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High-throughput screening of antibody-expressing CHO clones using an automated shaken deep-well system

机译:使用自动摇动深井系统使用自动摇动型CHO克隆的高通量筛选

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Biopharmaceutical protein manufacturing requires the highest producing cell lines to satisfy current multiple grams per liter requirements. Screening more clones increases the probability of identifying the high producers within the pool of available transfectant candidate cell lines. For the predominant industry mammalian host cell line, Chinese hamster ovary (CHO), traditional static-batch culture screening does not correlate with the suspension fed-batch culture used in manufacturing, and thus has little predictive utility. Small scale fed-batch screens in suspension culture correlate better with bioreactor processes but a limited number of clones can be screened manually. Scaled-down systems, such as shaken deep well plates, combined with automated liquid handling, offer a way for a limited number of scientists to screen many clones. A statistical analysis determined that 384 is the optimal number of clones to screen, with a 99% probability that six clones in the 95th percentile for productivity are included in the screen. To screen 384 clones efficiently by the predictive method of suspension fed-batch, the authors developed a shaken deep-well plate culturing platform, with an automated liquid handling system integrating cell counting and protein titering instruments. Critical factors allowing deep-well suspension culture to correlate with shake flask culture were agitation speed and culture volume. Using our automated system, one scientist can screen five times more clones than by manual fed-batch shake-flask or shaken culture tube screens and can identify cell lines for some therapeutic protein projects with production levels greater than 6 g/L. (c) 2018 American Institute of Chemical Engineers
机译:生物制药蛋白质制造需要最高的生产细胞系,以满足每升升性的电流多克。筛选更多克隆增加了鉴定可用转染子候选细胞系池内的高生产者的概率。对于主要的行业哺乳动物宿主细胞系,中国仓鼠卵巢(CHO),传统的静态分批培养筛选与制造中使用的悬浮液培养物不相关,因此具有很少的预测效用。悬浮培养中的小规模喂食筛网与生物反应器过程更好地相关,但可以手动筛选有限数量的克隆。缩小系统,如摇动深井板,与自动化液体处理相结合,为有限数量的科学家提供了一种方式来筛选许多克隆。确定384的统计分析是屏幕上的最佳数量的克隆数,95%的概率在屏幕中包含95百分位中的六个克隆。通过悬浮液的预测方法筛选384克隆,作者开发了一种摇动深井板培养平台,其自动化液体处理系统集成了细胞计数和蛋白质滴定仪器。允许深层悬浮培养与摇瓶培养相关的关键因素是搅拌速度和培养体积。使用我们的自动化系统,一个科学家可以屏蔽比手动进料 - 批量摇瓶或摇动培养管屏幕更多的克隆,可以识别一些治疗蛋白质项目的细胞系,其生产水平大于6克/升。 (c)2018美国化学工程研究所

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