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通过液相色谱-串联质谱法对单克隆抗体进行体内脱酰胺化表征

In vivo deamidation characterization of monoclonal antibody by LC/MS/MS.

作者信息

Huang Lihua, Lu Jirong, Wroblewski Victor J, Beals John M, Riggin Ralph M

机构信息

Biopharmaceutical Product Development, Biotechnology Discovery Research, Drug Disposition Development/Commercialization, and Manufacturing Science and Technology, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.

出版信息

Anal Chem. 2005 Mar 1;77(5):1432-9. doi: 10.1021/ac0494174.

Abstract

The spontaneous nonenzymatic deamidation of glutaminyl and asparaginyl residues of peptides and proteins has been observed both in vitro and in vivo. Deamidation may change the structure and function of a peptide or protein, potentially resulting in decreased bioactivity, as well as alterations in pharmacokinetics and antigenicity of the protein pharmaceutical. Therefore, it is necessary to monitor the effect of storage and formulation conditions on deamidation of a protein drug candidate. Of particular interest is the investigation of in vivo deamidation mechanisms of protein drug candidates. Several methods are available to characterize the deamidation of peptides and proteins. We present here a LC/MS/MS method used to evaluate the deamidation of an antibody after in vivo administration. A humanized monoclonal IgG1 antibody (MAb) has several "hot spots" for spontaneous deamidation. One site, amino acid residue Asn55 located in the CDR2 region of the heavy chain, is of particular interest since deamidation at this site greatly decreases the binding activity. MAb was administered to cynomolgus monkeys by intravenous and subcutaneous routes. At various times after dosing, monkey serum was prepared and MAb captured by the immobilized antigen or a goat anti-human IgG Fcgamma antibody. The captured MAb was treated with trypsin followed by endoproteinase Glu-C. The digests were separated on RP-HPLC and analyzed by MS/MS on Q-Tof Global mass spectrometer. Using this method, we were able to determine the deamidation half-life of amino acid residue Asn55 in vivo and the ratio of the deamidated derivatives, i.e., isoAsp55 and Asp55. The method is rapid and sensitive with low-nanogram quantities of protein detected in the biological matrix.

摘要

肽和蛋白质中谷氨酰胺残基和天冬酰胺残基的自发非酶脱酰胺作用在体外和体内均有观察到。脱酰胺作用可能会改变肽或蛋白质的结构与功能,有可能导致生物活性降低,以及蛋白质药物的药代动力学和抗原性发生改变。因此,有必要监测储存和制剂条件对候选蛋白质药物脱酰胺作用的影响。特别令人感兴趣的是对候选蛋白质药物体内脱酰胺机制的研究。有几种方法可用于表征肽和蛋白质的脱酰胺作用。我们在此介绍一种用于评估体内给药后抗体脱酰胺作用的液相色谱/串联质谱法。一种人源化单克隆IgG1抗体(MAb)有几个自发脱酰胺的“热点”。其中一个位点,位于重链CDR2区域的氨基酸残基Asn55,特别值得关注,因为该位点的脱酰胺作用会大大降低结合活性。通过静脉和皮下途径将MAb给予食蟹猴。给药后的不同时间,制备猴血清,并用固定化抗原或山羊抗人IgG Fcγ抗体捕获MAb。捕获的MAb先用胰蛋白酶处理,然后用谷氨酸内肽酶C处理。消化产物在反相高效液相色谱上分离,并在Q-Tof Global质谱仪上通过串联质谱分析。使用该方法,我们能够确定体内氨基酸残基Asn55的脱酰胺半衰期以及脱酰胺衍生物即异天冬氨酸55和天冬氨酸55的比例。该方法快速且灵敏,能在生物基质中检测到低至纳克量的蛋白质。

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