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Mapping Lipid Alterations in Traumatically Injured Rat Spinal Cord by Desorption Electrospray Ionization Imaging Mass Spectrometry

机译:解吸电喷雾电离成像质谱法测定创伤性大鼠脊髓中的脂质变化

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Desorption electrospray ionization (DESI) mass spectrometry (MS) is used in an imaging mode to interrogate the lipid profiles of 15 (mu)m thin tissue cross sections of injured rat spinal cord and normal healthy tissue. Increased relative intensities of fatty acids, diacylglycerols, and lysolipids (between +120percent and +240percent) as well as a small decrease in intensities of lipids (-30percent) were visualized in the lesion epicenter and adjacent areas after spinal cord injury. This indicates the hydrolysis of lipids during the demyelination process due to activation of phospholipase A_(2) enzyme. In addition, signals corresponding to oxidative degradation products, such as prostaglandin and hydroxyeicosatetraenoic acid, exhibited increased signal intensity by a factor of 2 in the negative ion mode in lesions relative to the normal healthy tissue. Analysis of malondialdehyde, a product of lipid peroxidation and marker of oxidative stress, was accomplished in the ambient environment using reactive DESI mass spectrometry imaging. This was achieved by electrospraying reagent solution containing dinitrophenylhydrazine as high-velocity charged droplets onto the tissue section. The hydrazine reacts selectively and rapidly with the carbonyl groups of malondialdehyde, and signal intensity of twice the intensity was detected in the lesions compared to healthy spinal cord. With a small amount of tissue sample, DESI-MS imaging provides information on the composition and distribution of specific compounds (limited by the occurrence of isomeric lipids with very similar fragmentation patterns) in lesions after spinal cord injury in comparison with normal healthy tissue allowing identification of the extent of the lesion and its repair.
机译:解吸电喷雾电离(DESI)质谱(MS)用于成像模式,以探查受损伤的大鼠脊髓和正常健康组织的15μm薄组织横截面的脂质谱。在脊髓损伤后的病灶震中和邻近区域,可以看到脂肪酸,二酰基甘油和溶血脂的相对强度增加(在+ 120%和+ 240%之间)以及脂质强度的小幅下降(-30%)。这表明由于磷脂酶A_(2)酶的活化,在脱髓鞘过程中脂质的水解。另外,与氧化降解产物相对应的信号,例如前列腺素和羟基二十碳四烯酸,相对于正常健康组织,在负离子模式下,其信号强度在负离子模式下增加了2倍。丙二醛是脂质过氧化作用的产物,是氧化应激的标志物,在该环境中使用反应性DESI质谱成像技术进行了分析。这是通过将包含二硝基苯肼作为高速带电液滴的试剂溶液电喷涂到组织切片上来实现的。肼与丙二醛的羰基选择性且快速地反应,与健康脊髓相比,在病变中检测到的信号强度是该强度的两倍。与正常的健康组织相比,使用少量的组织样品,DESI-MS成像可提供脊髓损伤后病变中特定化合物的组成和分布信息(受具有非常相似的碎裂模式的异构脂质的限制),从而可以识别病变范围及其修复。

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