Hiyama Eiso, Ali Ahmed, Amer Sara, Harada Takanori, Shimamoto Kazumi, Furushima Rie, Abouleila Yasmine, Emara Samy, Masujima Tsutomu
Natural Science Center for Basic Research and Development, Hiroshima University.
Anal Sci. 2015;31(12):1215-7. doi: 10.2116/analsci.31.1215.
Direct trapping of a single floating cell, i.e. a white blood cell from a drop of blood, within a nanospray tip was followed by super-sonication after the addition of ionization solvent. Molecular detection of an increased number of peaks with a higher intensity and a wider m/z range, which extends from metabolites to lipids, was acquired than of that without sonication. This method was applied to a few separated circulating tumor cells (CTC) from a neuroblastoma patient's blood to obtain their lipido-metabolomic molecular profile at the single cell level. In addition to vital molecules such as amino acids, catechol amine metabolites, which are specific to neuroblastoma, and drugs included in the patient's course of therapy were detected. This established "direct single-cell lipido-metabolomic method" seems to be useful for direct and wide range molecular detection not only for many live single-cells, but also for rare cells, such as CTCs, for future molecular diagnosis.
在纳米喷雾尖端直接捕获单个悬浮细胞,即一滴血液中的白细胞,加入电离溶剂后进行超声处理。与未进行超声处理相比,获得了强度更高、m/z范围更宽(从代谢物到脂质)的更多峰的分子检测结果。该方法应用于从神经母细胞瘤患者血液中分离出的一些循环肿瘤细胞(CTC),以在单细胞水平获得其脂质代谢组分子谱。除了氨基酸等重要分子外,还检测到了神经母细胞瘤特有的儿茶酚胺代谢物以及患者治疗过程中使用的药物。这种已建立的“直接单细胞脂质代谢组学方法”似乎不仅对许多活的单细胞,而且对罕见细胞(如CTC)的直接和广泛分子检测都很有用,可用于未来的分子诊断。