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ROCESS INTENSIFICATION FOR PRODUCTION OF A PESTE DES PETITES RUMINANTS VIRUS (PPRV) VACCINE

机译:用于生产Peste des Petites反刍动物病毒(PPRV)疫苗的陶诗强度

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Peste des Petites Ruminants Virus (PPRV) is a highly contagious disease affecting small ruminants in Africa and Asian countries, with negative/significant economic impact. Aiming to eradicate the disease, a novel/scalable PPRV vaccine production process is clearly needed. Built upon work previously done at iBET, a new production process is herein proposed using Vero cells growing on microcarriers, serum-free medium (SFM) and stirred-tank bioreactors (STB). This includes a new method for cells detachment from microcarriers, and perfusion culture for reducing turnaround time. The PPRV vaccine production process was developed in 2L STB (BIOSTAT DCU-3, Sartorius) using Nigeria 75/1 strain. Engineering correlations (e.g. shear stress and Eddy size) were used to optimize culture conditions. Vero cells were adapted to grow in ProVero?-1 SFM (Sartorius). A new enzymatic and mechanical method for in situ cell detachment from microcarriers was designed. PBS washing, TrypLE Select and trypsin inhibitor concentrations, and stirring rates were the variables explored. Perfusion culture was evaluated in 2L STB (equipped with spin-filter) in order to reduce seed-train preparation time. PPRV were clarified using depth filtration (Sartopure PP2, Sartorius). Vero cells were adapted to ProVero?-1 SFM, reaching growth rates of 0.03 h~(-1) (similar to serum-containing cultures). The new in situ cell detachment method was successfully implemented, with yields above 80%; no impact on cell re-attachment or virus productivity was observed. A two-fold increase in maximum cell concentration was obtained using perfusion when compared to batch culture. Combining the new in situ cell detachment method with perfusion culture will enable the scale-up to 20L STB directly from a 2L STB, surpassing the need for a mid-scale platform and thus reducing seed-train preparation time. The potential of depth filtration for PPRV clarification (upon microcarriers sedimentation) could be confirmed, with yields up to 90%. Process scalability will be validated at the 20L scale in Sartorius BIOSTAT C-Plus (using engineering correlations such as shear stress and Kolmogorov-Eddy size as scale-up criteria) by comparing cells growth, metabolic and PPRV production kinetics to those achieved in 2L STB. In conclusion, the novel/scalable vaccine production process herein proposed has potential to assist the upcoming vaccination program for eradication of PPRV disease.
机译:Peste des Petites反刍动物病毒(PPRV)是一种高度传染性的疾病,影响非洲和亚洲国家的小反刍动物,具有负面/显着的经济影响。旨在消除该疾病,清楚地需要一种新型/可扩展的PPRV疫苗生产过程。在先前在IBET完成的工作之上,本文使用在微载体上生长的Vero细胞,血清培养基(SFM)和搅拌罐生物反应器(STB)进行了新的生产过程。这包括一种用于从微载体的细胞脱离的新方法,以及用于减少周转时间的灌注培养物。使用尼日利亚75/1菌株在2L STB(Biostat DCu-3,Sartorius)中开发了PPRV疫苗生产过程。工程相关性(例如剪切应力和涡尺寸)用于优化培养条件。 Vero细胞适于在普罗伊族α-1 SFM(Sartorius)中生长。设计了一种新的酶促和机械方法,用于从微载体的原位细胞脱离。 PBS洗涤,Tryple选择和胰蛋白酶抑制剂浓度,搅拌率是探索的变量。在2L STB(配备有自旋过滤器)中评价灌注培养,以减少种子列车制备时间。使用深度过滤(Sartopure PP2,Sartorius)澄清PPRV。 Vero细胞适应于克罗遍的α-1 sfm,达到0.03h〜(-1)的生长速率(类似于含血清培养物)。成功实施了新的原位细胞脱离方法,产量高于80%;观察到对细胞重新附着或病毒生产率的影响。与分批培养相比,使用灌注获得最大细胞浓度的两倍增加。结合灌注培养的新的原位细胞分离方法将直接从2L STB直接测量到20L STB,超过中型平台的需求,从而减少种子列车准备时间。可以证实PPRV澄清(对微载体沉降)进行深度过滤的电位,产率高达90%。通过将细胞生长,代谢和PPRV生产动力学与在2LSTB所达到的人中,将在Sartorius Biostat C-Plus(剪切应力和Kolmogorov-Eddy尺寸等剪切应力和Kolmogorov-red尺寸)的20L规模处验证了工艺可扩展性。 。总之,本文提出了新的/可扩展的疫苗生产方法,有助于协助即将到来的疫苗接种计划来消除PPRV疾病。

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