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Enhanced Neuropeptide Profiling via Capillary Electrophoresis Off-Line Coupled with MALDI FTMS

机译:通过离线与MALDI FTMS耦合的毛细管电泳增强神经肽分析

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An off-line interface incorporating sheathless flow and counter-flow balance is developed to couple capillary electrophoresis (CE) to matrix-assisted laser desorption ionization Fourier transform mass spectrometry (MALDI FTMS) for neuropeptide analysis of complex tissue samples. The new interface provides excellent performance due to the integration of three aspects: (1) A porous polymer joint constructed near the capillary outlet for the electrical circuit completion has simplified the CE interface by eliminating a coaxial sheath liquid and enables independent optimization of separation and deposition. (2) The electroosmotic flow at reversed polarity (negative) mode CE is balanced and reversed by a pressure-initiated capillary siphoning (PICS) phenomenon, which offers improved CE resolution and simultaneously generates a low flow (<100 nL/min) for fraction collection. (3) The predeposited nanoliter volume 2,5-dihydroxybenzoic acid (DHB) spots on a Parafilm-coated MALDI sample plate offers an improved substrate for effective effluent enrichment. Compared with direct MALDI MS analysis, CE separation followed by MALDI MS detection consumes nearly 10-fold less sample (50 nL) while exhibiting 5-10-fold enhancement in S/N ratio that yields the limit of detection down to 1.5 nM, or 75 attomoles. This improvement in sensitivity allows 230 peaks detected in crude extracts from only a few pooled neuronal tissues and increases the number of identified peptides from 19 to 43 (Cancer borealis pericardial organs (n velence 4)) in a single analysis. In addition, via the characteristic migration behaviors in CE, some specific structural and chemical information of the neuropeptides such as post-translational modifications and family variations has been visualized, making the off-line CE-MALDI MS a promising strategy for enhanced neuropeptidomic profiling.
机译:开发了一种结合无鞘流和逆流平衡的离线接口,以将毛细管电泳(CE)与基质辅助激光解吸电离傅里叶变换质谱(MALDI FTMS)耦合,用于复杂组织样品的神经肽分析。由于三个方面的集成,新界面提供了出色的性能:(1)在毛细管出口附近构造的多孔聚合物接头,用于完成电路,通过消除同轴鞘液简化了CE界面,并能够独立优化分离和沉积。 (2)反向极性(负)模式CE的电渗流通过压力引发的毛细管虹吸(PICS)现象得到平衡和反向,从而改善了CE分辨率,同时产生了小流量(<100 nL / min)采集。 (3)在Parafilm涂层MALDI样品板上预先沉积的纳升体积2,5-二羟基苯甲酸(DHB)斑点为有效的废水富集提供了改进的基质。与直接MALDI MS分析相比,CE分离后进行MALDI MS检测消耗的样品量少了近10倍(50 nL),而信噪比却提高了5-10倍,从而将检测限降至1.5 nM,或者75个小室。灵敏度的提高允许仅在少数合并的神经元组织的粗提物中检测到230个峰,并且在一次分析中将鉴定出的肽的数量从19个增加到43个(癌性心包心包器官(nvelence 4))。此外,通过CE中的特征性迁移行为,可视化了神经肽的某些特定结构和化学信息,例如翻译后修饰和家族变异,从而使离线CE-MALDI MS成为增强神经肽谱分析的有前途的策略。

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