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High Spatial Resolution Imaging of Mouse Pancreatic Islets Using Nanospray Desorption Electrospray Ionization Mass Spectrometry

机译:小鼠胰岛胰岛的高空间分辨率成像使用纳清解吸电喷雾电离质谱法

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Nanospray Desorption Electrospray Ionization mass spectrometry imaging (nano-DESI MSI) enables ambient imaging of biological samples with high sensitivity and minimal sample pretreatment. Recently, we developed an approach for constant-distance mode MSI using shear force microscopy to precisely control the distance between the sample and the nano-DESI probe. Herein, we demonstrate the power of this approach for robust imaging of pancreatic islets with high spatial resolution of 11 pm. Pancreatic islets are difficult to characterize using traditional mass spectrometry approaches due to their small size (similar to 100 mu m) and molecular heterogeneity. Nano-DESI MSI was used to examine the spatial localization of several lipid classes including phosphatidylcholine (PC), phosphatidylethanolamine (PE), sphingomyelin (SM), phosphatidylinositol (PI), and phosphatidylserine (PS) along with fatty acids and their metabolites (e.g., prostaglandins) in the individual islets and surrounding tissue. Several lipids were found to be substantially enhanced in the islets indicating these lipids may be involved in insulin secretion. Remarkably different distributions were observed for several pairs of Lyso PC (LPC) and PC species differing only by one double bond, such as LPC 18:1 vs LPC 18:0, PC 32:1 vs PC 32:0, and PC 34:2 vs PC 34:1. These findings indicate that minor variations in the fatty acid chain length and saturation have a pronounced effect on the localization of PC and LPC species in pancreatic islets. Interestingly, oxidized PC species observed experimentally were found to be specifically localized to pancreatic islets. These PCs are potential biomarkers for reactive oxygen species in the islets, which could be harmful to pancreatic beta cells. The experimental approach presented in this study will provide valuable information on the heterogeneity of individual pancreatic islets, which is difficult to assess using bulk characterization techniques.
机译:纳米腐烂的解吸电喷雾电离质谱(Nano-Desi MSI)能够实现具有高灵敏度和最小样品预处理的生物样品的环境成像。最近,我们开发了一种使用剪切力显微镜进行恒定距离模式MSI的方法,精确控制样品和纳米DESI探针之间的距离。在此,我们展示了这种方法的胰岛稳健成像具有11μk的高空间分辨率的能力。由于它们的小尺寸(类似于100μm)和分子异质性,胰岛难以使用传统的质谱法来表征。用于检查几种脂质类别的几种脂质类别的空间定位,包括磷脂酰胆碱(PC),磷脂酰乙醇胺(PE),鞘氨基醇(SM),磷脂酰肌醇(PI)和磷脂酰丝氨酸(PS)以及脂肪酸及其代谢物(例如,前列腺素)在各个胰岛和周围组织中。发现几种脂质在表明这些脂质可能涉及胰岛素分泌中的胰岛基本上增强。对于几对的LYSO PC(LPC)和仅不同的PC物种仅观察到显着不同的分布,例如LPC 18:1 VS LPC 18:0,PC 32:1 VS PC 32:0和PC 34: 2 VS PC 34:1。这些发现表明脂肪酸链长度和饱和度的次要变化对胰岛中PC和LPC物种的定位具有明显的影响。有趣的是,发现实验观察到的氧化的PC物种被发现特异性局部化为胰岛胰岛。这些PC是用于胰岛中的反应性氧物种的潜在生物标志物,这可能对胰腺β细胞有害。本研究中呈现的实验方法将提供有关单个胰岛胰岛的异质性的有价值的信息,这难以使用批量表征技术进行评估。

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