首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Capillary electrophoresis coupled to MALDI mass spectrometry imaging with large volume sample stacking injection for improved coverage of C. borealis neuropeptidome
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Capillary electrophoresis coupled to MALDI mass spectrometry imaging with large volume sample stacking injection for improved coverage of C. borealis neuropeptidome

机译:毛细管电泳与MALDI质谱成像耦合,具有大体积样品堆叠注射,用于改善C. Borealis神经肽的覆盖率

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摘要

Neuropeptides are important signaling molecules responsible for a wide range of functions within the nervous and neuroendocrine system. However, they are difficult to study due to numerous challenges, most notably their large degree of variability and low abundance in vivo. As a result, effective separation methods with sensitive detection capabilities are necessary for profiling neuropeptides in tissue samples, particularly those of simplified model organisms such as crustaceans. In order to address these challenges, this study utilized a capillary electrophoresis (CE)-matrix-assisted laser desorption/ionization (MALDI)-mass spectrometry imaging (MSI) platform, building upon our previous design for improved neuropeptidomic coverage. The capillary was coated with polyethylenimine (PEI) to reduce peptide adsorption and reverse the electroosmotic flow, and large volume sample stacking (LVSS) was used to load and pre-concentrate 1 μL of sample. The method demonstrated good reproducibility, with lower than 5% relative standard deviation for standards, and a limit of detection of approximately 100 pM for an allatostatin III peptide standard. The method was tested on brain and sinus gland (SG) tissue extracts and enabled detection of over 200 neuropeptides per run. When comparing the number detected in brain extracts in a direct spot, 60-second fractions, and 30-second fractions, the continuous trace collection afforded by the CE-MALDI-MSI platform yielded the largest number of detected neuropeptides. The method was compared to conventional LC-ESI-MS, and though the number of neuropeptides detected by LC-ESI-MS was slightly larger, the two methods were highly complementary, indicating the potential for the CE-MALDI-MSI method to uncover previously undetected neuropeptides in the crustacean nervous system. These results indicate the potential of CE-MALDI-MSI for routine use in neuropeptide research.
机译:神经肽是重要的信号分子,其负责神经和神经内分泌系统内的各种功能。然而,由于许多挑战,他们难以研究,最重要的是,他们在体内大的变异程度和低丰度。结果,具有敏感检测能力的有效分离方法对于剖析组织样本中的神经肽,特别是那些简化的模型生物如甲壳类动物所必需的。为了解决这些挑战,本研究利用毛细管电泳(CE)-MATrix辅助激光解吸/电离(MALDI) - MSI)平台,建立我们以前的设计,以改善神经肽覆盖。涂有聚乙胺(PEI)的毛细血管,以减少肽吸附并反转电渗流,并且大体积样品堆叠(LVS)用于载荷和预浓缩1μL样品。该方法显示出良好的再现性,具有低于标准标准偏差的5%,对阿拉多抑制素III肽标准的检测约为100pm。该方法在脑和窦腺(SG)组织提取物上测试,并使每次运行过200多个神经肽的检测。当比较直接斑点的脑提取物中检测到的数量,60秒馏分和30秒的级分时,CE-MALDI-MSI平台提供的连续痕量收集产生了最多的检测到的神经肽。将该方法与常规LC-ESI-MS进行比较,尽管LC-ESI-MS检测到的神经肽的数量略大,但这两种方法是高度互补的,表明CE-MALDI-MSI方法以前揭示的可能性未检测到甲壳类神经系统中的神经肽。这些结果表明CE-MALDI-MSI常规用于神经肽研究的潜力。

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