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首页> 外文期刊>Biotechnology Progress >High-Throughput Screening Techniques for Rapid PEG-Based Precipitation of IgG4 mAb from Clarified Cell Culture Supernatant
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High-Throughput Screening Techniques for Rapid PEG-Based Precipitation of IgG4 mAb from Clarified Cell Culture Supernatant

机译:高通量筛选技术,用于从澄清的细胞培养上清液中快速基于PEG沉淀IgG4 mAb。

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Locating optimal protein precipitation conditions for complex biological feed materials is problematic. This article describes the application of a series of high-throughput platforms for the rapid identification and selection of conditions for the precipitation of an IgG4 monoclonal antibody (mAb) from a complex feedstock using only microliter quantities of material. The approach uses 96-microwell filter plates combined with high-throughput analytical methods and a method for well volume determination for product quantification. The low material, time and resource requirements facilitated the use of a full factorial Design of Experiments (DoE) for the rapid investigation into how critical parameters impact the IgG4 precipitation. To aid the DoE, a set of preliminary range-finding studies were conducted first. Data collected through this approach describing Polyethylene Glycol (PEG) precipitation of the IgG4 as a function of mAb concentration, precipitant concentration, and pH are presented. Response surface diagrams were used to explore interactions between parameters and to inform selection of the most favorable conditions for maximum yield and purification. PEG concentrations required for maximum yield and purity were dependant on the IgG4 concentration; however, concentrations of 14 to 20% w/v, pH 6.5, gave optimal levels of yield and purity. Application of the high-throughput approach enabled 1,155 conditions to be examined with less than 1 g of material. The level of insights gained over such a short time frame is indicative of the power of microwell experimentation in allowing the rapid identification of appropriate processing conditions for key bioprocess operations.
机译:为复杂的生物饲料原料确定最佳的蛋白质沉淀条件是有问题的。本文介绍了一系列高通量平台在快速鉴定和选择条件(仅使用微升材料从复杂原料中沉淀IgG4单克隆抗体(mAb)的条件)中的应用。该方法使用结合了高通量分析方法的96微孔滤板和用于产品定量的孔体积测定方法。较低的材料,时间和资源要求促进了全因子实验设计(DoE)的使用,以便快速研究关键参数如何影响IgG4沉淀。为了帮助美国能源部,首先进行了一系列初步的测距研究。呈现了通过该方法收集的数据,该数据描述了IgG4的聚乙二醇(PEG)沉淀与mAb浓度,沉淀剂浓度和pH的关系。响应表面图用于探索参数之间的相互作用,并告知选择最有利条件以实现最大产量和纯化。获得最大产量和纯度所需的PEG浓度取决于IgG4浓度。但是,浓度为14%至20%w / v,pH 6.5时,产率和纯度达到最佳水平。高通量方法的应用使得可以用少于1 g的材料检查1,155个条件。在如此短的时间范围内获得的洞察力水平表明了微孔实验的能力,可以快速识别关键生物工艺操作的适当工艺条件。

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