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ACOUSTIC CELL CONCENTRATION, WASHING PERFUSION FOR CELLULAR THERAPY MANUFACTURING

机译:声学电池浓度,洗涤和灌注细胞治疗制造

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A major wave of promising cellular therapies is progressing through clinical trials, such that engineers and scientists need to address the challenges of economically ensuring the manufacture of safe and efficacious cell therapy products. These processes often depend on devices and methods that were developed for only related blood cell processing or vaccine manufacturing. Thus, we are in a window of opportunity to tailor innovative technologies to address the emerging specialized needs of cell therapy manufacturing. Concentrating and washing cells between stages is a repeated bioprocess unit operation, such as to transfer cells from culture medium to cryopreservation medium. Especially for small-scale autologous therapies, cell washing is not well performed by closed-system centrifuges or filters, including due to the loss of potentially lifesaving cells. We previously developed an acoustic cell separation device that has been widely used for 20 years as part of mammalian cell perfusion bioreactors. This non-fouling filter technology uses gentle ultrasonic standing wave forces to separate cells from medium based on density and compressibility differences. We have now adapted this technology to concentrate and then wash cells at high concentrations, so as to reduce the wash volumes by an order of magnitude, thereby reducing the process cost of goods compared to centrifuge washing. The device operation has been optimized to obtain greater than 99.9% washing with 95% washed cell recoveries, such that this acoustic technology could become the method of choice for cell therapy bioprocessing. We also have recently enhanced automated acoustic devices to perfuse over 140 million cell/mL cultures, maintaining >99% cell separation efficiencies. With the simplicity of no physical filter barrier or mechanical moving parts, this tailored technology provides a high performance closed manufacturing device, to perfuse, concentrate and wash cells. The development of robust and economical means of mammalian cell manufacturing is on the critical path to ensuring that promising innovative therapies can become widely available to innumerable patients in dire need.
机译:有前途的细胞疗法的主要浪潮正在通过临床试验进行,使工程师和科学家需要解决经济上确保安全和有效的细胞治疗产品的挑战。这些过程通常依赖于仅为仅用于相关的血细胞处理或疫苗制造而开发的装置和方法。因此,我们在一个机会窗口,以定制创新技术,以解决细胞疗法制造的新兴专业需求。级联之间的浓缩和洗涤电池是重复的生物过程单元操作,例如将来自培养基中的细胞转移到冷冻保存介质。特别是对于小型自体疗法,通过闭合系统离心机或过滤器进行细胞洗涤,包括由于潜在的救生细胞的损失。我们之前开发了一种声学电池分离装置,其被广泛使用20年作为哺乳动物细胞灌注生物反应器的一部分。这种非污垢过滤器技术使用柔和的超声波驻波力根据密度和压缩性差异将细胞分离。我们现在调整了这种技术浓缩,然后在高浓度下洗涤细胞,以便将洗涤体减少到数量级,从而降低了与离心洗涤相比的货物的工艺成本。器件操作已被优化,以获得大于99.9%的洗涤,用95%洗涤的细胞回收,使得该声学技术可能成为细胞疗法生物处理的选择方法。我们还拥有最近增强了自动声学装置,以灌注超过1.4亿细胞/ mL培养物,维持> 99%的细胞分离效率。随着没有物理过滤障碍或机械运动部件的简单性,这种量身定制的技术提供了一种高性能的封闭制造装置,以灌注,浓缩和洗涤细胞。哺乳动物细胞制造业的强大和经济手段的发展是在确保有前途的创新疗法可能被广泛可见的患者需求中可达的关键途径。

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