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基于 MALDI-氢-氘交换质谱的快速无标记细胞基础方法测定肽类的细胞膜通透性。

Rapid label-free cell-based Approach Membrane Permeability Assay using MALDI-hydrogen-deuterium exchange mass spectrometry for peptides.

机构信息

Merck & Co. Inc., MRL, 33 Avenue Louis Pasteur, Boston, MA, 02115, USA.

Merck & Co. Inc., MRL, 33 Avenue Louis Pasteur, Boston, MA, 02115, USA.

出版信息

Anal Chim Acta. 2022 Sep 8;1225:340234. doi: 10.1016/j.aca.2022.340234. Epub 2022 Aug 6.

Abstract

Peptide therapeutics are a growing modality in the pharmaceutical industry and expanding these therapeutics to hit intracellular targets would require establishing cell permeability. Rapid measurement target-agnostic cell permeability of peptides is still analytically challenging. In this study, we demonstrate the development of a rapid high-throughput label-free methodology based on a MALDI-hydrogen-deuterium exchange mass spectrometry (MALDI-HDX-MS) approach to rank-order peptide cell membrane permeability using live THP-1 and AsPc-1 cells. Peptides were incubated in the presence of live cells and their permeability into the cells over time was measured by MALDI-HDX-MS. A differential hydrogen-deuterium exchange approach was used to distinguish the peptides outside of the cells from those inside. The peptides on the outside of the cells were labeled using sufficiently short exposure to deuterium oxide, while the peptides inside of the cells were protected from labeling as a result of permeation into the cells. The deuterium labeled and peak area ratios of unlabeled peptides were compared and plotted over time. The developed methodology, referred to as Cell-based Approach Membrane Permeability Assay (CAMPA), was applied to study an array of 24 diverse peptides including cell-penetrating peptides, stapled and macrocyclic peptides. The cell membrane permeability results observed by CAMPA were corroborated by previously reported in literature data. The CAMPA MALDI-MS analysis was fully automated including MS data processing using internally developed Python scripts. Moreover, CAMPA was demonstrated to be useful for differentiating passive and active cell transportation by using an endocytosis inhibitor in cell incubation media for selected peptides.

摘要

肽类疗法是制药行业中一个不断发展的领域,若要将这些疗法扩展到针对细胞内靶点,则需要建立细胞通透性。快速测量肽类无标记的、靶标无关的细胞通透性在分析上仍然具有挑战性。在这项研究中,我们展示了一种快速高通量的无标记方法的开发,该方法基于 MALDI-氘氢交换质谱(MALDI-HDX-MS)方法,使用活 THP-1 和 AsPc-1 细胞对肽类的细胞膜通透性进行排序。将肽类与活细胞一起孵育,并通过 MALDI-HDX-MS 测量它们随时间进入细胞的通透性。使用差异氘氢交换方法将细胞外的肽类与细胞内的肽类区分开来。细胞外的肽类用足够短的时间暴露于重水进行标记,而细胞内的肽类由于渗透到细胞内而免受标记。比较并绘制标记和未标记肽的峰面积比随时间的变化。该方法称为基于细胞的膜通透性测定(CAMPA),已应用于研究 24 种不同的肽类,包括细胞穿透肽、订书肽和大环肽。CAMPA 观察到的细胞膜通透性结果与文献中先前报道的数据相符。CAMPA 的 MALDI-MS 分析是完全自动化的,包括使用内部开发的 Python 脚本进行 MS 数据处理。此外,通过在细胞孵育培养基中使用内吞抑制剂对选定的肽类进行细胞内运输的主动和被动区分,证明了 CAMPA 的有用性。

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