Rapid quantification of 50 fatty acids in small amounts of biological samples for population molecular phenotyping.

Pinghui Liu, Qinsheng Chen, Lianglong Zhang, Chengcheng Ren, Biru Shi, Jingxian Zhang, Shuaiyao Wang, Ziliang Chen, Qi Wang, Hui Xie, Qingxia Huang, Huiru Tang
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Abstract

Efficient quantification of fatty-acid (FA) composition (fatty-acidome) in biological samples is crucial for understanding physiology and pathophysiology in large population cohorts. Here, we report a rapid GC-FID/MS method for simultaneous quantification of all FAs in numerous biological matrices. Within eight minutes, this method enabled simultaneous quantification of 50 FAs as fatty-acid methyl esters (FAMEs) in femtomole levels following the efficient transformation of FAs in all lipids including FFAs, cholesterol-esters, glycerides, phospholipids and sphingolipids. The method showed satisfactory inter-day and intra-day precision, stability and linearity (R2 > 0.994) within a concentration range of 2-3 orders of magnitude. FAs were then quantified in typical multiple biological matrices including human biofluids (urine, plasma) and cells, animal intestinal content and tissue samples. We also established a quantitative structure-retention relationship (QSRR) for analytes to accurately predict their retention time and aid their reliable identification. We further developed a novel no-additive retention index (NARI) with endogenous FAMEs reducing inter-batch variations to 15 seconds; such NARI performed better than the alkanes-based classical RI, making meta-analysis possible for data obtained from different batches and platforms. Collectively, this provides an inexpensive high-throughput analytical system for quantitative phenotyping of all FAs in 8-minutes multiple biological matrices in large cohort studies of pathophysiological effects.

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快速量化少量生物样本中的 50 种脂肪酸,用于群体分子表型分析。
高效量化生物样本中的脂肪酸(FA)组成(脂肪组)对于了解大量人群的生理学和病理生理学至关重要。在此,我们报告了一种快速 GC-FID/MS 方法,用于同时定量多种生物基质中的所有脂肪酸。该方法能在八分钟内同时定量分析 50 种脂肪酸甲酯(FAMEs)的飞摩尔含量,这些脂肪酸甲酯是在包括脂肪酸、胆固醇酯、甘油酯、磷脂和鞘脂在内的所有脂类中高效转化而来的。在 2-3 个数量级的浓度范围内,该方法显示出令人满意的日间和日内精确度、稳定性和线性(R2 > 0.994)。随后,我们对典型的多种生物基质(包括人体生物流体(尿液、血浆)和细胞、动物肠道内容物和组织样本)中的 FAs 进行了定量。我们还建立了分析物的定量结构-保留关系 (QSRR),以准确预测其保留时间,帮助可靠地识别它们。我们进一步开发了一种新型的无添加保留指数(NARI),利用内源性 FAMEs 将批次间的差异减少到 15 秒;这种 NARI 比基于烷烃的经典保留指数性能更好,从而可以对来自不同批次和平台的数据进行荟萃分析。总之,这提供了一种廉价的高通量分析系统,可在 8 分钟内对病理生理效应的大型队列研究中的多种生物基质中的所有 FAs 进行定量表型。
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