Liu Yukun, Nie Xiaofei, Wang Jilong, Zhao Zhenqi, Wang Zhimei, Ju Fang
Department of Breast Surgery, Breast Disease Center, Affiliated Qingdao Central Hospital, Qingdao University, Qingdao, China.
Department of Oncology, Affiliated Qingdao Central Hospital, Qingdao University, Qingdao, China.
Front Plant Sci. 2023 Feb 24;14:1144449. doi: 10.3389/fpls.2023.1144449. eCollection 2023.
Flavonoids are one of the most important bioactive components in litchi ( Sonn.) seeds and have broad-spectrum antiviral and antitumor activities. Litchi seeds have been shown to inhibit the proliferation of cancer cells and induce apoptosis, particularly effective against breast and liver cancers. Elucidating the distribution of flavonoids is important for understanding their physiological and biochemical functions and facilitating their efficient extraction and utilization. However, the spatial distribution patterns and expression states of flavonoids in litchi seeds remain unclear. Herein, matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI) was used for detection and imaging of the distribution of flavonoids in litchi seed tissue sections for the first time. Fifteen flavonoid ion signals, including liquiritigenin, apigenin, naringenin, luteolin, dihydrokaempferol, daidzein, quercetin, taxifolin, kaempferol, isorhamnetin, myricetin, catechin, quercetin 3-β-d-glucoside, baicalin, and rutin, were successfully detected and imaged through MALDI-MSI in the positive ion mode using 2-mercaptobenzothiazole as a matrix. The results clearly showed the heterogeneous distribution of flavonoids, indicating the potential of litchi seeds for flavonoid compound extraction. MALDI-MS-based multi-imaging enhanced the visualization of spatial distribution and expression states of flavonoids. Thus, apart from improving our understanding of the spatial distribution of flavonoids in litchi seeds, our findings also facilitate the development of MALDI-MSI-based metabolomics as a novel effective molecular imaging tool for evaluating the spatial distribution of endogenous compounds.
黄酮类化合物是荔枝(Sonn.)种子中最重要的生物活性成分之一,具有广谱抗病毒和抗肿瘤活性。荔枝种子已被证明能抑制癌细胞增殖并诱导凋亡,对乳腺癌和肝癌尤其有效。阐明黄酮类化合物的分布对于理解其生理生化功能以及促进其高效提取和利用具有重要意义。然而,荔枝种子中黄酮类化合物的空间分布模式和表达状态仍不清楚。在此,首次使用基质辅助激光解吸/电离质谱成像(MALDI-MSI)对荔枝种子组织切片中黄酮类化合物的分布进行检测和成像。以2-巯基苯并噻唑为基质,在正离子模式下通过MALDI-MSI成功检测并成像了15种黄酮类离子信号,包括甘草素、芹菜素、柚皮素、木犀草素、二氢山奈酚、大豆苷元、槲皮素、紫杉叶素、山奈酚、异鼠李素、杨梅素、儿茶素、槲皮素3-β-D-葡萄糖苷、黄芩苷和芦丁。结果清楚地显示了黄酮类化合物的不均匀分布,表明荔枝种子在黄酮类化合物提取方面具有潜力。基于MALDI-MS的多重成像增强了黄酮类化合物空间分布和表达状态的可视化。因此,除了增进我们对荔枝种子中黄酮类化合物空间分布的理解外,我们的研究结果还促进了基于MALDI-MSI的代谢组学作为一种新型有效分子成像工具的发展,用于评估内源性化合物的空间分布。