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使用含二硫键的肽作为内标物,通过 UHPLC-HRMS 定量测定猴血清中的聚乙二醇化蛋白:一种新的用于生物分析和富含二硫键蛋白治疗剂体内稳定性评价的方法。

Quantitation of a PEGylated protein in monkey serum by UHPLC-HRMS using a surrogate disulfide-containing peptide: A new approach to bioanalysis and in vivo stability evaluation of disulfide-rich protein therapeutics.

机构信息

Analytical & Bioanalytical Development, Bristol-Myers Squibb Company, Princeton, NJ 08543, USA.

Analytical & Bioanalytical Development, Bristol-Myers Squibb Company, Princeton, NJ 08543, USA.

出版信息

Anal Chim Acta. 2016 Apr 15;916:42-51. doi: 10.1016/j.aca.2016.02.017. Epub 2016 Feb 20.

Abstract

To quantify a therapeutic PEGylated protein in monkey serum as well as to monitor its potential in vivo instability and methionine oxidation, a novel ultra high performance liquid chromatography-high resolution mass spectrometric (UHPLC-HRMS) assay was developed using a surrogate disulfide-containing peptide, DCP(SS), and a confirmatory peptide, CP, a disulfide-free peptide. DCP(SS) was obtained by eliminating the step of reduction/alkylation before trypsin digestion. It contains an intact disulfide linkage between two peptide sequences that are essential for drug function but susceptible to potential in vivo cleavages. HRMS-based single ion monitoring (SIM) on a Q Exactive™ mass spectrometer was employed to improve assay specificity and sensitivity for DCP(SS) due to its poor fragmentation and low sensitivity with SRM detection. The assay has been validated for the protein drug in monkey serum using both surrogate peptides with excellent accuracy (within ±4.4%Dev) and precision (within 7.5%CV) with a lower limit of quantitation (LLOQ) at 10 ng mL(-1). The protein concentrations in monkey serum obtained from the DCP(SS)-based assay not only provided important pharmacokinetic parameters, but also confirmed in vivo stability of the peptide regions of interest by comparing drug concentrations with those obtained from the CP-based assay or from a ligand-binding assay (LBA). Furthermore, UHPLC-HRMS allowed simultaneous monitoring of the oxidized forms of both surrogate peptides to evaluate potential ex vivo/in vivo oxidation of one methionine present in each of both surrogate peptides. To the best of our knowledge, this is the first report of using a surrogate disulfide-containing peptide for LC-MS bioanalysis of a therapeutic protein.

摘要

为了定量测定猴血清中的治疗性聚乙二醇化蛋白,并监测其潜在的体内不稳定性和蛋氨酸氧化,我们开发了一种新型的超高效液相色谱-高分辨质谱(UHPLC-HRMS)分析方法,使用了一种替代的含有二硫键的肽段 DCP(SS)和一种确证肽段 CP(无二硫键的肽段)。DCP(SS)是通过在胰蛋白酶消化前省略还原/烷基化步骤获得的。它包含两个肽序列之间的完整二硫键连接,这些序列对于药物功能至关重要,但容易受到潜在的体内切割的影响。在 Q Exactive™质谱仪上基于高分辨质谱的单离子监测(SIM)被用于提高 DCP(SS)分析方法的特异性和灵敏度,因为它的碎片较少,并且与 SRM 检测相比灵敏度较低。该分析方法已使用替代肽对猴血清中的蛋白药物进行了验证,具有出色的准确性(偏差在±4.4%以内)和精密度(变异系数在 7.5%以内),定量下限(LLOQ)为 10ng/mL。基于 DCP(SS)的分析方法获得的猴血清中的蛋白浓度不仅提供了重要的药代动力学参数,还通过与 CP 分析方法或配体结合分析(LBA)获得的药物浓度进行比较,证实了感兴趣肽段的体内稳定性。此外,UHPLC-HRMS 允许同时监测两种替代肽的氧化形式,以评估每个替代肽中存在的一个蛋氨酸的潜在体外/体内氧化。据我们所知,这是首次报道使用含有二硫键的替代肽进行治疗性蛋白的 LC-MS 生物分析。

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