Fatou Benoit, Saudemont Philippe, Leblanc Eric, Vinatier Denis, Mesdag Violette, Wisztorski Maxence, Focsa Cristian, Salzet Michel, Ziskind Michael, Fournier Isabelle
Univ. Lille, INSERM, U1192 - Laboratoire Protéomique, Réponse Inflammatoire et Spectrométrie de Masse-PRISM, F-59000 Lille, France.
Univ. Lille, CNRS, UMR 8523 - PhLAM - Physique des Lasers Atomes et Molécules, F-59000 Lille, France.
Sci Rep. 2016 May 18;6:25919. doi: 10.1038/srep25919.
Here we describe a new instrument (SpiderMass) designed for in vivo and real-time analysis. In this instrument ion production is performed remotely from the MS instrument and the generated ions are transported in real-time to the MS analyzer. Ion production is promoted by Resonant Infrared Laser Ablation (RIR-LA) based on the highly effective excitation of O-H bonds in water molecules naturally present in most biological samples. The retrieved molecular patterns are specific to the cell phenotypes and benign versus cancer regions of patient biopsies can be easily differentiated. We also demonstrate by analysis of human skin that SpiderMass can be used under in vivo conditions with minimal damage and pain. Furthermore SpiderMass can also be used for real-time drug metabolism and pharmacokinetic (DMPK) analysis or food safety topics. SpiderMass is thus the first MS based system designed for in vivo real-time analysis under minimally invasive conditions.
在此,我们描述了一种专为体内实时分析设计的新型仪器(SpiderMass)。在该仪器中,离子产生在远离质谱仪的地方进行,所产生的离子实时传输至质谱分析仪。离子产生通过基于对大多数生物样品中天然存在的水分子中O-H键的高效激发的共振红外激光烧蚀(RIR-LA)来促进。所获取的分子模式对于细胞表型具有特异性,并且患者活检组织的良性与癌症区域能够轻松区分。我们还通过对人体皮肤的分析证明,SpiderMass可在体内条件下使用,对组织的损伤和疼痛最小。此外,SpiderMass还可用于实时药物代谢和药代动力学(DMPK)分析或食品安全相关课题。因此,SpiderMass是首个基于质谱设计的、用于在微创条件下进行体内实时分析的系统。