Enomoto Hirofumi, Kotani Masahiro, Ohmura Takayuki
Department of Biosciences, Faculty of Science and Engineering, Teikyo University, Utsunomiya 320-8551, Japan.
Division of Integrated Science and Engineering, Graduate School of Science and Engineering, Teikyo University, Utsunomiya 320-8551, Japan.
Foods. 2020 Apr 1;9(4):408. doi: 10.3390/foods9040408.
Mass spectrometry imaging (MSI) using matrix-assisted laser desorption/ionization (MALDI) is a powerful technique for visualizing metabolites in the strawberry fruit. During sample preparation for MALDI-MSI, sectioning of the samples is usually required. In general, MALDI-MSI analysis of strawberry fruits that are larger than a single glass slide is difficult because thin sections cannot be prepared. In this study, we attempted to visualize metabolites in large strawberry fruits by MSI, employing a blotting method that uses desorption ionization using a through-hole alumina membrane (DIUTHAME) chip. Large strawberry fruits were cut and a DIUTHAME chip was set on the cross-section to blot the metabolites. After drying the DIUTHAME chip, the metabolites were measured in positive and negative ion modes using a commercial MALDI-type mass spectrometer. Several peaks were detected in both the ion modes. Various metabolites related to food quality, such as sugars, organic acids, and anthocyanins, were detected and successfully visualized by blotting on a DIUTHAME chip in MSI. These results suggest that blotting using a DIUTHAME chip in MSI is useful for visualizing the metabolites present in the strawberry fruit.
使用基质辅助激光解吸/电离(MALDI)的质谱成像(MSI)是一种可视化草莓果实中代谢物的强大技术。在进行MALDI-MSI的样品制备过程中,通常需要对样品进行切片。一般来说,对于大于单个载玻片的草莓果实进行MALDI-MSI分析很困难,因为无法制备薄切片。在本研究中,我们尝试通过MSI可视化大型草莓果实中的代谢物,采用一种使用通孔氧化铝膜解吸电离(DIUTHAME)芯片的印迹方法。将大型草莓果实切开,在横截面上放置一个DIUTHAME芯片以印迹代谢物。干燥DIUTHAME芯片后,使用商用MALDI型质谱仪以正离子和负离子模式测量代谢物。在两种离子模式下均检测到多个峰。通过在MSI中使用DIUTHAME芯片进行印迹,检测到了与食品质量相关的各种代谢物,如糖类、有机酸和花青素,并成功实现了可视化。这些结果表明,在MSI中使用DIUTHAME芯片进行印迹有助于可视化草莓果实中存在的代谢物。