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Rapid nanoscale quantitative analysis of plant sphingolipid long-chain bases by GC-MS

机译:通过GC-MS快速纳米级定量分析植物鞘脂长链碱基

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摘要

In eukaryotic organisms, sphingolipids are major structural lipids of biological membranes and perform additional essential functions as signalling molecules. While long-chain bases (LCB), the common precursor to all sphingolipid classes, is represented by only one major molecular species in animals and fungi, up to nine LCB have been found in plants. In the absence of genuine plant sphingolipid references required for proper quantification, we have reinvestigated and optimized a protocol destined to the quantification of total plant LCB that relies on the use of gas chromatography-mass spectrometry (GC-MS). This rapid three-step protocol sequentially involves (1) the release of LCB from biological samples using barium hydroxide solution, (2) their oxidation into aldehydes by metaperiodate, and (3) the subsequent identification/quantification of these aldehydes by GC-MS. It is simple and reliable and enables separation of aldehydes upon their stero-specificity. It further enables the quantification of total LCB from a wide variety of samples including yeast and animal cell cultures.
机译:在真核生物中,鞘脂是生物膜的主要结构脂质,并作为信号分子执行其他基本功能。虽然长链碱基(LCB)是所有鞘脂类的共同前体,但在动物和真菌中仅以一种主要的分子种类为代表,但在植物中却发现了多达九种LCB。在缺乏正确定量所需的真正植物鞘脂参考的情况下,我们已经重新研究和优化了旨在量化整个植物LCB的方案,该方案依赖于气相色谱-质谱(GC-MS)的使用。这种快速的三步操作方案依次涉及(1)使用氢氧化钡溶液从生物样品中释放LCB,(2)通过偏高碘酸盐将其氧化为醛类以及(3)随后通过GC-MS鉴定/定量这些醛类。它简单可靠,并且能够根据其立体特异性分离醛。它进一步实现了从包括酵母和动物细胞培养物在内的多种样品中定量总LCB的能力。

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