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首页> 外文期刊>Reactive & Functional Polymers >Mimicking DNA alkylation: Removing genotoxin impurities from API streams with a solvent stable polybenzimidazole-adenine polymer
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Mimicking DNA alkylation: Removing genotoxin impurities from API streams with a solvent stable polybenzimidazole-adenine polymer

机译:模仿DNA烷基化:使用溶剂稳定的聚苯并咪唑-腺嘌呤聚合物从API物流中去除基因毒素杂质

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摘要

This study reports the application of a novel polybenzimidazole (PBI) polymer modified with an alkylated DNA base - adenine - as an effective scavenger for several families of DNA alkylating agents. This new material addresses an important issue in active pharmaceutical ingredients (APIs) manufacture, the removal of genotoxic impurities (GTIs) to strictly low regulated limits. Instead of targeting individual GTIs removal, PSI adenine scavenger mimics the concept of DNA-GTI adduct formation that takes place in vivo, but in this case, in an organic solvent matrix where APIs are chemically synthesized. Removal of eleven GM from five different chemical families is assessed with 80% removal. Slow binding kinetics for some GTIs at room temperature was identified as one of the limitations of the PSI adenine polymer. API purification is addressed and an efficient process is presented for two APIs studied, mometasone furoate and betamethasone acetate, affording high impurity removals ( 96%) and high API recovery with low API loss (3.5%) for these case studies. The possible application of this straightforward strategy in API post-reaction stream purification, is able to attain GTI imposed limits as low as 0.6 mg GTI/g API respecting the Threshold of Toxicological Concern (TTC) value.
机译:这项研究报告了用烷基化的DNA碱基-腺嘌呤修饰的新型聚苯并咪唑(PBI)聚合物的应用,该聚合物可有效清除DNA烷基化剂的多个家族。这种新材料解决了活性药物成分(API)生产中的一个重要问题,即将遗传毒性杂质(GTI)去除到严格的低法规限。 PSI腺嘌呤清除剂不是针对单个GTI的去除,而是模仿了体内发生的DNA-GTI加合物形成的概念,但是在这种情况下,是在化学合成API的有机溶剂基质中进行的。用> 80%的去除率评估了从五个不同化学家族中去除十一种基因改造蛋白的可能性。在室温下,某些GTI的缓慢结合动力学被认为是PSI腺嘌呤聚合物的局限性之一。解决了API纯化问题,并针对两种研究的API(糠酸莫米松和醋酸倍他米松)提出了一种有效的方法,这些案例研究提供了高杂质去除率(> 96%)和高API回收率以及低API损失(3.5%)。该简单策略在API反应后物流纯化中的可能应用,能够达到GTI施加的限值(相对于毒理学阈值(TTC)值)低至0.6 mg GTI / g API。

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