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用于支持mRNA生产工艺开发的mRNA转录反应的阴离子交换高效液相色谱监测。

Anion exchange HPLC monitoring of mRNA transcription reactions to support mRNA manufacturing process development.

作者信息

Welbourne Emma N, Loveday Kate A, Nair Adithya, Nourafkan Ehsan, Qu Jixin, Cook Ken, Kis Zoltán, Dickman Mark J

机构信息

Department of Chemical and Biological Engineering, University of Sheffield, Sheffield, United Kingdom.

ThermoFisher Scientific, Hemel Hempstead, United Kingdom.

出版信息

Front Mol Biosci. 2024 Mar 7;11:1250833. doi: 10.3389/fmolb.2024.1250833. eCollection 2024.

Abstract

mRNA technology has recently demonstrated the ability to significantly change the timeline for developing and delivering a new vaccine from years to months. The potential of mRNA technology for rapid vaccine development has recently been highlighted by the successful development and approval of two mRNA vaccines for COVID-19. Importantly, this RNA-based approach holds promise for treatments beyond vaccines and infectious diseases, e.g., treatments for cancer, metabolic disorders, cardiovascular conditions, and autoimmune diseases. There is currently significant demand for the development of improved manufacturing processes for the production of mRNA therapeutics in an effort to increase their yield and quality. The development of suitable analytical methods for the analysis of mRNA therapeutics is critical to underpin manufacturing development and the characterisation of the drug product and drug substance. In this study we have developed a high-throughput, high-performance liquid chromatography (HPLC) workflow for the rapid analysis of mRNA generated using transcription (IVT). We have optimised anion exchange (AEX) HPLC for the analysis of mRNA directly from IVT. Chromatography was performed in under 6 min enabling separation of all of the key components in the IVT, including nucleoside triphosphates (NTPs), Cap analogue, plasmid DNA and mRNA product. Moreover, baseline separation of the NTPs was achieved, which facilitates accurate quantification of each NTP such that their consumption may be determined during IVT reactions. Furthermore, the HPLC method was used to rapidly assess the purification of the mRNA product, including removal of NTPs/Cap analogue and other contaminants after downstream purification, including solid phase extraction (SPE), oligo deoxythymidine (oligo-dT) affinity chromatography and tangential flow filtration (TFF). Using the developed method excellent precision was obtained with calibration curves for an external mRNA standard and NTPs giving correlation coefficients of 0.98 and 1.0 respectively. Intra- and inter-day studies on retention time stability of NTPs, showed a relative standard deviation ≤ 0.3% and ≤1.5% respectively. The mRNA retention time variability was ≤0.13%. This method was then utilised to monitor the progress of an IVT reaction for the production of Covid spike protein (C-Spike) mRNA to measure the increasing yield of mRNA alongside the consumption of NTPs during the reaction.

摘要

mRNA技术最近显示出有能力显著改变新疫苗的研发和交付时间线,从数年缩短至数月。两种用于COVID-19的mRNA疫苗的成功研发和获批,最近凸显了mRNA技术在快速疫苗研发方面的潜力。重要的是,这种基于RNA的方法有望用于疫苗和传染病之外的治疗,例如癌症、代谢紊乱、心血管疾病和自身免疫性疾病的治疗。目前,人们对开发改进的mRNA治疗药物生产工艺有很大需求,以提高其产量和质量。开发适用于分析mRNA治疗药物的分析方法对于支持生产工艺开发以及药物产品和原料药的表征至关重要。在本研究中,我们开发了一种高通量、高效液相色谱(HPLC)工作流程,用于快速分析通过体外转录(IVT)生成的mRNA。我们优化了阴离子交换(AEX)HPLC,用于直接分析来自IVT的mRNA。色谱分析在6分钟内完成,能够分离IVT中的所有关键成分,包括核苷三磷酸(NTP)、帽类似物、质粒DNA和mRNA产物。此外,实现了NTP的基线分离,这有助于准确定量每个NTP,从而可以在IVT反应过程中确定它们的消耗情况。此外,HPLC方法用于快速评估mRNA产物的纯化情况,包括在下游纯化(包括固相萃取(SPE)、寡聚脱氧胸苷(oligo-dT)亲和色谱和切向流过滤(TFF))后去除NTP/帽类似物和其他污染物。使用所开发的方法,外部mRNA标准品和NTP的校准曲线获得了出色的精密度,相关系数分别为0.98和1.0。关于NTP保留时间稳定性的日内和日间研究表明,相对标准偏差分别≤0.3%和≤1.5%。mRNA保留时间的变异性≤0.13%。然后利用该方法监测用于生产新冠刺突蛋白(C-Spike)mRNA的IVT反应进程,以测量反应过程中mRNA产量的增加以及NTP的消耗情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52bd/10955092/18e5fa2ce513/fmolb-11-1250833-g001.jpg

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