Rubino Federico Maria, Dei Cas Michele, Bignotto Monica, Ghidoni Riccardo, Iriti Marcello, Paroni Rita
Dipartimento di Scienze della Salute, Universita' degli Studi di Milano, I-20142 Milano, Italy.
Aldo Ravelli Center for Neurotechnology and Experimental Brain Therapeutics, Dipartimento di Scienze della Salute, Universita' degli Studi di Milano, I-20142 Milano, Italy.
Foods. 2020 Jan 21;9(2):110. doi: 10.3390/foods9020110.
The densely packed storage of valuable nutrients (carbohydrates, lipids, proteins, micronutrients) in the endosperm of nuts and seeds makes the study of their complex composition a topic of great importance. Ceramides in the total lipid extract of some ground almonds and pistachios were searched with a systematic innovative discovery precursor ion scan in a triple quadrupole tandem mass spectrometry, where iso-energetic collision activated dissociation was performed. Five descriptors were used to search components with different C18 long chain bases containing different structural motifs (d18:0, d18:1, d18:2, t18:0, t18:1). The presence of hexoside unit was screened with a specific neutral loss experiment under iso-energetic collision activated dissociation conditions. The discovery scans highlighted the presence of two specific hexosyl-ceramides with a modified sphingosine component (d18:2) and C16:0 or C16:0 hydroxy-fatty acids. The hexosyl-ceramide with the non-hydroxylated fatty acid seemed specific of pistachios and was undetected in almonds. The fast and comprehensive mass spectrometric method used here can be useful to screen lipid extracts of several more seeds of nutraceutical interest, searching for unusual and/or specific sphingosides with chemically decorated long chain bases.
坚果和种子胚乳中富含宝贵的营养物质(碳水化合物、脂质、蛋白质、微量营养素),这使得对其复杂成分的研究成为一个极其重要的课题。在三重四极杆串联质谱仪中,采用系统创新的发现前体离子扫描方法,对一些磨碎的杏仁和开心果的总脂质提取物中的神经酰胺进行了搜索,并进行了等能量碰撞活化解离。使用五个描述符来搜索含有不同结构基序(d18:0、d18:1、d18:2、t18:0、t18:1)的不同C18长链碱基的成分。在等能量碰撞活化解离条件下,通过特定的中性丢失实验筛选己糖单元的存在。发现扫描突出显示了两种特定的己糖基神经酰胺,其鞘氨醇成分(d18:2)经过修饰,脂肪酸为C16:0或C16:0羟基脂肪酸。含有非羟基化脂肪酸的己糖基神经酰胺似乎是开心果特有的,在杏仁中未检测到。这里使用的快速且全面的质谱方法可用于筛选更多具有营养保健价值的种子的脂质提取物,寻找具有化学修饰长链碱基的异常和/或特定鞘脂。