ARC Centre of Excellence for Free Radical Chemistry and Biotechnology, School of Chemistry, University of Wollongong, Wollongong, NSW 2522, Australia.
Analyst. 2012 Mar 7;137(5):1100-10. doi: 10.1039/c1an15864c. Epub 2011 Nov 25.
Unsaturated lipids deposited onto a range of materials are observed to react with the low concentrations of ozone present in normal laboratory air. Parent lipids and ozonolysis cleavage products are both detected directly from surfaces by desorption electrospray ionisation mass spectrometry (DESI-MS) with the resulting mass spectra providing clear evidence of the double bond position within these molecules. This serendipitous process has been coupled with thin-layer chromatography (TLC) to provide a simple but powerful approach for the detailed structural elucidation of lipids present in complex biological extracts. Lipid extracts from human lens were deposited onto normal phase TLC plates and then developed to separate components according to lipid class. Exposure of the developed plates to laboratory air for ca. 1 h prior to DESI-MS analysis gave rise to ozonolysis products allowing for the unambiguous identification of double bond positions in even low abundant, unsaturated lipids. In particular, the co-localization of intact unsaturated lactosylceramides (LacCer) with products from their oxidative cleavage provide the first evidence for the presence of three isomeric LacCer (d18:0/24:1) species in the ocular lens lipidome, i.e., variants with double bonds at the n-9, n-7 and n-5 positions.
在各种材料上沉积的不饱和脂质被观察到与正常实验室空气中存在的低浓度臭氧反应。通过解吸电喷雾电离质谱(DESI-MS)直接从表面检测到母体脂质和臭氧分解裂解产物,得到的质谱为这些分子中的双键位置提供了明确的证据。这个偶然的过程与薄层层析(TLC)相结合,为复杂生物提取物中脂质的详细结构阐明提供了一种简单但强大的方法。将人晶状体的脂质提取物沉积在正相 TLC 板上,然后根据脂质类别进行展开以分离成分。在进行 DESI-MS 分析之前,将展开的平板暴露于实验室空气中约 1 小时,会产生臭氧分解产物,从而能够明确鉴定低丰度不饱和脂质中的双键位置。特别是,完整不饱和乳糖鞘氨醇(LacCer)与氧化裂解产物的共定位为眼晶状体脂质组中存在三种异构 LacCer(d18:0/24:1)物种提供了第一个证据,即双键位于 n-9、n-7 和 n-5 位置的变体。