Yoshimura Kentaro, Chen Lee Chuin, Johno Hisashi, Nakajima Mayutaka, Hiraoka Kenzo, Takeda Sen
Department of Anatomy and Cell Biology, Faculty of Medicine, University of Yamanashi.
Graduate School Department of Interdisciplinary Research, University of Yamanashi.
Mass Spectrom (Tokyo). 2014;3(Spec Iss 3):S0048. doi: 10.5702/massspectrometry.S0048. Epub 2015 Jan 24.
Ambient ionization mass spectrometry is one of the most challenging analytical tools in the field of biomedical research. We previously demonstrated that probe electrospray ionization mass spectrometry (PESI-MS) could potentially be used in the rapid diagnosis of cancer. Although this technique does not require a tedious sample pretreatment process, it was not possible for our previously reported setup to be applied to cases involving the direct sampling of tissues from living animal and large animal subjects, because there would not be enough room to accommodate the larger bodies juxtaposed to the ion inlet. To make PESI-MS more applicable for the real-time analysis of living animals, a long auxiliary ion sampling tube has been connected to the ion inlet of the mass spectrometer to allow for the collection of ions and charged droplets from the PESI source (hereafter, referred to as non-proximate PESI). Furthermore, an additional ion sampling tube was connected to a small diaphragm pump to increase the uptake rate of air carrying the ions and charged droplets to the ion inlet. This modification allows for the extended ion sampling orifice to be positioned closer to the specimens, even when they are too large to be placed inside the ionization chamber. In this study, we have demonstrated the use of non-proximate PESI-MS for the real-time analysis for biological molecules and pharmacokinetic parameters from living animals.
常压电离质谱是生物医学研究领域中最具挑战性的分析工具之一。我们之前证明了探针电喷雾电离质谱(PESI-MS)有可能用于癌症的快速诊断。尽管该技术不需要繁琐的样品预处理过程,但我们之前报道的装置无法应用于从活体动物和大型动物受试者直接采集组织样本的情况,因为没有足够的空间来容纳与离子入口并列的更大的身体。为了使PESI-MS更适用于活体动物的实时分析,已将一根长的辅助离子采样管连接到质谱仪的离子入口,以便从PESI源收集离子和带电液滴(以下简称非近端PESI)。此外,另一根离子采样管连接到一个小型隔膜泵上,以提高携带离子和带电液滴的空气进入离子入口的摄取率。这种改进使得即使样本太大而无法放置在电离室内,扩展的离子采样孔也能更靠近样本放置。在本研究中,我们展示了使用非近端PESI-MS对活体动物的生物分子和药代动力学参数进行实时分析。