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Comparison and Combination of Organic Solvent Nanofiltration and Adsorption Processes: A Mathematical Approach for Mitigation of Active Pharmaceutical Ingredient Losses during Genotoxin Removal

机译:比较和有机溶剂纳滤和吸附过程的组合:一种数学方法以减少去除毒素的过程中活性药物成分的损失。

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摘要

Active pharmaceutical ingredients (API) are synthesized using highly reactive reagents, catalysts, and solvents. Some of those persist as impurities in the final product and are genotoxic or carcinogenic. The conventional processes used for API purification and isolation are able to achieve the limits imposed by regulatory agencies, but at the expense of significant API losses. Here we report the development of a model to aid in the decision of which dedicated purification process, membrane or adsorption, is most suitable for removal of genotoxic impurities (GTIs), according with a small set of key intrinsic parameters. A hybrid process was developed, combining these two unit operations, to be applied when the use of OSN or adsorption alone result on non-acceptable API losses. Membrane solute rejection and solvent flux was used as parameter for OSN. In the case of adsorption, two isotherm models, Langmuir and Freundlich, were considered. The effect of the recirculation stream and amount of adsorber used on the hybrid process was investigated. Case studies were experimentally validated, confirming that combining the two unit operations can reduce API loss from 24.76% in OSN to 9.76% in a hybrid process. Economic and environmental analyses were performed.
机译:活性药物成分(API)是使用高反应性的试剂,催化剂和溶剂合成的。其中一些以杂质形式存在于最终产品中,并具有遗传毒性或致癌性。用于API提纯和分离的常规方法能够达到监管机构的要求,但以显着的API损失为代价。在这里,我们报告一种模型的开发,以帮助根据一组关键的内在参数,决定哪种专用的纯化工艺(膜或吸附)最适合去除遗传毒性杂质(GTI)。当将OSN的使用或吸附单独导致不可接受的API损失时,将结合这两个单元操作的混合工艺得以开发。膜溶质排斥和溶剂通量用作OSN的参数。在吸附的情况下,考虑了两个等温模型,Langmuir和Freundlich。研究了再循环流和吸附剂用量对混合工艺的影响。通过实验验证了案例研究,证实了将两个单元的操作相结合可以将API的损失从OSN中的24.76%减少到混合过程中的9.76%。进行了经济和环境分析。

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