Vaccine Process Research & Development, Merck & Co., Inc., Rahway, New Jersey, USA.
Vaccine Analytical Research & Development, Merck & Co., Inc., Rahway, New Jersey, USA.
Biotechnol J. 2022 Oct;17(10):e2200191. doi: 10.1002/biot.202200191. Epub 2022 Jul 28.
During the development of a SARS-CoV-2 vaccine candidate, at the height of the COVID-19 pandemic, raw materials shortages, including chromatography resins, necessitated the determination of a cleaning in place (CIP) strategy for a multimodal core-shell resin both rapidly and efficiently. Here, the deployment of high throughput (HT) techniques to screen CIP conditions for cleaning Capto Core 700 resin exposed to clarified cell culture harvest (CCCH) of a SARS-CoV-2 vaccine candidate produced in Vero adherent cell culture are described. The best performing conditions, comprised of 30% n-propanol and ≥0.75 N NaOH, were deployed in cycling experiments, completed with miniature chromatography columns, to demonstrate their effectiveness. The success of the CIP strategy was ultimately verified at the laboratory scale. Here, its impact was assessed across the entire purification process which also included an ultrafiltration/diafiltration step. It is shown that the implementation of the CIP strategy enabled the re-use of the Capto Core 700 resin for up to 10 cycles without any negative impact on the purified product. Hence, the strategic combination of HT and laboratory-scale experiments can lead rapidly to robust CIP procedures, even for a challenging to clean resin, and thus help to overcome supply shortages.
在 SARS-CoV-2 疫苗候选物的开发过程中,正值 COVID-19 大流行之际,原材料短缺,包括色谱树脂,这使得有必要快速有效地确定多模式核壳树脂的原位清洁 (CIP) 策略。在这里,描述了高通量 (HT) 技术在筛选 Capto Core 700 树脂清洁条件方面的应用,该树脂暴露于在 Vero 贴壁细胞培养物中生产的 SARS-CoV-2 疫苗候选物的澄清细胞培养收获物 (CCCH) 中。表现最佳的条件由 30%n-丙醇和≥0.75N NaOH 组成,在微型色谱柱上完成循环实验,以证明其有效性。最终在实验室规模上验证了 CIP 策略的成功。在这里,评估了它在整个纯化过程中的影响,其中还包括超滤/渗滤步骤。结果表明,实施 CIP 策略可使 Capto Core 700 树脂重复使用多达 10 次,而对纯化产物没有任何负面影响。因此,HT 和实验室规模实验的战略组合可以快速产生稳健的 CIP 程序,即使对于难以清洁的树脂也是如此,从而有助于克服供应短缺问题。