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评估荷电气溶胶检测器用于蛋白质纯度评估。

Evaluation of charged aerosol detector for purity assessment of protein.

机构信息

Johnson & Johnson, Product and Process Scientific Solutions, Analytical Research & Development, Raritan, NJ 08869, USA.

出版信息

J Chromatogr A. 2013 Mar 29;1283:116-21. doi: 10.1016/j.chroma.2013.01.109. Epub 2013 Feb 4.

Abstract

Commercially available protein reference standard materials are widely used for the quantitation of intact proteins in biopharmaceuticals, food, and consumer products. However, the purity of protein reference standard materials are often assumed to be 100% or they may be assigned an inaccurate value because the methods used to determine protein purity often lack specificity and accuracy. In this study, a high performance liquid chromatography system equipped with a charged aerosol detector (HPLC-CAD) was used for universal response detection to provide a practical, specific, accurate, and robust method for the determination of the purity of protein reference standard materials. This work demonstrates the near uniform CAD responses for six proteins with different molecular weights and different structures. Flow injection analysis (FIA) was used to compare protein responses under various mobile phase and diluent compositions. Similar CAD responses for all six proteins were observed when the mobile phase composition included trifluoroacetic acid (TFA) and acetonitrile. These are typical conditions regularly applied to the separation of proteins by reversed phase (RP) chromatography. The universal response feature of the CAD was employed to determine the purity of Bowman-Birk inhibitor (BBI) reference standard material. This protein is an important ingredient in soybean products and has various therapy applications. Three major components were observed in the commercially available reference standard material by reversed phase gradient HPLC, BBI-Native, BBI-Isoform 1, and BBI-Isoform 2 at relative compositions of 60.0%, 34.2%, and 5.8%, respectively.

摘要

市售的蛋白质标准参考物质广泛用于生物制药、食品和消费品中完整蛋白质的定量。然而,由于用于确定蛋白质纯度的方法通常缺乏特异性和准确性,因此通常假设蛋白质标准参考物质的纯度为 100%,或者可能赋予其不准确的值。在这项研究中,使用配备带电气溶胶检测器(HPLC-CAD)的高效液相色谱系统进行通用响应检测,为蛋白质标准参考物质的纯度测定提供了一种实用、特异、准确和稳健的方法。这项工作证明了六种具有不同分子量和不同结构的蛋白质具有近乎均匀的 CAD 响应。流动注射分析(FIA)用于比较不同流动相和稀释剂组成下的蛋白质响应。当流动相组成包括三氟乙酸(TFA)和乙腈时,观察到所有六种蛋白质的相似 CAD 响应。这些是通常应用于反相(RP)色谱分离蛋白质的典型条件。CAD 的通用响应特性被用于确定 Bowman-Birk 抑制剂(BBI)标准参考物质的纯度。这种蛋白质是大豆制品的重要成分,具有多种治疗应用。通过反相梯度 HPLC 观察到市售参考标准物质中的三种主要成分,BBI-Native、BBI-Isoform 1 和 BBI-Isoform 2 的相对组成分别为 60.0%、34.2%和 5.8%。

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