Identifying falsified COVID-19 vaccines by analysing vaccine vial label and excipient profiles using MALDI-ToF mass spectrometry.

IF 6.9 1区 医学 Q1 IMMUNOLOGY
Benediktus Yohan Arman, Rebecca Clarke, Tehmina Bharucha, Laura Gomez Fernandez, John Walsby-Tickle, Michael Deats, Sara Mosca, Qianqi Lin, Sneha Banerjee, Shrikrishna R Chunekar, Kundan D Patil, Sunil Gairola, Susanna Dunachie, Hamid A Merchant, Robert Stokes, Rutendo Kuwana, Alexandrine Maes, Jean-Philippe Charrier, Fay Probert, Céline Caillet, Pavel Matousek, James McCullagh, Paul N Newton, Nicole Zitzmann, Bevin Gangadharan
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Abstract

The rapid development and worldwide distribution of COVID-19 vaccines is a remarkable achievement of biomedical research and logistical implementation. However, these developments are associated with the risk of a surge of substandard and falsified (SF) vaccines, as illustrated by the 184 incidents with SF and diverted COVID-19 vaccines which have been reported during the pandemic in 48 countries, with a paucity of methods for their detection in supply chains. In this context, matrix-assisted laser desorption ionisation-time of flight (MALDI-ToF) mass spectrometry (MS) is globally available for fast and accurate analysis of bacteria in patient samples, offering a potentially accessible solution to identify SF vaccines. We analysed the COVISHIELD™ COVID-19 vaccine; falsified versions of which were found in India, Myanmar and Uganda. We demonstrate for the first time that analysis of spectra from the vaccine vial label and its adhesive could be used as a novel approach to detect falsified vaccines. Vials tested by this approach could be retained in the supply chain since it is non-invasive. We also assessed whether MALDI-ToF MS could be used to distinguish the COVISHIELD™ vaccine from surrogates of falsified vaccines and the effect of temperature on vaccine stability. Both polysorbate 80 and L-histidine excipients of the genuine vaccine could be detected by the presence of a unique combination of MALDI-ToF MS peaks which allowed us to distinguish between the genuine vaccines and falsified vaccine surrogates. Furthermore, even if a falsified product contained polysorbate 80 at the same concentration as used in the genuine vaccine, the characteristic spectral profile of polysorbate 80 used in genuine products is a reliable internal marker for vaccine authenticity. Our findings demonstrate that MALDI-ToF MS analysis of extracts from vial labels and the vaccine excipients themselves can be used independently to detect falsified vaccines. This approach has the potential to be integrated into the national regulatory standards and WHO's Prevent, Detect, and Respond strategy as a novel effective tool for detecting falsified vaccines.

通过使用MALDI-ToF质谱分析疫苗瓶标签和辅料谱,识别伪造的COVID-19疫苗。
COVID-19疫苗的快速开发和全球分发是生物医学研究和后勤实施方面的一项显著成就。然而,这些发展与不合格和伪造(SF)疫苗激增的风险有关,正如大流行期间在48个国家报告的184起SF和转移的COVID-19疫苗事件所表明的那样,而供应链中缺乏检测方法。在这种情况下,基质辅助激光解吸电离飞行时间(MALDI-ToF)质谱(MS)在全球范围内可用于快速准确地分析患者样本中的细菌,为鉴定SF疫苗提供了一种潜在的可行解决方案。我们分析了COVISHIELD™COVID-19疫苗;在印度、缅甸和乌干达都发现了伪造的版本。我们首次证明了对疫苗瓶标签及其粘合剂的光谱分析可以作为一种检测伪造疫苗的新方法。通过这种方法测试的小瓶可以保留在供应链中,因为它是非侵入性的。我们还评估了MALDI-ToF MS是否可以用于区分COVISHIELD™疫苗与伪造疫苗的替代品,以及温度对疫苗稳定性的影响。正品疫苗的聚山梨酸酯80和l -组氨酸辅料都可以通过MALDI-ToF MS峰的独特组合来检测,这使我们能够区分正品疫苗和伪造的替代疫苗。此外,即使伪造产品含有与正品疫苗相同浓度的聚山梨酯80,正品产品中使用的聚山梨酯80的特征光谱曲线也是疫苗真实性的可靠内部标记。我们的研究结果表明,MALDI-ToF质谱分析小瓶标签和疫苗辅料本身的提取物可以独立用于检测伪造疫苗。这种方法有可能被纳入国家监管标准和世卫组织的预防、发现和应对战略,作为一种检测伪造疫苗的新型有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
NPJ Vaccines
NPJ Vaccines Immunology and Microbiology-Immunology
CiteScore
11.90
自引率
4.30%
发文量
146
审稿时长
11 weeks
期刊介绍: Online-only and open access, npj Vaccines is dedicated to highlighting the most important scientific advances in vaccine research and development.
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