Department of Chemistry, Carleton University, Ottawa, Ontario K1S 5B6, Canada.
Carleton Mass Spectrometry Centre, Carleton University, Ottawa, Ontario K1S 5B6, Canada.
J Am Soc Mass Spectrom. 2024 May 1;35(5):972-981. doi: 10.1021/jasms.4c00015. Epub 2024 Mar 29.
The identification and quantitation of plasmalogen glycerophospholipids is challenging due to their isobaric overlap with plasmanyl ether-linked glycerophospholipids, susceptibility to acid degradation, and their typically low abundance in biological samples. Trimethylation enhancement using diazomethane (TrEnDi) can be used to significantly enhance the signal of glycerophospholipids through the creation of quaternary ammonium groups producing fixed positive charges using C-diazomethane in complex lipid extracts. Although TrEnDi requires a strong acid for complete methylation, we report an optimized protocol using 10 mM HBF with the subsequent addition of a buffer solution that prevents acidic hydrolysis of plasmalogen species and enables the benefits of TrEnDi to be realized for this class of lipids. These optimized conditions were applied to aliquots of bovine liver extract (BLE) to achieve permethylation of plasmalogen lipids within a complex mixture. Treating aliquots of unmodified and TrEnDi-derivatized BLE samples with 80% formic acid and comparing their liquid chromatography mass spectrometry (LCMS) results to analogous samples not treated with formic acid, enabled the identification of 29 plasmalogen species. On average, methylated plasmalogen species from BLE demonstrated 2.81-fold and 28.1-fold sensitivity gains over unmodified counterparts for phosphatidylcholine and phosphatidylethanolamine plasmalogen species, respectively. Furthermore, the compatibility of employing C-TrEnDi and a previously reported iodoacetalization strategy was demonstrated to effectively identify plasmenyl-ether lipids in complex biological extracts at greater levels of sensitivity. Overall, we detail an optimized C-TrEnDi derivatization strategy that enables the analysis of plasmalogen glycerophospholipids with no undesired cleavage of radyl groups, boosting their sensitivity in LCMS and LCMS/MS analyses.
由于其与酰基醚连接的甘油磷脂的等质异位重叠、易受酸降解以及在生物样品中通常含量较低,因此鉴定和定量血浆醚甘油磷脂具有挑战性。使用重氮甲烷(TrEnDi)进行三甲基化增强可以通过创建季铵基团来显著增强甘油磷脂的信号,从而使用复杂脂质提取物中的 C-重氮甲烷产生固定的正电荷。虽然 TrEnDi 需要强酸才能完全甲基化,但我们报告了一种使用 10mM HBF 的优化方案,随后添加缓冲溶液可防止血浆醚物种的酸性水解,并使 TrEnDi 能够为这类脂质带来益处。这些优化条件应用于牛肝提取物(BLE)的等分试样中,以实现复杂混合物中血浆醚脂质的全甲基化。用 80%甲酸处理未经修饰和 TrEnDi 衍生的 BLE 样品的等分试样,并将其液相色谱质谱(LCMS)结果与未用甲酸处理的类似样品进行比较,从而鉴定出 29 种血浆醚物种。平均而言,与未经修饰的对应物相比,BLE 中的甲基化血浆醚物种在 LCMS 分析中分别对磷脂酰胆碱和磷脂酰乙醇胺血浆醚物种的灵敏度提高了 2.81 倍和 28.1 倍。此外,还证明了采用 C-TrEnDi 和先前报道的碘乙缩醛化策略的兼容性可有效提高复杂生物提取物中神经鞘脂的灵敏度。总的来说,我们详细介绍了一种优化的 C-TrEnDi 衍生化策略,该策略可在不对拉德基团进行不必要切割的情况下分析血浆醚甘油磷脂,从而提高其在 LCMS 和 LCMS/MS 分析中的灵敏度。