CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, PR China.
University of Chinese Academy of Science, Beijing 100039, PR China.
Anal Chem. 2023 Nov 14;95(45):16549-16557. doi: 10.1021/acs.analchem.3c02674. Epub 2023 Oct 31.
Neurotransmitters (NTs) and neuromodulators (NMs) are two of the most important neurochemicals in the brain, and their imbalances in specific brain regions are thought to underlie certain neurological disorders. We present an on-tissue chemoselective derivatization mass spectrometry imaging (OTCD-MSI) method for the simultaneous mapping of NTs and NMs. Our derivatization system consists of a pyridiniumyl-benzylboronic acid based derivatization reagent and pyrylium salt, which facilitate covalent charge labeling of molecules containing -diol and primary amino, respectively. These derivatization systems improved the detection sensitivity of matrix-assisted laser desorption/ionization (MALDI)-MSI and simplified the identification of amino NTs and nucleoside NMs by the innate chemoselectivity of derivatization reagents and the unique isotopic pattern of boron-derivative reagents. We demonstrated the ability of the developed method on brain sections from a hypoxia mouse model and control. The simultaneous imaging of NTs and NMs provided a method for exploring how hypoxic stress and drugs affect specific brain regions through neurotransmitter modulation.
神经递质(NTs)和神经调质(NMs)是大脑中最重要的两种神经化学物质,人们认为特定脑区的这些神经递质和神经调质失衡是某些神经疾病的基础。我们提出了一种组织内化学选择性衍生化质谱成像(OTCD-MSI)方法,用于同时绘制 NTs 和 NMs。我们的衍生化系统由基于吡啶鎓基苄基硼酸的衍生化试剂和吡喃鎓盐组成,分别促进了含有 -二醇和伯氨基的分子的共价电荷标记。这些衍生化系统通过衍生化试剂的固有化学选择性和硼衍生试剂的独特同位素模式,提高了基质辅助激光解吸/电离(MALDI)-MSI 的检测灵敏度,并简化了氨基酸 NT 和核苷 NM 的鉴定。我们在缺氧小鼠模型和对照的脑切片上验证了所开发方法的能力。NT 和 NM 的同时成像提供了一种方法,通过神经递质调节来探索缺氧应激和药物如何影响特定脑区。