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Matrix coating assisted by an electric field (MCAEF) for enhanced tissue imaging by MALDI-MS

机译:由电场(MCAEF)辅助的基质涂层,用于通过MALDI-MS增强组织成像

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A novel technique, termed matrix coating assisted by an electric field (MCAEF), for enhancing tissue imaging by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) was developed in this study. In this technique a static and uniform electric field is applied to sliced tissue sections during matrix spray-coating, resulting in the enrichment of positively or negatively chargeable analytes in the MALDI matrix layer. Experimental results show that MCAEF not only increased the sensitivity of lipid and protein detection across the board in the subsequent MALDI-MS analyses, but also resulted in successful imaging of a larger number of analytes. MALDI imaging enhancement with MCAEF was observed for various tissues (rat liver, rat brain, and porcine adrenal gland) and with different MALDI matrices ( e.g. , quercetin, 2-mercaptobenzothiazole, dithranol, 9-aminoacridine, and sinapinic acid) and the sensitivity increases were independent of the solvent compositions and pH values of the matrix solutions. Taking rat brain as an example, MCAEF led to the on-tissue detection and imaging of 648 identified lipids by combining positive and negative ion detection by MALDI-Fourier transform ion cyclotron resonance MS and with quercetin as the matrix, as compared to only 344 lipids without MCAEF. For protein imaging, up to 232 protein signals were successfully detected in rat brain tissue sections by MALDI-time-of-flight MS within a mass range of 3500 to 37?000 Da, as compared to 119 without MCAEF. MCAEF also enabled the detection of higher molecular-weight proteins. These results demonstrate the advantages of MCAEF for overall performance improvements in MALDI imaging and we believe that this technique has the potential to become a standard practice for MALDI tissue imaging.
机译:一种新的技术,被电场(MCAEF)辅助的基质涂层,用于通过基质辅助激光解吸/电离质谱(MALDI-MS)增强组织成像。在该技术中,在基质喷涂期间将静态和均匀的电场施加到切片组织切片上,导致MALDI基质层中的正面或带负电的分析物的富集。实验结果表明,MCAEF在随后的MALDI-MS分析中,MCAEF不仅增加了脂质和蛋白质检测的敏感性,而且导致成功的分析物成功成功。针对各种组织(大鼠肝,大鼠脑和猪肾上腺)和不同的MALDI基质(例如,槲皮素,2-巯基苯噻唑,二苯甲醚,9-氨基丙烯酸和锡丁酸)和敏感性增加,观察到MARDI成像增强独立于基质溶液的溶剂组合物和pH值。以大鼠大脑为例,MCAEF通过组合通过马尔迪 - 傅里叶变换离子回应和槲皮素作为基质的正极和负离子检测来导致648鉴定的脂质的组织检测和成像,与仅344脂质相比没有McAef。对于蛋白质成像,通过在3500至37 000Da的质量范围内,在大鼠脑组织切片中成功检测到多达232个蛋白质信号,而没有Mcaef的119,在3500至37Ω000Da的质量范围内。 MCAEF还能够检测更高分子量蛋白质。这些结果表明了McAEF在MALDI成像中的整体性能改进的优势,我们认为该技术有可能成为MALDI组织成像的标准做法。

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