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ToF-SIMS imaging of lipids and lipid related compounds in Drosophila brain

机译:果蝇大脑中脂质和脂质相关化合物的ToF-SIMS成像

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摘要

Drosophila melanogaster (fruit fly) has a relatively simple nervous system but possesses high order brain functions similar to humans. Therefore, it has been used as a common model system in biological studies, particularly drug addiction. Here, the spatial distribution of biomolecules in the brain of the fly was studied using time-of flight secondary ion mass spectrometry (ToF-SIMS). Fly brains were analyzed frozen to prevent molecular redistribution prior to analysis. Different molecules were found to distribute differently in the tissue, particularly the eye pigments, diacylglycerides, and phospholipids, and this is expected to be driven by their biological functions in the brain. Correlations in the localization of these molecules were also observed using principal components analysis of image data, and this was used to identify peaks for further analysis. Furthermore, consecutive analyses following 10 keV Ar2500+ sputtering showed that different biomolecules respond differently to Ar2500+ sputtering. Significant changes in signal intensities between consecutive analyses were observed for high mass molecules including lipids.
机译:果蝇(果蝇)具有相对简单的神经系统,但具有类似于人类的高级大脑功能。因此,它已被用作生物学研究中的通用模型系统,尤其是药物成瘾。在这里,使用飞行时间二次离子质谱(ToF-SIMS)研究了苍蝇大脑中生物分子的空间分布。在分析之前,先将frozen脑冷冻分析,以防止分子重新分布。发现不同的分子在组织中的分布不同,尤其是眼色素,二酰基甘油酯和磷脂,这被认为是由于它们在大脑中的生物学功能所驱动。使用图像数据的主成分分析还观察到了这些分子的定位相关性,并将其用于识别峰以进行进一步分析。此外,在10 keV Ar2500 + 溅射之后进行的连续分析表明,不同的生物分子对Ar2500 + 溅射的反应不同。对于包括脂质在内的高质量分子,在连续分析之间观察到信号强度的显着变化。

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