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首页> 外文期刊>Chemistry and Physics of Lipids >Instrument response of phosphatidylglycerol lipids with varying fatty acyl chain length in nano-ESI shotgun experiments
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Instrument response of phosphatidylglycerol lipids with varying fatty acyl chain length in nano-ESI shotgun experiments

机译:纳米ESI霰弹枪实验中磷脂基甘油脂质磷脂酰基甘油脂质的仪器响应

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摘要

In recent years, lipid quantification gained importance. In most cases, this is achieved by spiking the lipid mixture with deuterated standard lipids or lipid analogues that differ in chain length when compared with the natural lipid components. Usually, conventional ESI is employed requiring sample amounts which are not always available. Here, we evaluate the use of nano-ESI for accurate lipid quantification employing deuterated as well as short- and odd-fatty acyl chain analogues. We compare ionisation efficiencies of various phosphatidylglycerol species differing in fatty acyl chain length and saturation. While in our instrumental and experimental set-up differences in ionisation could not be observed for lipids varying in the number of double bonds, short-chain lipid species showed significantly higher intensities when compared with their long-chain analogues. To compensate for these differences and enable accurate quantification using short-fatty acyl chain lipid standards, we generated a calibration curve over a range of lipids with increasing chain length. We tested and evaluated the application of this calibration curve by comparison with a deuterated and odd-chain standard lipid for quantification of lipids in a mixture of known composition as well as a natural lipid extract. The different approaches deliver comparable quantities and are therefore applicable for accurate lipid quantification using nano-ESI. Even though generation of calibration curves might be more laborious, it has the advantage that peak overlap with natural lipids is eliminated and broad peak distributions of deuterated standards do not have to be assessed. Furthermore, it allows the calculation of response factors for long- or short-fatty acyl chain analogues when using deuterated or odd-numbered standard lipids for absolute quantification.
机译:近年来,脂质量化获得了重要性。在大多数情况下,这是通过将脂质混合物与氘代标准脂质或脂质类似物掺入与天然脂质组分相比的氘代标准脂质或脂质类似物的脂质混合物来实现。通常,采用传统的ESI,要求不始终可用的样品量。在这里,我们评估纳米ESI的使用,以进行氘代的准确脂质定量以及短致脂肪酰基链类似物。我们比较各种磷脂酰基甘油物种的离子化效率,其脂肪酰基链长度和饱和度不同。虽然在我们的仪器和实验性设置差异中,但对于在双键的数量中变化的脂质不能观察到电离中的脂质,而短链脂质物种与它们的长链类似物相比,短链脂质物种显示出显着更高的强度。为了补偿这些差异并使用短脂肪酰基链脂质标准能够准确定量,我们在一系列脂质上产生了链条长度的校准曲线。我们通过与氘代和奇数链标准脂质的比较来测试和评估该校准曲线的应用,用于在已知组合物的混合物中定量脂质以及天然脂质提取物。不同方法提供相当的数量,因此适用于使用纳米ESI准确的脂质定量。尽管校准曲线的产生可能更加艰苦,但它的优点是消除了具有天然脂质的峰值重叠,并且不必评估氘代标准的广泛峰值分布。此外,当使用氘代或奇数标准的标准脂质以绝对定量时,它允许计算长或短脂肪酰基链类似物的响应因子。

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