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质量平衡法用于合成缩宫素的 SI 可溯源纯度赋值。

Mass balance method for SI-traceable purity assignment of synthetic oxytocin.

机构信息

Division of Chemical Metrology and Analytical Science, National Institute of Metrology, Beijing 100029, PR China.

Division of Chemical Metrology and Analytical Science, National Institute of Metrology, Beijing 100029, PR China.

出版信息

J Pharm Biomed Anal. 2022 Jan 5;207:114401. doi: 10.1016/j.jpba.2021.114401. Epub 2021 Sep 29.

Abstract

Oxytocin is not only a significant peptide drug for enhancing uterine contractions, but also an emerging biomarker and therapeutic target of mental disorders in clinical practice. There is a pressing need for the standardization of oxytocin assays because of its low pharmaceutical quality and large variations among measurement approaches. International System of Units (SI)-traceable analytical methods and well-characterized pure reference materials are urgently needed to set up standard reference measurement systems in laboratory medicine, ensuring the accuracy and comparability of test results. Herein, the purity assignment of a synthetic oxytocin containing a disulfide linkage was established based on a mass balance method, which had never been performed for a cross-linked peptide. An in-house validated liquid chromatography-high-resolution tandem mass spectrometry method was developed for the determination of structurally-related impurities in the study material. Twenty-one structurally-related impurities including deamidations, oxidations, and amino acid insertions, etc. ranging from 0.05 mg g to 15.65 mg g were identified and quantified by applying a hierarchy calibration concept. This study subsequently discusses a fit for purpose assessment for non-peptide related impurities including water, non-volatile counterions, inorganic elements, and volatile organic compounds that were determined using coulometric Karl Fischer titration, ion chromatography, inductively coupled plasma mass spectrometry, and headspace gas chromatography-mass spectrometry, respectively. The resulting assigned value (796.5 mg g) is determined to be traceable to SI associated with a small measurement uncertainty of 6.5 mg g (k = 2). The method developed in this study has been verified through an international key comparison jointly coordinated by the Bureau International des Poids et Mesures and the National Institute of Metrology.

摘要

催产素不仅是一种用于增强子宫收缩的重要肽类药物,也是临床精神疾病新兴的生物标志物和治疗靶点。由于其药物质量低,测量方法差异大,因此迫切需要对催产素进行标准化检测。国际单位制(SI)可溯源的分析方法和经过充分表征的纯参考物质对于在实验室医学中建立标准参考测量系统非常必要,可确保检测结果的准确性和可比性。在此,我们根据质量平衡法对含有二硫键的合成催产素的纯度赋值进行了建立,这是交联肽从未进行过的操作。建立了一种内部验证的液相色谱-高分辨串联质谱法,用于研究物质中结构相关杂质的测定。通过应用层次校准概念,鉴定并定量了 21 种结构相关杂质,包括脱酰胺、氧化和氨基酸插入等,其含量范围为 0.05mg/g 至 15.65mg/g。本研究随后讨论了对非肽相关杂质(包括水、不可挥发的抗衡离子、无机元素和挥发性有机化合物)的适用性评估,这些杂质分别采用库仑卡尔费休滴定、离子色谱、电感耦合等离子体质谱和顶空气相色谱-质谱法进行测定。最终确定的赋值(796.5mg/g)可溯源至 SI,其测量不确定度为 6.5mg/g(k=2)。本研究中建立的方法已通过国际计量局和中国计量科学研究院共同协调的国际关键比对进行了验证。

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