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Quality by Design for peptide nanofiltration: Fundamental understanding and process selection

机译:肽纳米过滤的设计质量:基础知识和工艺选择

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Recently, nanofiltration techniques have been introduced by pharmaceutical industries in the downstream processes for peptides, to perform concentration, purification and salt/solvent exchange, and have been demonstrated as being suitable for integration with conventional chromatographic purification techniques, providing savings in terms of time and costs. Design of Experiments (DoE) methods have been extensively applied in the process design of the conventional techniques, under the so-called Quality by Design (QbD) concept, but applications of DoE methods to nanofiltration are still few. In this study, the nanofiltration of a model peptide, conventionally named PEP1, in trifluoroacetic acid/acetonitrile/water mixtures is studied by DoE. Statistical models for solvent flux, peptide and trifluoroacetic acid rejections are obtained by statistical Analysis of Variance and the best operating conditions for concentration are found by numerical optimization of the statistical models. The statistical models from DoE are included in the mathematical framework of the diafiltration process, to calculate the evolution of peptide, counter-ion and solvent concentrations over time, compare constant volume vs. variable volume diafiltration modes, and select the best process in terms of operating time and solvent consumption. This work demonstrates that empirical DoE models can provide phenomenological understanding of the transport mechanism through nanofiltration membranes for a specific solute of interest and successfully support the process modelling for concentration and diafiltration, providing a methodology to select the most appropriate filtration technique for a given separation problem.
机译:近年来,制药行业已在肽的下游工艺中引入了纳滤技术,以进行浓缩,纯化和盐/溶剂交换,并且已被证明适用于与常规色谱纯化技术集成,从而节省了时间和成本。费用。在所谓的“设计质量”(QbD)概念下,实验设计(DoE)方法已广泛应用于常规技术的工艺设计中,但DoE方法在纳滤中的应用仍然很少。在这项研究中,美国能源部研究了模型肽(通常称为PEP1)在三氟乙酸/乙腈/水混合物中的纳滤作用。通过方差的统计分析获得溶剂通量,肽和三氟乙酸排斥的统计模型,并通过对统计模型进行数值优化来找到最佳的浓缩操作条件。 DoE的统计模型包含在渗滤过程的数学框架中,以计算肽,抗衡离子和溶剂浓度随时间的变化,比较恒定体积与可变体积的渗滤模式,并选择最佳的过程。操作时间和溶剂消耗。这项工作表明,实验性DoE模型可以从现象学上了解特定感兴趣的溶质通过纳滤膜的传输机理,并成功地支持浓缩和渗滤的过程建模,从而为针对给定的分离问题选择最合适的过滤技术提供了一种方法。

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