蠕动泵
粒子(生态学)
硅酮
材料科学
生物制药
悬挂(拓扑)
粒径
过滤(数学)
色谱法
复合材料
生物医学工程
化学
机械工程
化学工程
工程类
同伦
地质学
海洋学
统计
纯数学
生物
遗传学
数学
作者
Verena Saller,Julia Matilainen,Ulla Grauschopf,Karoline Bechtold-Peters,Hanns‐Christian Mahler,Wolfgang Frieß
摘要
In a typical manufacturing setup for biopharmaceutical drug products, the fill and dosing pump is placed after the final sterile filtration unit in order to ensure adequate dispensing accuracy and avoid backpressure peaks. Given the sensitivity of protein molecules, peristaltic pumps are often preferred over piston pumps. However, particles may be shed from the silicone tubing employed. In this study, particle shedding and a potential turbidity increase during peristaltic pumping of water and buffer were investigated using three types of commercially available silicone tubing. In the recirculates, mainly particles of around 200 nm next to a very small fraction of particles in the lower micrometer range were found. Using 3D laser scanning microscopy, surface roughness of the inner tubing surface was found to be a determining factor for particle shedding from silicone tubing. As the propensity toward particle shedding varied between tubing types and also cannot be concluded from manufacturer's specifications, individual testing with the presented methods is recommended during tubing qualification. Choosing low abrasive tubing can help to further minimize the very low particle counts to be expected in pharmaceutical drug products.
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