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Food-induced changes of lipids in rat neuronal tissue visualized by ToF-SIMS imaging

机译:通过ToF-SIMS成像观察食物引起的大鼠神经元脂质的变化

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摘要

Time of flight secondary ion mass spectrometry (ToF-SIMS) was used to image the lipid localization in brain tissue sections from rats fed specially processed cereals (SPC). An IonTof 5 instrument equipped with a Bi cluster ion gun was used to analyze the tissue sections. Data from 15 brain samples from control and cereal-fed rats were recorded and exported to principal components analysis (PCA). The data clearly show changes of certain lipids in the brain following cereal feeding. PCA score plots show a good separation in lipid distribution between the control and the SPC-fed group. The loadings plot reveal that the groups separated mainly due to changes in cholesterol, vitamin E and c18:2, c16:0 fatty acid distribution as well as some short chain monocarboxylic fatty acid compositions. These insights relate to the working mechanism of SPC as a dietary supplement. SPC is thought to activate antisecretory factor (AF), an endogenous protein with regulatory function for inflammation and fluid secretion. These data provide insights into lipid content in brain following SPC feeding and suggest a relation to activating AF.
机译:飞行时间二次离子质谱法(ToF-SIMS)用于对饲喂特殊加工谷物(SPC)的大鼠脑组织切片中的脂质定位进行成像。使用配备有Bi簇离子枪的IonTof 5仪器来分析组织切片。记录了来自对照组和谷物喂养大鼠的15个脑样本的数据,并将其输出到主成分分析(PCA)。数据清楚地显示了谷物喂养后大脑中某些脂质的变化。 PCA评分图显示对照组和SPC喂养组之间的脂质分布良好分离。负荷图显示,这些组的分离主要是由于胆固醇,维生素E和c18:2,c16:0脂肪酸分布以及某些短链一元脂肪酸组成的变化。这些见解与作为膳食补充剂的SPC的工作机制有关。人们认为SPC可以激活抗分泌因子(AF),这是一种具有调节炎症和体液分泌功能的内源性蛋白质。这些数据提供了进食SPC后大脑中脂质含量的见解,并暗示了与激活AF的关系。

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