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Fast Screening of Diol Impurities in Methoxy Poly(Ethylene Glycol)s (mPEG)s by Liquid Chromatography on Monolithic Silica Rods

机译:液相色谱在整体硅胶棒上快速筛选甲氧基聚乙二醇(mPEG)中的二元醇杂质

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摘要

The determination of diol impurities in methoxy poly(ethylene glycol)s (mPEG)s is of high importance, e.g., in the area of pharmaceutical applications, since mPEGs are considered the gold standard—based on properties of biocompatibility, stealth effect against the immune system, and well-established procedures used in PEGylation reactions. Herein, we communicate a straightforward and fast approach for the resolution of the PEGdiol impurities in mPEG products by liquid chromatography on reversed-phase monolithic silica-rods. Thus, we utilize fine, in-house prepared and narrow dispersity mPEGs (Ð ≤ 1.1) and commercial PEGdiol standards as a reference. Most efficient analysis of diol impurities becomes possible with reversed-phase liquid chromatography that results in selective elution of the PEGdiol from mPEG macromolecule populations in partition/adsorption mode. We do this by a minimum selectivity of the population of macromolecules characterizing the narrow molar mass distributions of mPEG. Control experiments with intentionally added water at the start of the well-controlled mPEG synthesis via the living anionic ring opening polymerization of ethylene oxide clearly reconciled the existence of PEGdiol impurity in chromatographed samples. The here-demonstrated methodology allows for the resolution of diol impurities of less than one percent in elution times of only a few minutes, confirmed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) of the collected elution fractions. The unique combination of the open flow-through pore structure of the monolithic silica rods and resultant varying accessibility of C18-derivatized pore surfaces indicates beneficial properties for robust and end-group-specific adsorption/partition liquid chromatography of synthetic macromolecules.
机译:甲氧基聚乙二醇(mPEG)中二醇杂质的测定具有很高的重要性,例如在制药领域,因为基于生物相容性,针对免疫的隐身作用,mPEG被认为是金标准。系统,以及用于PEG化反应的完善程序。在此,我们介绍了一种通过液相色谱在反相整体硅胶棒上分离mPEG产品中的PEG二醇杂质的直接而快速的方法。因此,我们利用精细的,内部制备的和窄分散度的mPEG(?≤1.1)和商业PEG二醇标准液作为参考。用反相液相色谱法进行二醇杂质的最有效分析成为可能,这导致以分配/吸附模式从mPEG大分子种群中选择性洗脱PEG二醇。我们通过表征mPEG窄摩尔质量分布的大分子种群的最小选择性来做到这一点。在通过可控制的mPEG合成开始时,通过环氧乙烷的活性阴离子开环聚合,有意添加水的对照实验清楚地证实了色谱样品中PEG二醇杂质的存在。通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)证实,此处演示的方法仅需几分钟即可将二醇杂质的分离度降低至不足1%。收集的洗脱级分。整体硅胶棒的开放式流通孔结构与C18衍生的孔表面变化的可及性的独特组合表明合成大分子的稳固和特定于端基的吸附/分配液相色谱具有有益的性能。

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