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桥接的乙烯-聚氧化乙烯表面以改善大孔尺寸排阻色谱法的填充材料。

Bridged Ethylene Polyethylene Oxide Surfaces to Improve Packing Materials for Widepore Size Exclusion Chromatography.

机构信息

Consumables and Lab Automation, Waters Corporation, Milford, Massachusetts, USA.

出版信息

J Sep Sci. 2024 Oct;47(20):e202400541. doi: 10.1002/jssc.202400541.

Abstract

Here, we describe the preparation of bridged ethylene polyethylene oxide (BE-PEO) surface-modified silica packing materials for size exclusion chromatography. BE-PEO surface-modified silica was hydrolyzed and subsequent H nuclear magnetic resonance analysis of hydrolysis products confirmed the successful formation of BE-PEO bonded surface. Silica particles exhibiting 3 µm diameters and 1000 Å nominal pore diameters were selected as a base material for this work out of the critical need to improve analytical capabilities for the testing of cell and gene therapy drug products. Accelerated high pH aging study revealed significant enhancement in column stability. Multi-angle light scattering noise measurements showed inordinately lower baseline noise. Moreover, we evaluated the chromatographic performance of BE-PEO silica-packed columns through separations of a protein test mixture, DNA ladder, monoclonal antibody-based therapeutics, and adeno-associated viruses. BE-PEO silica columns demonstrated high resolution, high recovery separations that were confirmed to be reproducible and capable of extended column lifetimes and exhibited low ionic and hydrophobic secondary interactions. In summary, BE-PEO silica particles have yielded a new level of performance, improved base stability, and inherently lower baseline noise. These novel widepore particles will facilitate more sensitive size-based detection and characterization of large biologics in the form of advanced gene therapy products.

摘要

在这里,我们描述了 bridged ethylene polyethylene oxide (BE-PEO) 表面修饰硅胶填充材料的制备,用于尺寸排阻色谱。BE-PEO 表面修饰硅胶经水解,水解产物的 H 核磁共振分析证实了 BE-PEO 键合表面的成功形成。为了提高细胞和基因治疗药物产品的检测能力,我们选择了粒径为 3 µm、标称孔径为 1000 Å 的硅胶颗粒作为这项工作的基础材料。加速高 pH 值老化研究表明,柱稳定性得到显著提高。多角度光散射噪声测量显示出异常低的基线噪声。此外,我们通过蛋白质测试混合物、DNA 梯、单克隆抗体治疗药物和腺相关病毒的分离评估了 BE-PEO 硅胶填充柱的色谱性能。BE-PEO 硅胶柱表现出高分辨率、高回收率的分离,经证实具有重现性和可延长的柱寿命,并表现出低离子和疏水性的二级相互作用。总之,BE-PEO 硅胶颗粒在性能、基础稳定性和固有基线噪声方面都有了新的提升。这些新型的大孔径颗粒将有助于更灵敏地基于尺寸检测和表征高级基因治疗产品等形式的大型生物制剂。

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