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首页> 外文期刊>Analytica chimica acta >Use of MALDI-MS with solid-state hydrogen deuterium exchange for semi-automated assessment of peptide and protein physical stability in lyophilized solids
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Use of MALDI-MS with solid-state hydrogen deuterium exchange for semi-automated assessment of peptide and protein physical stability in lyophilized solids

机译:使用MALDI-MS与固态氢氘交换进行半自动评估肽和冻干固体中的蛋白质稳定性

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Biological therapeutics are established as major contributors to the pharmaceutical pipeline. Many of these biological drugs are lyophilized to preserve their conformation and reduce decomposition during storage and shipping. Therefore, understanding and controlling the effects of lyophilization on protein higher order structure is critical for commercialization of biologics. Hydrogen Deuterium Exchange Mass Spectrometry (HDX-MS) is a well-established technique for studying protein higher order structure. Previous publications have demonstrated a solid state HDX (ssHDX) method for labeling formulated, lyophilized proteins to assess their physical stability during, but this process still suffered from low throughput and undesired back exchange. Recently, our group described a method combining HDX-MS with MALDI to greatly reduce the time of analysis and nearly eliminate H/D back-exchange, but that method was not suited for interrogating solid samples. This work integrates the two techniques to assess and predict the stability of peptides and proteins following mixing and lyophilization with various excipient formulations. Sample mixing and handling were performed through the use of a bench-top robotics and programmed data MALDI-MS acquisition allowed for monitoring deuterium incorporation for dried peptides and protein samples following continuous labeling with D2O vapor. Effects of excipients upon peptide stability were also tracked and compared to a control for a three day labeling time course. This workflow is automated and free from back-exchange. As demonstrated by deuterium retention of bradykinin, these features serve to reduce experimental error normally associated with conventional deuterium exchange experiments. The proposed union of MALDI-MS and ssHDX can be applied to study higher order structure of proteins and peptides and the effects of added excipients in an environment that closely resembles the storage and shipping conditions of biopharmaceuticals and may be beneficial in giving insights studying protein structural dynamics in solids. (C) 2019 Elsevier B.V. All rights reserved.
机译:生物治疗方法是药物管道的主要贡献者。许多这些生物药物被冻干,以保持其构象并在储存期间减少分解。因此,了解和控制冻干对蛋白质高阶结构的影响对于生物制剂的商业化至关重要。氢氘交换质谱(HDX-MS)是用于研究蛋白质高阶结构的良好技术。以前的出版物已经证明了用于标记配方,冻干蛋白的固态HDX(SSHDX)方法,以评估它们的物理稳定性,但该过程仍然遭受低吞吐量和不希望的返回交换。最近,我们的组描述了一种方法将HDX-MS与MALDI组合以大大减少分析时间和几乎消除H / D后交换,但该方法不适合询问固体样品。这项工作整合了两种技术来评估和预测肽和蛋白质在用各种赋形剂制剂进行混合和冻干后的稳定性。通过使用台式机器人和编程数据进行样品混合和处理,并进行编程数据MALDI-MS采集,允许监测用D2O蒸汽连续标记后的干燥肽和蛋白质样品的氘掺入。还跟踪赋形剂对肽稳定性的影响,并与对三天标记时间过程的对照进行比较。此工作流程是自动化的,不受后交换。如Bradykinin的氘保留所证明,这些特征有助于降低通常与常规氘交换实验相关的实验误差。拟议的Maldi-MS和SSHDX联盟可以应用于研究蛋白质和肽的高阶结构,以及添加赋形剂在与生物制药的储存和运输条件密切相关的环境中的效果,并且可能有利于研究蛋白质结构的见解固体动态。 (c)2019年Elsevier B.V.保留所有权利。

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