊>Food Technology and Biotechnology >Ion-exchange sample displacement chromatography as a method for fast and simple isolation of low- and high-abundance proteins from complex biological mixtures. (Special Issue: Contains selected manuscripts dedicated to the memory of long-time Editor-in-Chief Prof. Pavao Mildner.)
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Ion-exchange sample displacement chromatography as a method for fast and simple isolation of low- and high-abundance proteins from complex biological mixtures. (Special Issue: Contains selected manuscripts dedicated to the memory of long-time Editor-in-Chief Prof. Pavao Mildner.)

机译:离子交换样品置换色谱法可从复杂的生物混合物中快速简便地分离低丰度和高丰度蛋白质。 (特刊:包含一些精选的手稿,以纪念长期担任总编辑的帕瓦·米尔德纳教授。)

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Sample displacement chromatography (SDC) in reversed phase and ion-exchange modes was introduced at the end of 1980s. This chromatographic method was first used for preparative purification of synthetic peptides, and subsequently adapted for protein fractionation, mainly in anion-exchange mode. In the past few years, SDC has been successfully used for enrichment of low- and medium-abundance proteins from complex biological fluids on both monolithic and bulk chromatographic supports. If aqueous mobile phase is used with the application of mild chromatographic conditions, isolated proteins are not denatured and can also keep their biological activity. In this paper, the use of SDC in anion-exchange mode on a high-capacity chromatographic resin for separation of proteins from complex biological mixtures such as human plasma is demonstrated. By use of three and more columns coupled in series during sample application, and subsequent parallel elution of detached columns, additional separation of bound proteins was achieved. Highly enriched human serum albumin fraction and a number of physiologically active medium- and low-abundance proteins could be fractionated and detected by electrospray ionization tandem mass spectrometry (ESI-MS/MS) and matrix-assisted laser desorption/ionization time-of-flight tandem mass spectrometry (MALDI-TOF/TOF-MS). The use of the aforementioned columns that can be sanitized with 1 M sodium hydroxide for further application of SDC in biotechnology and food technology was discussed.
机译:在1980年代末引入了反相和离子交换模式的样品置换色谱(SDC)。这种色谱方法首先用于合成肽的制备纯化,然后主要用于阴离子交换模式,适用于蛋白质分离。在过去的几年中,SDC已成功用于从整体和整体色谱支持物上的复杂生物流体中富集低和中丰度蛋白质。如果在温和的色谱条件下使用水性流动相,则分离的蛋白质不会变性,也可以保持其生物学活性。在本文中,展示了在高容量色谱树脂上以阴离子交换模式使用SDC从复杂的生物混合物(例如人血浆)中分离蛋白质的方法。通过在样品上样过程中使用三个或更多个串联连接的色谱柱,以及随后平行洗脱分离的色谱柱,可以实现结合蛋白的额外分离。可以通过电喷雾电离串联质谱(ESI-MS / MS)和基质辅助激光解吸/电离飞行时间对高浓缩的人血清白蛋白级分和许多具有生理活性的中低丰度蛋白质进行分离和检测串联质谱(MALDI-TOF / TOF-MS)。讨论了可以使用1 M氢氧化钠消毒的上述色谱柱在生物技术和食品技术中进一步应用SDC的用途。

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