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Analysis of Selective Metal-Salt-Induced Endotoxin Precipitation in Plasmid DNA Purification Using Improved Limulus Amoebocyte Lysate Assay and Central Composite Design

机译:改进的Li变形细胞裂解液测定和中央复合设计在质粒DNA纯化中选择性金属盐诱导的内毒素沉淀的分析

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Recent advancements in plasmid DNA (pDNA) production involve the development of innovative and cost-effective methods as well as reduced number of unit operations. This study investigates the feasibilities of using a metal salt to selectively remove endotoxins from clarified cell lysates containing plasmid DNA. Screening of endotoxin precipitation in various metal salt solutions and optimization of process conditions (pH, ion concentration, temperature, and incubation time) using central composite design experiments have been carried out successfully. Results show that selective endotoxin precipitation (<0.05 EU/(mu)g) can economically be carried out during the alkaline cell lysis procedure (neutralization step) at a pH condition similar to that of alkaline-lysed cell lysate, a low ZnSO_(4) concentration (0.5 M), a minimum incubation time (30 min), and a temperature of 15 deg C. In summary, this method provides ease of subsequent plasmid DNA purification due to reduced bulk impurities and cost-effective and most importantly high endotoxin removal (>80percent) and plasmid recovery (>90percent).
机译:质粒DNA(pDNA)生产的最新进展涉及创新和具有成本效益的方法的开发以及减少的单元操作数量。这项研究调查了使用金属盐从含有质粒DNA的澄清细胞裂解物中选择性去除内毒素的可行性。使用中心复合设计实验已成功进行了多种金属盐溶液中内毒素沉淀的筛选和工艺条件(pH,离子浓度,温度和孵育时间)的优化。结果表明,在碱性细胞裂解过程(中和步骤)中,可以在类似于碱性裂解细胞裂解物的pH条件下,低ZnSO_(4)的条件下经济地进行选择性内毒素沉淀(<0.05 EU /μg)。浓度(0.5 M),最短孵育时间(30分钟)和15摄氏度的温度。总而言之,由于减少了体积杂质和成本效益,并且最重要的是内毒素高,这种方法使后续质粒DNA纯化变得容易去除(> 80%)和质粒回收(> 90%)。

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