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采用手持式空间偏移拉曼光谱(SORS)技术,通过未开封小瓶对假冒 COVID-19 疫苗进行快速检测的创新方法。

Innovative method for rapid detection of falsified COVID-19 vaccines through unopened vials using handheld Spatially Offset Raman Spectroscopy (SORS).

机构信息

Central Laser Facility, Research Complex at Harwell, STFC Rutherford Appleton Laboratory, UKRI, Harwell Campus, OX11 0QX, UK.

Agilent Technologies LDA UK, Becquerel Avenue, Didcot OX11 0RA, UK.

出版信息

Vaccine. 2023 Nov 13;41(47):6960-6968. doi: 10.1016/j.vaccine.2023.10.012. Epub 2023 Oct 20.

Abstract

Preventing, detecting, and responding to substandard and falsified vaccines is of critical importance for ensuring the safety, efficacy, and public trust in vaccines. This is of heightened importance in context of public health crisis, such as the COVID-19 pandemic, in which extreme world-wide shortages of vaccines provided a fertile ground for exploitation by falsifiers. Here, a proof-of-concept study explored the feasibility of using a handheld Spatially Offset Raman Spectroscopy (SORS) device to authenticate COVID-19 vaccines through rapid analysis of unopened vaccine vials. The results show that SORS can verify the chemical identity of dominant excipients non-invasively through vaccine vial walls. The ability of SORS to identify potentially falsified COVID-19 vaccines was demonstrated by measurement of surrogates for falsified vaccines contained in vaccine vials. In all cases studied, the SORS technique was able to differentiate between surrogate samples from the genuine COVISHIELD™ vaccine. The genuine vaccines tested included samples from six batches across two manufacturing sites to account for any potential variations between batches or manufacturing sites. Batch and manufacturing site variations were insignificant. In conjunction with existing security features, for example on labels and packaging, SORS provided an intrinsic molecular fingerprint of the dominant excipients of the vaccines. The technique could be extended to other COVID-19 and non-COVID-19 vaccines, as well as other liquid medicines. As handheld and portable SORS devices are commercially available and widely used for other purposes, such as airport security, they are rapidly deployable non-invasive screening tools for vaccine authentication.

摘要

预防、检测和应对劣质和假冒疫苗对于确保疫苗的安全性、有效性和公众对疫苗的信任至关重要。在公共卫生危机(如 COVID-19 大流行)背景下,这一点尤为重要,因为全球疫苗极度短缺,为造假者提供了可乘之机。在这里,一项概念验证研究探索了使用手持式空间偏移拉曼光谱(SORS)设备通过快速分析未开封的疫苗小瓶来验证 COVID-19 疫苗的可行性。结果表明,SORS 可以通过疫苗小瓶壁无创地验证主要赋形剂的化学身份。SORS 能够通过测量疫苗小瓶中包含的假冒疫苗的替代品来识别潜在的假冒 COVID-19 疫苗。在所研究的所有情况下,SORS 技术都能够区分来自真实 COVISHIELD™疫苗的替代品样本。测试的真实疫苗包括来自两个制造地点的六个批次的样本,以说明批次或制造地点之间可能存在的任何差异。批次和制造地点的差异并不明显。与现有的安全特征(例如标签和包装)相结合,SORS 提供了疫苗主要赋形剂的固有分子指纹。该技术可以扩展到其他 COVID-19 和非 COVID-19 疫苗以及其他液体药物。由于手持式和便携式 SORS 设备已在商业上可用并广泛用于其他用途,例如机场安全,因此它们是可快速部署的非侵入性疫苗认证筛选工具。

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