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Biophysical Analysis of Lipopolysaccharide Formulations for an Understanding of the Low Endotoxin Recovery (LER) Phenomenon

机译:脂多糖制剂的生物物理分析以了解低内毒素回收(LER)现象

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摘要

Lipopolysaccharides (LPS, endotoxin) are complex and indispensable components of the outer membrane of most Gram-negative bacteria. They represent stimuli for many biological effects with pathophysiological character. Recombinant therapeutic proteins that are manufactured using biotechnological processes are prone to LPS contaminations due to their ubiquitous occurrence. The maximum endotoxin load of recombinant therapeutic proteins must be below the pyrogenic threshold. Certain matrices that are commonly used for recombinant therapeutic proteins show a phenomenon called “Low Endotoxin Recovery (LER)”. LER is defined as the loss of detectable endotoxin activity over time using compendial Limulus amebocyte lysate (LAL) assays when undiluted products are spiked with known amount of endotoxin standards. Because LER poses potential risks that endotoxin contaminations in products may be underestimated or undetected by the LAL assay, the United States (U.S.) Food and Drug Administration’s (FDA’s) Center for Drug Evaluation and Research (CDER) has recently started requesting that companies conduct endotoxin spike/hold recovery studies to determine whether a given biological product causes LER. Here, we have performed an analysis of different LPS preparations with relevant detergents studying their acyl chain phase transition, their aggregate structures, their size distributions, and binding affinity with a particular anti-endotoxin peptide, and correlating it with the respective data in the macrophage activation test. In this way, we have worked out biophysical parameters that are important for an understanding of LER.
机译:脂多糖(LPS,内毒素)是大多数革兰氏阴性细菌外膜的复杂且必不可少的成分。它们代表具有病理生理特性的许多生物学效应的刺激。使用生物技术过程生产的重组治疗性蛋白质由于普遍存在而容易受到LPS污染。重组治疗性蛋白质的最大内毒素载量必须低于热解阈值。通常用于重组治疗性蛋白质的某些基质显示出一种称为“低内毒素回收率(LER)”的现象。 LER被定义为当未稀释的产品掺入已知量的内毒素标准品时,使用药典Li细胞溶胞产物(LAL)测定法检测到的内毒素活性随时间的流逝。由于LER可能会导致潜在的风险,即LAL分析可能低估或未检测到产品中的内毒素污染,因此美国食品药品管理局(FDA)的药物评估和研究中心(CDER)最近开始要求公司进行内毒素处理峰值/保持时间恢复研究,以确定给定的生物产品是否引起LER。在这里,我们已经用相关的洗涤剂对不同的LPS制剂进行了分析,研究了它们的酰基链相变,聚集结构,大小分布以及与特定抗内毒素肽的结合亲和力,并将其与巨噬细胞中的相应数据相关激活测试。通过这种方式,我们得出了对理解LER重要的生物物理参数。

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