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LC-MS/MS 生物制药聚糖分析:鉴定理想的参考物质特征。

LC-MS/MS biopharmaceutical glycoanalysis: identification of desirable reference material characteristics.

机构信息

National Institute of Standards and Technology, Analytical Chemistry Division, Gaithersburg, MD 20899, USA.

出版信息

Anal Bioanal Chem. 2012 Jun;403(8):2279-89. doi: 10.1007/s00216-012-5749-5. Epub 2012 Feb 22.

Abstract

Glycosylation, the enzymatic addition of carbohydrates to a protein, is one of the most abundant post-translational modifications found in nature. There is variability in the number, location, and identity of glycans attached. As a result, a glycoprotein consists of a number of glycoforms with different combinations of glycans, potentially resulting in different stability, toxicity, and activity. This is especially important in the biopharmaceutical industry where product consistency and safety are vital. Glycoprotein analysis involves numerous mass spectrometry based techniques, each of which provides various aspects of characterization. The current paper describes two commonly used analytical techniques for glycoprotein characterization. In one experiment, nonspecific proteolysis is combined with a two-tiered mass spectrometry approach (MALDI-TOF and LC-MS/MS) to gain glycosylation site and glycan identity. In a second approach, glycans were enzymatically released, labeled with a fluorescent dye, and analyzed using LC-Fluorescence-MS/MS to give glycan identification and relative quantification. The type and degree of information yielded by each method is assessed in an effort to identify desired reference material characteristics for improving biopharmaceutical glycoanalysis.

摘要

糖基化是指在蛋白质上添加碳水化合物的酶促反应,是自然界中最丰富的翻译后修饰之一。糖基化的数量、位置和种类都存在可变性。因此,糖蛋白由许多具有不同糖基化组合的糖型组成,可能导致不同的稳定性、毒性和活性。这在生物制药行业尤为重要,因为产品的一致性和安全性至关重要。糖蛋白分析涉及许多基于质谱的技术,每种技术都提供了不同的特征描述方面。本文描述了两种常用于糖蛋白特征描述的分析技术。在一个实验中,非特异性蛋白水解与两级质谱方法(MALDI-TOF 和 LC-MS/MS)相结合,以获得糖基化位点和聚糖种类。在第二种方法中,聚糖通过酶解释放,用荧光染料标记,并通过 LC-荧光-MS/MS 进行分析,以确定聚糖种类和相对定量。通过评估每种方法产生的信息量和程度,确定了改善生物制药糖分析所需的参考物质特征。

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