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Production of Isotopically Labeled Standards from a Uniformly Labeled Precursor for Quantitative Volatile Metabolomic Studies

机译:从统一标记的前体生产同位素标记的标准品,以进行定量挥发性代谢组学研究

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Optimal accuracy and precision in small-molecule profiling by mass spectrometry generally requires isotopically labeled standards chemically representative of all compounds of interest. However, preparation of mixed standards from commercially available pure compounds is often prohibitively expensive and time-consuming, and many labeled compounds are not available in pure form. We used a single-prototype uniformly labeled [U-~(13)C]compound to generate [U-~(13)C]-labeled volatile standards for use in subsequent experimental profiling studies. [U-~(13)C]-alpha-Linolenic acid (18:3n-3, ALA) was thermally oxidized to produce labeled lipid degradation volatiles which were subsequently characterized qualitatively and quantitatively. Twenty-five [U-~(13)C]-labeled volatiles were identified by headspace solid-phase microextraction-gas chromatography/time-of-flight mass spectrometry (HS-SPME-GC/TOF-MS) by comparison of spectra with unlabeled volatiles. Labeled volatiles were quantified by a reverse isotope dilution procedure. Using the [U-~(13)C]-labeled standards, limits of detection comparable to or better than those of previous HS-SPME reports were achieved, 0.010-1.04 ng/g. The performance of the [U-~(13)C]-labeled volatile standards was evaluated using a commodity soybean oil (CSO) oxidized at 60 deg C from 0 to 15 d. Relative responses of n-decane, an unlabeled internal standard otherwise absent from the mixture, and [U-~(13)C]-labeled oxidation products changed by up to 8-fold as the CSO matrix was oxidized, demonstrating that reliance on a single standard in volatile profiling studies yields inaccurate results due to changing matrix effects. The [U-~(13)C]-labeled standard mixture was used to quantify 25 volatiles in oxidized CSO and low-ALA soybean oil with an average relative standard deviation of 8.5percent. Extension of this approach to other labeled substrates, e.g., [U-~(13)C]-labeled sugars and amino acids, for profiling studies should be feasible and can dramatically improve quantitative results compared to use of a single standard.
机译:通过质谱分析进行小分子谱分析的最佳精度和精密度通常需要同位素标记的标准品,以化学方式代表所有目标化合物。但是,由市售纯净化合物制备混合标准品往往过高且费时,而且许多标记化合物均无法以纯净形式获得。我们使用单一原型统一标记的[U-〜(13)C]化合物生成[U-〜(13)C]标记的挥发性标准品,用于后续的实验分析研究。将[U-〜(13)C]-α-亚麻酸(18:3n-3,ALA)热氧化,生成标记的脂质降解挥发物,随后对其进行定性和定量表征。通过顶空固相微萃取-气相色谱/飞行时间质谱(HS-SPME-GC / TOF-MS)鉴定了25种[U-〜(13)C]标记的挥发物,通过与未标记的挥发物。通过反向同位素稀释程序定量标记的挥发物。使用[U-〜(13)C]标记的标准,检测限达到或优于以前的HS-SPME报告的检测限,0.010-1.04 ng / g。 [U-〜(13)C]标记的挥发性标准品的性能使用在60摄氏度下从0到15 d氧化的商品大豆油(CSO)进行评估。混合物中不存在未标记内标的正癸烷的相对响应,以及当CSO基质被氧化时,[U-〜(13)C]标记的氧化产物变化最多8倍,表明对由于基质效应的变化,挥发性分析中的单一标准品产生的结果不准确。 [U-〜(13)C]标记的标准混合物用于定量氧化CSO和低ALA大豆油中的25种挥发物,平均相对标准偏差为8.5%。将此方法扩展到其他标记的底物,例如[U-(13)C]标记的糖和氨基酸,以进行分析研究应该是可行的,并且与使用单一标准品相比,可以大大改善定量结果。

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