Service de Pharmacologie et Immunoanalyse (SPI), Laboratoire d'Etude du Métabolisme des Médicaments, CEA, INRA, Université Paris Saclay , F-91191 Gif-sur-Yvette cedex, France.
Biological Toxins, Centre for Biological Threats and Special Pathogens, Robert Koch Institute , Berlin, Germany.
Anal Chem. 2017 Nov 7;89(21):11719-11727. doi: 10.1021/acs.analchem.7b03189. Epub 2017 Oct 20.
Abrin expressed by the tropical plant Abrus precatorius is highly dangerous with an estimated human lethal dose of 0.1-1 μg/kg body weight. Due to the potential misuse as a biothreat agent, abrin is in the focus of surveillance. Fast and reliable methods are therefore of great importance for early identification. Here, we have developed an innovative and rapid multiepitope immuno-mass spectrometry workflow which is capable of unambiguously differentiating abrin and its isoforms in complex matrices. Toxin-containing samples were incubated with magnetic beads coated with multiple abrin-specific antibodies, thereby concentrating and extracting all the isoforms. Using an ultrasonic bath for digestion enhancement, on-bead trypsin digestion was optimized to obtain efficient and reproducible peptide recovery in only 30 min. Improvements made to the workflow reduced total analysis time to less than 3 h. A large panel of common and isoform-specific peptides was monitored by multiplex LC-MS/MS through the parallel reaction monitoring mode on a quadrupole-Orbitrap high resolution mass spectrometer. Additionally, absolute quantification was accomplished by isotope dilution with labeled AQUA peptides. The newly established method was demonstrated as being sensitive and reproducible with quantification limits in the low ng/mL range in various food and clinical matrices for the isoforms of abrin and also the closely related, less toxic Abrus precatorius agglutinin. This method allows for the first time the rapid detection, differentiation, and simultaneous quantification of abrin and its isoforms by mass spectrometry.
相思豆中表达的相思豆毒素 Abrin 非常危险,估计人体致死剂量为 0.1-1μg/kg 体重。由于其可能被滥用于生物威胁制剂,因此相思豆毒素是监测的重点。因此,快速可靠的方法对于早期识别非常重要。在这里,我们开发了一种创新的、快速的多表位免疫质谱工作流程,能够在复杂基质中明确区分相思豆毒素及其同工型。含有毒素的样品与涂有多株相思豆毒素特异性抗体的磁性珠孵育,从而浓缩和提取所有同工型。通过超声浴增强消化,优化了在珠上的胰蛋白酶消化,仅需 30 分钟即可获得高效且可重复的肽回收。工作流程的改进将总分析时间缩短至 3 小时以内。通过四重杆-Orbitrap 高分辨率质谱仪的平行反应监测模式,通过多路 LC-MS/MS 监测了一组常见和同工型特异性肽。此外,通过用标记的 AQUA 肽进行同位素稀释来完成绝对定量。新建立的方法在各种食品和临床基质中的定量限为低 ng/mL 范围,在同工型和密切相关的、毒性较低的相思豆凝集素中表现出灵敏且可重现,这是首次通过质谱法快速检测、区分和同时定量相思豆毒素及其同工型。