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使用高精度气相色谱-燃烧同位素比率质谱法和高富集[U-13C]标记前体进行高灵敏度示踪剂检测。

High sensitivity tracer detection using high-precision gas chromatography-combustion isotope ratio mass spectrometry and highly enriched [U-13C]-labeled precursors.

作者信息

Goodman K J, Brenna J T

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, New York 14853.

出版信息

Anal Chem. 1992 May 15;64(10):1088-95. doi: 10.1021/ac00034a004.

Abstract

The use of highly enriched, uniformly labeled fatty acid ([U-13C]) with analysis by high-precision gas chromatography-combustion isotope ratio mass spectrometry (GCC-IRMS) has been evaluated as a metabolic tracer technique. 13C/12C ratios are routinely determined to precisions (SD) of less than 0.00001 (delta PDB less than 1/1000) for greater than 10 ng of fatty acid, and less than 0.001 (delta PDB less than 100/1000) for samples of 30 pg of fatty acid, the latter corresponding to a 100-fmol sample. Baseline fatty acid 13C/12C in human plasma fractions is shown to fluctuate not more than 0.000 04 (delta PDB 4/1000) over 10 h. 13C/12C enrichments greater than 0.001 (delta PDB 100/1000) are obtained in a fatty acid plasma fraction subsequent to a 10-mg dose of 42% 13C-labeled stearic acid to a 78-kg adult. Biokinetics are discerned over an 13C/12C enrichment range of less than 0.0002 (approximately 13/1000 in delta PDB units) in plasma. A means for correction of isotope ratio contamination due to carbon-containing derivatives is presented. High-precision GCC-IRMS used in concert with highly enriched tracers is shown to possess advantages versus organic GC/MS for stable isotopic tracer detection and is superior to radiotracer methods in terms of dose sizes and analysis efficiency.

摘要

已对使用高度富集、均匀标记的脂肪酸([U-13C])并通过高精度气相色谱-燃烧同位素比率质谱法(GCC-IRMS)进行分析作为一种代谢示踪技术进行了评估。对于超过10 ng的脂肪酸,常规测定的13C/12C比率精度(标准差)小于0.00001(δPDB小于1/1000),对于30 pg脂肪酸的样品,精度小于0.001(δPDB小于100/1000),后者对应于100 fmol的样品。结果表明,人血浆组分中的基线脂肪酸13C/12C在10小时内波动不超过0.00004(δPDB 4/1000)。向一名78 kg成年人静脉注射10 mg 42% 13C标记的硬脂酸后,在脂肪酸血浆组分中获得的13C/12C富集度大于0.001(δPDB 100/1000)。在血浆中13C/12C富集度范围小于0.0002(以δPDB单位计约为13/1000)的情况下可识别生物动力学。提出了一种校正含碳衍生物引起的同位素比率污染的方法。结果表明,与高富集示踪剂协同使用的高精度GCC-IRMS在稳定同位素示踪剂检测方面比有机GC/MS具有优势,并且在剂量大小和分析效率方面优于放射性示踪剂方法。

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