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首页> 外文期刊>Journal of Biotechnology >Robust design of adenovirus purification by two-column, simulated moving-bed, size-exclusion chromatography
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Robust design of adenovirus purification by two-column, simulated moving-bed, size-exclusion chromatography

机译:通过两柱模拟移动床尺寸排阻色谱法进行腺病毒纯化的稳健设计

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摘要

A simple, yet efficient, two-column simulated moving-bed (2CSMB) process for purifying adenovirus serotype 5 (Ad5) by size-exclusion chromatography (SEC) is presented and validated experimentally, and a general procedure for its robust design under parameter uncertainty is described. The pilot-scale run yielded a virus recovery of 86 percent and DNA and HCP clearances of 90 and 89 percent, respectively, without any fine tuning of the operating parameters. This performance compares very favorably against that of single-column batch chromatography for the same volume of size-exclusion resin. To improve the robustness of the 2CSMB-SEC process the best set of operating parameters is selected only among candidate solutions that are robust feasible, that is, remain feasible for all parameter perturbations within their uncertainty intervals. This robust approach to optimal design replaces the nominal problem by a worst case problem. Computational tractability is ensured by formulating the robust design problem with only the vertices of the uncertainty region that have the worst effect on the product purity and recovery. The robust design is exemplified on the case where the column volume and interparticle porosity are subject to uncertainty. As expected, to increase the robustness of the 2CSMB-SEC process it is necessary to reduce its productivity and increase its solvent consumption. Nevertheless, the design solution given by our robust approach is the least detrimental of all feasible operating conditions for the 2CSMB-SEC process. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出并通过实验验证了通过尺寸排阻色谱法(SEC)纯化5型腺病毒血清型(Ad5)的简单但高效的两柱模拟移动床(2CSMB)工艺,并给出了在参数不确定性下进行鲁棒设计的一般步骤描述。在不对操作参数进行任何微调的情况下,中试规模的病毒回收率分别为86%,DNA和HCP清除率分别为90%和89%。对于相同体积的排阻树脂,该性能非常优于单柱间歇色谱。为了提高2CSMB-SEC过程的鲁棒性,仅在鲁棒可行的候选解决方案中选择最佳的操作参数集,也就是说,对于不确定性区间内的所有参数扰动都保持可行。这种可靠的最佳设计方法将最坏情况的问题替换为名义问题。通过仅使用不确定性区域的顶点制定鲁棒性设计问题来确保计算可处理性,这些不确定性区域的顶点对产品纯度和回收率的影响最大。在色谱柱体积和颗粒间孔隙度易受不确定性影响的情况下,可以使用鲁棒性设计。不出所料,为提高2CSMB-SEC工艺的耐用性,有必要降低其生产率并增加其溶剂消耗。尽管如此,我们强大的方法所提供的设计解决方案对2CSMB-SEC流程的所有可行操作条件的损害最小。 (C)2015 Elsevier B.V.保留所有权利。

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