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Investigation of the kinetics and mechanism of low endotoxin recovery in a matrix for biopharmaceutical drug products

机译:生物制药药品基质中低内毒素回收动力学和机理研究

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摘要

The inability to detect endotoxin added to undiluted drug samples has been called: Low Endotoxin Recovery (LER). The phenomenon has caused concerns amongst drug manufacturing quality control scientists in that manufactured solutions contaminated with endotoxin could show false-negative results via routine Limulus-based tests. The time-dependent appearance of LER has been analyzed in detail to provide a better understanding of the mechanism. The assumption has been that the root-cause of LER involves the interplay of endotoxin with surfactants and results in aggregate structures that are complexed with surfactants. The endotoxin molecules when complexed with surfactants are not accessible for Limulus-based detection. The results demonstrate a predominant role of complex-forming agents. It was shown that although the presence of surfactants is a strong prerequisite for masking, it does not determine the kinetics of endotoxin masking. Interestingly, the endotoxin concentration itself had no substantial impact on LER kinetics. By adjusting the ratios of complex-forming constituents, including surfactant, chelator and endotoxin, and by testing the order in which the constituents are added, a new model for simulating masking kinetics has been determined. Our work provides for the first time a model to simulate masking kinetics of endotoxin which lends a better understanding of LER.
机译:已经调用了添加到未稀释的药物样品中的内毒素无法检测到未稀释的药物样品中的内毒素恢复(LER)。该现象引起了药物制造质量控制科学家的担忧,该科学家在污染内毒素污染的制造溶液可以通过常规的基于肢体的测试显示假阴性结果。 LER的时间依赖性外观已经详细分析,以便更好地了解该机制。假设是LER的根本原因涉及内毒素的相互作用与表面活性剂,并导致与表面活性剂络合的聚集体结构。在含有表面活性剂络合时的内毒素分子不可用于基于稀肢的检测。结果表明了复合物剂的主要作用。结果表明,尽管表面活性剂的存在是掩蔽的强先决条件,但它不会确定内毒素掩蔽的动力学。有趣的是,内毒素浓度本身对LER动力学没有显着影响。通过调节复合物成分的比例,包括表面活性剂,螯合剂和内毒素,并通过测试添加成分的顺序,确定了用于模拟掩蔽动力学的新模型。我们的工作首次提供模型来模拟内毒素的掩蔽动力学,这对LER更好地了解。

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