Oak Ridge Institute for Science and Education, Centers for Disease Control and Prevention, Atlanta, GA 30341, USA.
National Center for Environmental Health, Centers for Disease Control and Prevention, Atlanta, GA 30341, USA.
Vaccine. 2023 Jun 13;41(26):3872-3884. doi: 10.1016/j.vaccine.2023.04.044. Epub 2023 May 8.
The advent of mRNA vaccine technology has been vital in rapidly creating and manufacturing COVID-19 vaccines at an industrial scale. To continue to accelerate this leading vaccine technology, an accurate method is needed to quantify antigens produced by the transfection of cells with a mRNA vaccine product. This will allow monitoring of protein expression during mRNA vaccine development and provide information on how changes to vaccine components affects the expression of the desired antigen. Developing novel approaches that allow for high-throughput screening of vaccines to detect changes in antigen production in cell culture prior to in vivo studies could aid vaccine development. We have developed and optimized an isotope dilution mass spectrometry method to detect and quantify the spike protein expressed after transfection of baby hamster kidney cells with expired COVID-19 mRNA vaccines. Five peptides of the spike protein are simultaneously quantified and provide assurance that protein digestion in the region of the target peptides is complete since results between the five peptides had a relative standard deviation of less than 15 %. In addition, two housekeeping proteins, actin and GAPDH, are quantified in the same analytical run to account for any variation in cell growth within the experiment. IDMS allows a precise and accurate means to quantify protein expression by mammalian cells transfected with an mRNA vaccine.
mRNA 疫苗技术的出现对于以工业规模快速生产和制造 COVID-19 疫苗至关重要。为了继续加速这一领先的疫苗技术,需要有一种准确的方法来定量由 mRNA 疫苗产品转染细胞产生的抗原。这将允许在 mRNA 疫苗开发过程中监测蛋白表达,并提供有关疫苗成分变化如何影响所需抗原表达的信息。开发新的方法,允许对疫苗进行高通量筛选,以在体内研究之前检测细胞培养物中抗原产生的变化,可能有助于疫苗开发。我们已经开发并优化了一种同位素稀释质谱法,用于检测和定量用过期 COVID-19 mRNA 疫苗转染婴儿仓鼠肾细胞后表达的刺突蛋白。同时定量五个刺突蛋白的肽段,以确保目标肽段区域的蛋白消化完全,因为五个肽段之间的相对标准偏差小于 15%。此外,在同一分析运行中还定量了两种管家蛋白肌动蛋白和 GAPDH,以解释实验中细胞生长的任何变化。IDMS 通过转染 mRNA 疫苗的哺乳动物细胞提供了一种精确和准确的定量蛋白表达的方法。