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低极性磷脂的薄层色谱法和31P核磁共振分析

TLC and 31P-NMR analysis of low polarity phospholipids.

作者信息

Vyssotski Mikhail, MacKenzie Andrew, Scott Dawn

机构信息

Industrial Research Limited, Lower Hutt, New Zealand.

出版信息

Lipids. 2009 Apr;44(4):381-9. doi: 10.1007/s11745-008-3272-4. Epub 2008 Dec 13.

Abstract

High-performance TLC and (31)P-NMR were assessed as methods of observing the presence of numerous low polarity phospholipids: bis-phosphatidic acid (BPA), semi-lyso bis-phosphatidic acid (SLBPA), N-acyl phosphatidylethanolamine (NAPE), N-(1,1-dimethyl-3-oxo-butyl)-phosphatidylethanolamine (diacetone adduct of PE, DOBPE), N-acetyl PE, phosphatidylmethanol (PM), phosphatidylethanol (PEt), phosphatidyl-n-propanol (PP), phosphatidyl-n-butanol (PB). Both techniques are non-discriminative and do not require the prior isolation of individual lipids. It appears that 2D TLC is superior to (31)P NMR in the analysis of low polarity phospholipids. All phosphatidylalcohols were well separated by 2D TLC. However, some compounds which can present difficulty in separation by 2D-TLC (e.g., SLBPA and NAPE; or DOBPE and N-acetyl PE) were easily distinguished using (31)P NMR so the methods are complimentary. A disadvantage of 2D TLC is that Rf values can vary with different brands and batches of TLC plates. The chemical shifts of (31)P NMR were less variable, and so a library of standards may not be necessary for peak identification. Another advantage of (31)P NMR is the ease of quantification of phospholipids. The applicability of the methods was tested on natural extracts of fish brain and cabbage stem.

摘要

高效薄层层析法(TLC)和磷-31核磁共振法(³¹P-NMR)被评估为观察多种低极性磷脂存在情况的方法,这些磷脂包括:双磷脂酸(BPA)、半溶血双磷脂酸(SLBPA)、N-酰基磷脂酰乙醇胺(NAPE)、N-(1,1-二甲基-3-氧代丁基)-磷脂酰乙醇胺(PE的双丙酮加合物,DOBPE)、N-乙酰基PE、磷脂酰甲醇(PM)、磷脂酰乙醇(PEt)、磷脂酰正丙醇(PP)、磷脂酰正丁醇(PB)。这两种技术都不具有特异性,且不需要事先分离单个脂质。在低极性磷脂分析中,二维薄层层析法似乎优于³¹P核磁共振法。所有磷脂醇通过二维薄层层析法都能得到很好的分离。然而,一些用二维薄层层析法分离可能存在困难的化合物(例如,SLBPA和NAPE;或DOBPE和N-乙酰基PE),使用³¹P核磁共振法很容易区分,因此这两种方法是互补的。二维薄层层析法的一个缺点是,比移值(Rf)会因不同品牌和批次的薄层层析板而有所变化。³¹P核磁共振法的化学位移变化较小,因此可能不需要标准品库来进行峰鉴定。³¹P核磁共振法的另一个优点是磷脂定量容易。这些方法的适用性在鱼脑和甘蓝茎的天然提取物上进行了测试。

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