衍生化
化学
试剂
质谱成像
色谱法
质谱法
化学电离
有机化学
电离
离子
作者
Qingce Zang,Manjiangcuo Wang,Ying Zhu,Lingzhi Wang,Zhigang Luo,Xin Li,Jiuming He,Ruiping Zhang,Zeper Abliz
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2021-11-08
卷期号:93 (46): 15373-15380
被引量:22
标识
DOI:10.1021/acs.analchem.1c03118
摘要
The improvement of on-tissue chemical derivatization for mass spectrometry imaging (MSI) of low-abundance and/or poorly ionizable functional molecules in biological tissue without delocalization is challenging. Here, we developed a novel hydrogel-assisted chemical derivatization (HCD) approach coupled with airflow-assisted desorption electrospray ionization (AFADESI)-MSI, allowing for enhanced visualization of inaccessible molecules in biological tissues. The derivatization reagent Girard's P (GP) reagent was creatively packaged into a hydrogel to form HCD blocks that have reactivity to carbonyl compounds as well as the feasibility of "cover/uncover" contact mode with tissue sections. The HCD blocks provided a favorable liquid microenvironment for the derivatization reaction and reduced matrix effects from derivatization reagents and tissue without obvious molecular migration, thus improving the derivatization efficiency. With this methodology, unusual carbonyl metabolites, including 166 fatty aldehydes (FALs) and 100 oxo fatty acids (FAs), were detected and visualized in rat brain, kidney, and liver tissue. This study provides a new approach to enhance chemical labeling for in situ tissue submetabolome profiling and improves our knowledge of the molecular histology and complex metabolism of biological tissues.
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